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other provinces and regions in Vietnam and other country.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Address\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Headquarters of Can Tho Journal of Medicine and Pharmacy, located Scientific Research and International Cooperation Office: 179 Nguyen Van Cu Street, An Khanh Ward, Ninh Kieu District, Can Tho City, Vietnam.\u003C\u002Fspan>\u003C\u002Fp>","\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Ngày 16\u002F7\u002F2015, Tạp chí Y Dược học Cần Thơ được cấp chỉ số quốc tế: ISSN 2354-1210.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Từ tháng 4\u002F2016, Tạp chí đã được Hội đồng Giáo sư ngành Y đưa vào danh sách các tạp chí khoa học Y học được tính điểm công trình 0-0,5 điểm cho một bài báo đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Năm 2020 Tạp chí Y Dược học Cần Thơ đã được phê duyệt vào danh mục của các Hội đồng Giáo sư ngành Dược học được tính điểm công trình 0-0,5 điểm cho một bài báo đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ ra 12 số\u002Fnăm, 180-200 trang\u002Fsố.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Từ tháng 12\u002F2022 Tạp chí Y Dược học Cần Thơ là thành viên của hệ thống Crossref và từ tháng 01\u002F2023 tạp chí thực hiện bình duyệt online kín 2 chiều nhằm tăng tính minh bạch, tin cậy của các công trình nghiên cứu khoa học và đảm bảo tốt nhất chất lượng khoa học của bài viết.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tôn chỉ, mục đích và phạm vi của tạp chí\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tôn chỉ và mục đích hoạt động của tạp chí: xuất bản nhằm mục đích phổ biến kết quả từ các đề tài nghiên cứu khoa học; giao lưu trao đổi khoa học, chia sẻ kinh nghiệm, học tập, đồng thời cập nhật thông tin khoa học mới trong các lĩnh vực y, sinh, dược học trong và ngoài nước.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Phạm vi của tạp chí: Tạp chí xuất bản được chia thành 3 chuyên mục: (i) Bài báo nghiên cứu khoa học là kết quả công trình nghiên cứu khoa học có giá trị đã được triển khai nghiên cứu, (ii) Bài tổng quan y, sinh, dược học: phục vụ mục tiêu đào tạo liên tục trong lĩnh vực y, sinh, dược học; nhằm hệ thống hóa những kiến thức kinh điển và hiện đại; (iii) Thông tin cập nhật kiến thức mới về y, sinh, dược học trong nước và trên thế giới.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Chính sách truy cập mở\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ áp dụng chính sách truy cập mở đối với các bài báo đã xuất bản đến với độc giả, nhằm mở rộng cơ hội tiếp cận các kết quả nghiên cứu chất lượng cao và tăng cường trao đổi kiến thức. Tạp chí đăng tải trực tuyến (miễn phí) toàn văn các bài báo được công bố trên website của Tạp chí (https:\u002F\u002Ftapchi.ctump.edu.vn).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đạo đức xuất bản\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ cam kết tuân thủ đạo đức xuất bản phù hợp với các hướng dẫn và tiêu chuẩn của the Committee on Publication Ethics (COPE), tuân thủ các nguyên tắc của COPE’s Core Practices, Best Practices Guidelines for Journal Editors và Guidelines on Good Publication Practices.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Bản thảo bài báo chỉ được chấp nhận khi được tác giả chịu trách nhiệm chính cam kết các nội dung sau: Các nội dung của bản thảo chưa được đăng tải toàn bộ hoặc một phần ở các tạp chí khác; Tất cả các tác giả đều có đóng góp một cách đáng kể vào quá trình nghiên cứu hoặc chuẩn bị bản thảo và cùng chịu trách nhiệm về các nội dung của bản thảo; Tuân thủ các biện pháp đảm bảo đạo đức nghiên cứu (ví dụ thỏa thuận đồng ý tham gia nghiên cứu).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Cam kết bảo mật\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí cam kết thực hiện và tuân thủ các quy định của luật và các văn bản hướng dẫn liên quan đến bảo mật thông tin cá nhân trên không gian mạng. Các thông tin mà người dùng (tác giả, độc giả, biên tập viên, người phản biện) nhập vào các biểu mẫu trên Hệ thống Quản lý xuất bản trực tuyến của tạp chí chỉ được sử dụng vào các mục đích đã được tuyên bố rõ ràng và sẽ không được cung cấp cho bất kỳ bên thứ ba nào khác, hay dùng vào bất kỳ mục đích nào khác.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Phí gửi bài\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Lệ phí gửi đăng bài: 1.000.000đ\u002Fbài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Lệ phí gửi đăng nhanh: 1.500.000đ\u002Fbài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đối với tác giả là cán bộ viên chức thuộc Trường Đại học Y Dược Cần Thơ thì được hỗ trợ 50% lệ phí gửi đăng bài.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đối với sinh viên thực hiện đề tài nghiên cứu khoa học cấp trường được hỗ trợ 100% lệ phí đăng bài ( Tác giả gửi đính kèm “ Quyết định về việc giao tổ chức thực hiện đề tài nghiên cứu khoa học cấp Trường của sinh viên”).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Hình thức nộp lệ phí:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Tiền mặt:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Nộp trực tiếp tại Phòng Tài chính - Kế toán, Trường Đại học Y Dược Cần Thơ, số 179 Nguyễn Văn Cừ, P. An Khánh, Q. Ninh Kiều, thành phố Cần Thơ.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Chuyển khoản:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tên Tài khoản: Trường ĐHYD Cần Thơ, Số TK: 0111000115668, tại ngân hàng Vietcombank chi nhánh Cần Thơ.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Thời gian: Áp dụng từ ngày 01\u002F02\u002F2023.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">* Phí gửi bài không được hoàn trả khi bài viết bị từ chối hoặc tác giả xin rút bài viết.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Quy trình phản biện bài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ thực hiện quy trình phản biện kín hai chiều nghiêm ngặt. Danh tính của những người phản biện không được tiết lộ cho các tác giả và ngược lại. Quy trình thẩm định bài báo đăng gồm các bước sau:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tiếp nhận bản thảo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tác giả liên hệ gửi bản thảo đến Tạp chí qua hệ thống trực tuyến tại website: https:\u002F\u002Ftapchi.ctump.edu.vn. Hướng dẫn về cách đăng ký, gửi bài và chuẩn bị bản thảo được cung cấp trên website của Tạp chí.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Sàng lọc sơ bộ\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Sau khi Tòa soạn nhận được bài báo của tác giả, Ban Thư ký sẽ tiến hành kiểm tra sơ bộ bài báo (các yêu cầu về nội dung và hình thức). Những bài báo không đúng quy cách hoặc có nội dung không phù hợp hoặc vi phạm bản quyền sẽ bị từ chối (Ban Thư ký thông báo phản hồi đến tác giả trong vòng 1 tuần). Những bài báo đủ điều kiện, được Ban Thư ký tòa soạn chuyển đến Ban Biên tập có cùng chuyên môn với nội dung bài báo để đề xuất người phản biện. Thời gian kể từ khi Ban Biên tập nhận bài báo đến khi đề xuất người phản biện bài báo chậm nhất là 5 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Vòng phản biện\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Ban Thư ký gửi bài và yêu cầu phản biện đến 02 phản biện độc lập.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Các phản biện gởi nhận xét cho Ban Thư ký. Thời gian từ khi gửi bài cho phản biện đến khi nhận ý kiến của phản biện tối đa là 20 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Xử ký kết quả phản biện\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Nếu ý kiến đồng ý cho đăng và không cần chỉnh sửa, Ban Thư ký tiếp tục đăng bài theo qui trình.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Nếu ý kiến đồng ý đăng và cần chỉnh sửa, Ban Thư ký sẽ thông tin đến tác giả chỉnh sửa theo yêu cầu của người phản biện. Thời gian chỉnh sửa và gửi lại kéo dài không quá 2 tuần, từ khi tác giả bài báo nhận được thông tin (Quá trình này có thể lặp lại tối đa 2 lần\u002F1 bài báo). Khi có sự thống nhất, đồng ý của người phản biện; bài báo được tiếp tục đăng theo qui trình.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">3. Những bài báo có chất lượng không đạt yêu cầu, cả 2 phản biện không đồng ý cho đăng sẽ bị Tòa soạn từ chối đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Xuất bản\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Ban Thư ký tổng hợp các bản thảo đã được tác giả hoàn thiện sau thẩm định trình Ban Biên tập xem xét, Tổng Biên tập phê duyệt, quyết định bài đăng theo các tiêu chí: sự phù hợp nội dung với tôn chỉ và mục đích, thể loại bài viết (ưu tiên các bài có bài có nghiên cứu chuyên sâu, hàm lượng khoa học cao), đóng góp mới bài báo, bài báo được ưu tiên đăng trong số gần nhất của Tạp chí theo thứ tự: tính thời sự, chất lượng bài báo và thời gian gửi bài.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Ban Biên tập và Ban Thư ký biên tập bản thảo, chế bản, đọc rà soát lỗi. Thời gian hoàn thành từ 10-15 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">3. Ban Thư ký có trách nhiệm thông báo cho tác giả bài báo (bằng e-mail) về tình hình phê duyệt bài báo, thời gian, số kỳ, tập xuất bản bài báo theo qui định.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">4. 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M., 1989, Absence of preferential uptake of [125I]Iododihydrorhodamine 123 by four human tumor xenografts, Cancer Res., 49, 5986",{},{"id":26,"text":1097,"url":26,"identifiers":1098},"10.1038\u002Fbjc.1989.38",{"doi":1097},{"id":26,"text":1100,"url":26,"identifiers":1101},"10.1002\u002F9780470513842.ch10",{"doi":1100},{"id":26,"text":1103,"url":26,"identifiers":1104},"Lim H. W., 1986, Generation of eicosanoids from mast cells exposed to protoporphyrin and irradiation, Clin. Res., 34, 763",{},{"id":26,"text":1106,"url":26,"identifiers":1107},"10.1111\u002Fj.1751-1097.1987.tb05409.x",{"doi":1106},{"id":26,"text":1109,"url":26,"identifiers":1110},"10.1111\u002Fj.1751-1097.1987.tb04859.x",{"doi":1109},{"id":26,"text":1112,"url":26,"identifiers":1113},"10.1111\u002Fj.1751-1097.1988.tb01666.x",{"doi":1112},{"id":26,"text":1115,"url":26,"identifiers":1116},"10.1111\u002Fj.1751-1097.1984.tb04555.x",{"doi":1115},{"id":26,"text":1118,"url":26,"identifiers":1119},"Mathews E. K.andZ. J.Cui(1990)Photodynamic action of sulphonated aluminum phthalocyanine (SALPC) on normal and carcinoma cells of the rat exocrine pancreas. (Presented at the3rd Biennial Meeting of the International Photodynamic Association Buffalo NY July 1990 (abstract VI\u002F7)).",{},{"id":26,"text":1121,"url":26,"identifiers":1122},"Mayhew E. M.Murray B.OwczarczakandB.Henderson(1990)Role of liposome composition and size on the biological properties of the photosensitizer isoBoSiNc entrapped in liposomes. Presented at the3rd Biennial Meeting of the International Photodynamic Association Buffalo NY. July 1990 (abstract XXI\u002F2).",{},{"id":26,"text":1124,"url":26,"identifiers":1125},"10.1016\u002F1011-1344(90)85104-5",{"doi":1124},{"id":26,"text":1127,"url":26,"identifiers":1128},"Moan J., 1989, Photosensitizing Compounds: Their Chemistry, Biology and Clinical Use, 95107",{},{"id":26,"text":1130,"url":26,"identifiers":1131},"Moan J., 1985, Oxygen dependence of the photosensitizing effect of hematoporphyrin derivative in NHIK‐3025 cells, Cancer Res., 45, 1608",{},{"id":26,"text":1133,"url":26,"identifiers":1134},"10.1111\u002Fj.1751-1097.1990.tb01970.x",{"doi":1133},{"id":26,"text":1136,"url":26,"identifiers":1137},"10.1002\u002Flsm.1900100408",{"doi":1136},{"id":26,"text":1139,"url":26,"identifiers":1140},"Musser D. A., 1982, The interaction of tumor localizing porphyrins with collagen and elastin, Res Commun. Chem. Pathol. Pharmacol., 36, 251",{},{"id":26,"text":1142,"url":26,"identifiers":1143},"10.1093\u002Fjnci\u002F80.20.1599",{"doi":1142},{"id":26,"text":1145,"url":26,"identifiers":1146},"10.1016\u002F0090-4295(90)80220-H",{"doi":1145},{"id":26,"text":1148,"url":26,"identifiers":1149},"10.1073\u002Fpnas.83.24.9729",{"doi":1148},{"id":26,"text":1151,"url":26,"identifiers":1152},"10.1016\u002F1011-1344(90)85006-I",{"doi":1151},{"id":26,"text":1154,"url":26,"identifiers":1155},"10.1111\u002Fj.1751-1097.1990.tb01720.x",{"doi":1154},{"id":26,"text":1157,"url":26,"identifiers":1158},"10.1111\u002Fj.1751-1097.1987.tb04741.x",{"doi":1157},{"id":26,"text":1160,"url":26,"identifiers":1161},"10.1111\u002Fj.1751-1097.1987.tb04819.x",{"doi":1160},{"id":26,"text":1163,"url":26,"identifiers":1164},"10.1111\u002Fj.1751-1097.1989.tb04172.x",{"doi":1163},{"id":26,"text":1166,"url":26,"identifiers":1167},"10.1016\u002F0022-4804(88)90195-3",{"doi":1166},{"id":26,"text":1169,"url":26,"identifiers":1170},"10.1016\u002FS0022-5347(17)38932-2",{"doi":1169},{"id":26,"text":1172,"url":26,"identifiers":1173},"10.2307\u002F3577525",{"doi":1172},{"id":26,"text":1175,"url":26,"identifiers":1176},"10.1016\u002F1011-1344(90)80008-L",{"doi":1175},{"id":26,"text":1178,"url":26,"identifiers":1179},"10.1093\u002Fjnci\u002F80.5.330",{"doi":1178},{"id":26,"text":1181,"url":26,"identifiers":1182},"10.1002\u002Flsm.1900090204",{"doi":1181},{"id":26,"text":1184,"url":26,"identifiers":1185},"10.1111\u002Fj.1751-1097.1989.tb09191.x",{"doi":1184},{"id":26,"text":1187,"url":26,"identifiers":1188},"10.1016\u002F1011-1344(90)85081-7",{"doi":1187},{"id":26,"text":1190,"url":26,"identifiers":1191},"10.1016\u002F1011-1344(90)80002-F",{"doi":1190},{"id":26,"text":1193,"url":26,"identifiers":1194},"10.1111\u002Fj.1751-1097.1987.tb04866.x",{"doi":1193},{"id":26,"text":1196,"url":26,"identifiers":1197},"Song C. W., 1980, Cancer Therapy by Hyperthermia, Drugs and Radiation, 172",{},{"id":26,"text":1199,"url":26,"identifiers":1200},"10.1111\u002Fj.1751-1097.1990.tb01717.x",{"doi":1199},{"id":26,"text":1202,"url":26,"identifiers":1203},"Star W. M., 1986, Destruction of rat mammary tumor and normal tissue microcirculation by hematoporphyrin derivative Photoradiation observed in vivo in sandwich observation chambers, Cancer Res., 46, 2532",{},{"id":26,"text":1205,"url":26,"identifiers":1206},"Svaasand L. O., 1984, Porphyrin Localization and Treatment of Tumors, 91",{},{"id":26,"text":1208,"url":26,"identifiers":1209},"Svaasand L. O., 1990, On the physical rationale of photodynamic therapy, SPIE, 6, 233",{},{"id":26,"text":1211,"url":26,"identifiers":1212},"10.1111\u002Fj.1751-1097.1989.tb04111.x",{"doi":1211},{"id":26,"text":1214,"url":26,"identifiers":1215},"10.1111\u002Fj.1751-1097.1990.tb04193.x",{"doi":1214},{"id":26,"text":1217,"url":26,"identifiers":1218},"10.1016\u002F0304-3835(88)90051-1",{"doi":1217},{"id":26,"text":1220,"url":26,"identifiers":1221},"Weintraub H., 1988, Toxicity, tissue distribution and excretion studies of aluminum phthalocyanine tetrasulfonate in normal mice, Lasers Life Sci., 2, 185",{},{"id":26,"text":1223,"url":26,"identifiers":1224},"Weishaupt K. R., 1976, Identification of singlet oxygen as the cytotoxic agent in photoinactivation of a murine tumor, Cancer Res., 36, 2326",{},{"id":26,"text":1226,"url":26,"identifiers":1227},"Wilson B. C., 1989, Ciba Foundation Symposium 146: Photosensitizing Compounds: Their Chemistry, Biology and Clinical Use, 61",{},{"id":26,"text":1229,"url":26,"identifiers":1230},"10.1111\u002Fj.1751-1097.1985.tb01554.x",{"doi":1229},{"id":26,"text":1232,"url":26,"identifiers":1233},"10.1007\u002FBF02032418",{"doi":1232},{"id":26,"text":1235,"url":26,"identifiers":1236},"10.1002\u002Fjcp.1040670207",{"doi":1235},false,{"id":1239,"createTime":1240,"updateTime":1241,"relativeEntities":1242,"slug":1243,"properties":1244,"entityType":854,"verifyStatus":25,"verifyTime":1240,"verifyNote":1261,"syncStatus":28,"languages":1262,"translateLanguages":1263,"viewCount":36,"primaryUrl":1264,"fullTextUrl":26,"authors":1265,"publicationType":887,"publisherRelationship":1316,"citationCount":1354,"citationInfo":1355,"publishDate":1358,"publishYear":1359,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":1360,"isForceReanalyzing":1237},"33474a56-f5f4-4136-bb5e-654425a866c0","2024-12-03T17:17:15.191+00:00","2025-02-25T02:23:12.237+00:00",[],"COOPERATION-OF-CHARGES-IN-PHOTOSYNTHETIC-O-sub-2-sub-EVOLUTION-I-A-LINEAR-FOUR-STEP-MECHANISM",{"mag":1245,"keywords":1247,"openalex":1249,"abstract":1251,"title":1254,"pm":1257,"doi":1259},{"VOID":1246},"2098472363",{"VI":1248},"",{"VOID":1250},"W2098472363",{"EN":1252,"VI":1253},"\u003Cjats:p>\u003Cjats:bold>Abstract—\u003C\u002Fjats:bold> Using isolated chloroplasts and techniques as described by Joliot and Joliot[6] we studied the evolution of O\u003Cjats:sub>2\u003C\u002Fjats:sub> in weak light and light flashes to analyze the interactions between light induced O\u003Cjats:sub>2\u003C\u002Fjats:sub> precursors and their decay in darkness. The following observations and conclusions are reported: 1. Light flashes always produce the same number of oxidizing equivalents either as precursor or as O\u003Cjats:sub>2\u003C\u002Fjats:sub>. 2. The number of unstable precursor equivalents present during steady state photosynthesis is ∼ 1.2 per photochemical trapping center. 3. The cooperation of the four photochemically formed oxidizing equivalents occurs essentially in the individual reaction centers and the final O\u003Cjats:sub>2\u003C\u002Fjats:sub> evolution step is a one quantum process. 4. The data are compatible with a linear four step mechanism in which a trapping center, or an associated catalyst, (\u003Cjats:italic>S\u003C\u002Fjats:italic>) successively accumulates four + charges. The \u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sup>4+\u003C\u002Fjats:sup> state produces O\u003Cjats:sub>2\u003C\u002Fjats:sub> and returns to the ground state \u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub>. 5. Besides \u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub> also the first oxidized state \u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sup>+\u003C\u002Fjats:sup> is stable in the dark, the two higher states, S\u003Cjats:sup>2+\u003C\u002Fjats:sup> and S\u003Cjats:sup>3+\u003C\u002Fjats:sup> are not. 6. The relaxation times of some of the photooxidation steps were estimated. The fastest reaction, presumably \u003Cjats:italic>S\u003C\u002Fjats:italic>*\u003Cjats:sub>1\u003C\u002Fjats:sub>←\u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sub>2\u003C\u002Fjats:sub>, has a (first) half time ≤ 200 μsec. The \u003Cjats:italic>S\u003C\u002Fjats:italic>*\u003Cjats:sub>2\u003C\u002Fjats:sub> state and probably also the \u003Cjats:italic>S\u003C\u002Fjats:italic>*\u003Cjats:sub>0\u003C\u002Fjats:sub> state are processed somewhat more slowly (˜ 300–400 μsec).\u003C\u002Fjats:p>","\u003Cjats:p>\u003Cjats:bold>Tóm tắt—\u003C\u002Fjats:bold> Bằng cách sử dụng các lạp thể được tách ra và các kỹ thuật như đã mô tả bởi Joliot và Joliot[6], chúng tôi đã nghiên cứu sự tiến hóa của O\u003Cjats:sub>2\u003C\u002Fjats:sub> trong ánh sáng yếu và các nhấp nháy ánh sáng để phân tích các tương tác giữa các tiền chất O\u003Cjats:sub>2\u003C\u002Fjats:sub> được kích thích bởi ánh sáng và sự suy giảm của chúng trong bóng tối. Những quan sát và kết luận sau đây được báo cáo: 1. Các nhấp nháy ánh sáng luôn tạo ra cùng một số lượng các điện tích oxi hóa, bất kể là ở dạng tiền chất hay O\u003Cjats:sub>2\u003C\u002Fjats:sub>. 2. Số lượng các điện tích tiền chất không ổn định có mặt trong suốt quá trình quang hợp trạng thái ổn định là khoảng 1.2 cho mỗi trung tâm bắt quang hóa học. 3. Sự hợp tác của bốn điện tích oxi hóa được hình thành quang hóa xảy ra chủ yếu trong các trung tâm phản ứng riêng lẻ và bước phát sinh O\u003Cjats:sub>2\u003C\u002Fjats:sub> cuối cùng là một quá trình hấp thụ một quantum. 4. Dữ liệu tương thích với một cơ chế tuyến tính bốn bước trong đó một trung tâm bắt, hoặc một chất xúc tác liên kết, (\u003Cjats:italic>S\u003C\u002Fjats:italic>) tích lũy liên tiếp bốn điện tích dương. Trạng thái \u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sup>4+\u003C\u002Fjats:sup> sản xuất O\u003Cjats:sub>2\u003C\u002Fjats:sub> và trở về trạng thái gốc \u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub>. 5. Ngoài \u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub>, trạng thái ôxy hóa đầu tiên \u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sup>+\u003C\u002Fjats:sup> cũng ổn định trong bóng tối, trong khi hai trạng thái cao hơn, S\u003Cjats:sup>2+\u003C\u002Fjats:sup> và S\u003Cjats:sup>3+\u003C\u002Fjats:sup> thì không. 6. Thời gian phục hồi của một số bước oxy hóa quang học đã được ước lượng. Phản ứng nhanh nhất, có khả năng là \u003Cjats:italic>S\u003C\u002Fjats:italic>*\u003Cjats:sub>1\u003C\u002Fjats:sub>←\u003Cjats:italic>S\u003C\u002Fjats:italic>\u003Cjats:sub>2\u003C\u002Fjats:sub>, có thời gian nửa (đầu tiên) ≤ 200 μsec. Trạng thái \u003Cjats:italic>S\u003C\u002Fjats:italic>*\u003Cjats:sub>2\u003C\u002Fjats:sub> và có khả năng cũng trạng thái \u003Cjats:italic>S\u003C\u002Fjats:italic>*\u003Cjats:sub>0\u003C\u002Fjats:sub> được xử lý chậm hơn một chút (khoảng 300–400 μsec).\u003C\u002Fjats:p>",{"EN":1255,"VI":1256},"COOPERATION OF CHARGES IN PHOTOSYNTHETIC O\u003Csub>2\u003C\u002Fsub> EVOLUTION–I. A LINEAR FOUR STEP MECHANISM","SỰ HỢP TÁC CỦA CÁC ĐIỆN TÍCH TRONG SUY TAE O\u003Csub>2\u003C\u002Fsub> QUANG HỢP–I. MỘT CƠ CHẾ BỐN BƯỚC TUYẾN TÍNH",{"VOID":1258},"5456273",{"VOID":1260},"10.1111\u002Fj.1751-1097.1970.tb06017.x","Auto Verify",[102],[101],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1111\u002Fj.1751-1097.1970.tb06017.x",[1266,1286,1301],{"id":1267,"sortIndex":36,"researcher":26,"roles":1268,"affiliations":1269,"properties":1281},"76ea8bbe-000d-49ab-a088-5c781d5c8e67",[],[1270],{"id":1271,"sortIndex":36,"affiliation":1272,"properties":26},"8a84d6ca-4132-4e32-9ef1-ee19c3388d58",{"id":1273,"createTime":1274,"updateTime":1275,"relativeEntities":1276,"slug":1277,"properties":1278,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"c806941b-29d3-4369-838e-ce8a0eb15b20","2024-01-05T17:44:06.183+00:00","2024-12-03T17:17:15.196+00:00",[],"Research-Institute-for-Advanced-Studies-1450-South-Rolling-Road-Baltimore-Md-21227-U-S-A-",{"title":1279},{"VI":1280},"Research Institute for Advanced Studies, 1450 South Rolling Road, Baltimore, Md. 21227 U.S.A.",{"openalex":1282,"title":1284},{"VOID":1283},"A5048655621",{"EN":1285},"Bessel Kok",{"id":1287,"sortIndex":115,"researcher":26,"roles":1288,"affiliations":1289,"properties":1296},"659f61e0-e60d-43c2-83e3-dcfd693f9f3d",[],[1290],{"id":1291,"sortIndex":36,"affiliation":1292,"properties":26},"c56a7bb2-5981-4dec-97f7-67a4d802a34c",{"id":1273,"createTime":1274,"updateTime":1275,"relativeEntities":1293,"slug":1277,"properties":1294,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1295},{"VI":1280},{"openalex":1297,"title":1299},{"VOID":1298},"A5112778667",{"EN":1300},"Bliss Forbush",{"id":1302,"sortIndex":114,"researcher":26,"roles":1303,"affiliations":1304,"properties":1311},"40bb21ea-8c88-489f-9fe4-fa2d3fef77e8",[],[1305],{"id":1306,"sortIndex":36,"affiliation":1307,"properties":26},"d967dd41-faeb-460d-bfef-256365e07c3f",{"id":1273,"createTime":1274,"updateTime":1275,"relativeEntities":1308,"slug":1277,"properties":1309,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},[],{"title":1310},{"VI":1280},{"openalex":1312,"title":1314},{"VOID":1313},"A5032256759",{"EN":1315},"MARION P. 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P., 1963, Photosynthetic Mechanisms in Green Plants, 371",{},{"id":26,"text":1368,"url":26,"identifiers":1369},"10.1016\u002F0926-6585(65)90207-4",{"doi":1368},{"id":26,"text":1371,"url":26,"identifiers":1372},"10.1111\u002Fj.1751-1097.1968.tb05889.x",{"doi":1371},{"id":26,"text":1374,"url":26,"identifiers":1375},"10.1111\u002Fj.1751-1097.1969.tb05696.x",{"doi":1374},{"id":26,"text":1377,"url":26,"identifiers":1378},"10.1016\u002F0005-2728(68)90190-4",{"doi":1377},{"id":26,"text":1380,"url":26,"identifiers":1381},"B.Forbush B.KokandM.McGloin In preparation.",{},{"id":26,"text":1383,"url":26,"identifiers":1384},"10.1016\u002F0005-2728(70)90033-2",{"doi":1383},{"id":26,"text":1386,"url":26,"identifiers":1387},"10.1016\u002F0005-2728(68)90106-0",{"doi":1386},{"id":26,"text":1389,"url":26,"identifiers":1390},"P.Joliot Energy Conversion by the Photosynthetic Apparatus Brookhaven Symposia in Biology No. 19 p.418(1966).",{},{"id":26,"text":1392,"url":26,"identifiers":1393},"Witt H. T., 1966, Currents in Photosynthesis",{},{"id":1395,"createTime":1396,"updateTime":1397,"relativeEntities":1398,"slug":1399,"properties":1400,"entityType":854,"verifyStatus":25,"verifyTime":1414,"verifyNote":1261,"syncStatus":28,"languages":1415,"translateLanguages":1416,"viewCount":36,"primaryUrl":1417,"fullTextUrl":26,"authors":1418,"publicationType":887,"publisherRelationship":1473,"citationCount":1510,"citationInfo":1511,"publishDate":1515,"publishYear":1516,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":1517,"isForceReanalyzing":1237},"7093c3e4-fcc0-49b6-b808-e78c42b18752","2024-09-03T19:47:02.160+00:00","2025-02-25T02:24:11.931+00:00",[],"POLYPHASIC-CHLOROPHYLL-i-a-i-FLUORESCENCE-TRANSIENT-IN-PLANTS-AND-CYANOBACTERIA-",{"mag":1401,"keywords":1403,"openalex":1404,"abstract":1406,"title":1409,"doi":1412},{"VOID":1402},"2029788693",{"VI":1248},{"VOID":1405},"W2029788693",{"EN":1407,"VI":1408},"\u003Cjats:p>\u003Cjats:bold>Abstract—\u003C\u002Fjats:bold> The variable chlorophyll (Chl) \u003Cjats:italic>a\u003C\u002Fjats:italic> fluorescence yield is known to be related to the photochemical activity of photosystem II (PSII) of oxygen‐evolving organisms. The kinetics of the fluorescence rise from the minimum yield, F\u003Cjats:sub>0\u003C\u002Fjats:sub>, to the maximum yield, F\u003Cjats:sub>m\u003C\u002Fjats:sub>, is a monitor of the accumulation of net reduced primary bound plastoquinone (Q\u003Cjats:sub>A\u003C\u002Fjats:sub>) with time in all the PSII centers. Using a shutter‐less system (Plant Efficiency Analyzer, Hansatech, UK), which allows data accumulation over several orders of magnitude of time (40 μs to 120 s), we have measured on a logarithmic time scale, for the first time, the complete polyphasic fluorescence rise for a variety of oxygenic plants and cyanobacteria at different light intensities. With increasing light intensity, the fluorescence rise is changed from a typical O‐I‐P characteristic to curves with two intermediate levels J and I, both of which show saturation at high light intensity but different intensity dependence. Under physiological conditions, Chl \u003Cjats:italic>a\u003C\u002Fjats:italic> fluorescence transients of all the organisms examined follow the sequence of O‐J‐I‐P. The characteristics of the kinetics with respect to light intensity and temperature suggest that the O‐J phase is the photochemical phase, leading to the reduction of Q\u003Cjats:sub>A\u003C\u002Fjats:sub> to Q\u003Cjats:sub>A\u003C\u002Fjats:sub>\u003Cjats:sup>‐\u003C\u002Fjats:sup>. The intermediate level I is suggested to be related to a heterogeneity in the filling up of the plastoquinone pool. The P is reached when all the plastoquinone (PQ) molecules are reduced to PQH\u003Cjats:sub>2\u003C\u002Fjats:sub>. The addition of 3‐(3–4‐dichlorophenyl)‐1,1‐dimethylurea leads to a transformation of the O‐J‐I‐P rise into an O‐J rise. The kinetics of O‐J‐I‐P observed here was found to be similar to that of O‐I\u003Cjats:sub>1\u003C\u002Fjats:sub>‐I\u003Cjats:sub>2\u003C\u002Fjats:sub>‐P, reported by Neubauer and Schreiber (\u003Cjats:italic>Z. Naturforsch.\u003C\u002Fjats:italic>\u003Cjats:bold>42c\u003C\u002Fjats:bold>, 1246–1254, 1987). The biochemical significance of the fluorescence steps O‐J‐I‐P with respect to the filling up of the plastoquinone pool by PSII reactions is discussed.\u003C\u002Fjats:p>","\u003Cjats:p>\u003Cjats:bold>Tóm tắt—\u003C\u002Fjats:bold> Độ phát quang clorofil (Chl) \u003Cjats:italic>a\u003C\u002Fjats:italic> biến đổi được biết đến là có liên quan đến hoạt động quang hóa học của photosystem II (PSII) của các sinh vật sản sinh oxy. Động học của sự gia tăng phát quang từ mức tối thiểu, F\u003Cjats:sub>0\u003C\u002Fjats:sub>, đến mức tối đa, F\u003Cjats:sub>m\u003C\u002Fjats:sub>, là một chỉ số theo dõi sự tích lũy của plastoquinone liên kết chính net giảm (Q\u003Cjats:sub>A\u003C\u002Fjats:sub>) theo thời gian tại tất cả các trung tâm PSII. Sử dụng hệ thống không cửa chớp (Plant Efficiency Analyzer, Hansatech, Vương quốc Anh), cho phép tích lũy dữ liệu qua nhiều bậc độ thời gian (40 μs đến 120 s), chúng tôi đã đo lần đầu tiên toàn bộ sự gia tăng phát quang đa pha theo quy mô thời gian logarit cho nhiều loại thực vật oxy hóa và vi khuẩn lam ở các cường độ ánh sáng khác nhau. Khi cường độ ánh sáng tăng lên, sự gia tăng phát quang chuyển từ đặc điểm O‐I‐P điển hình sang các đường cong với hai mức trung gian J và I, cả hai đều cho thấy hiện tượng bão hòa ở cường độ ánh sáng cao nhưng có độ phụ thuộc cường độ khác nhau. Dưới điều kiện sinh lý, các biến đổi phát quang Chl \u003Cjats:italic>a\u003C\u002Fjats:italic> của tất cả các sinh vật được khảo sát đều có trình tự O‐J‐I‐P. Các đặc trưng của động học liên quan đến cường độ ánh sáng và nhiệt độ cho thấy giai đoạn O‐J là giai đoạn quang hóa học, dẫn đến sự giảm Q\u003Cjats:sub>A\u003C\u002Fjats:sub> thành Q\u003Cjats:sub>A\u003C\u002Fjats:sub>\u003Cjats:sup>‐\u003C\u002Fjats:sup>. Mức độ trung gian I được cho là có liên quan đến sự không đồng đều trong việc làm đầy bể plastoquinone. P được đạt được khi tất cả các phân tử plastoquinone (PQ) được giảm thành PQH\u003Cjats:sub>2\u003C\u002Fjats:sub>. Việc thêm 3‐(3–4‐dichlorophenyl)‐1,1‐dimethylurea dẫn đến sự biến đổi từ sự gia tăng O‐J‐I‐P sang sự gia tăng O‐J. Động học của O‐J‐I‐P được quan sát ở đây được thấy tương tự như của O‐I\u003Cjats:sub>1\u003C\u002Fjats:sub>‐I\u003Cjats:sub>2\u003C\u002Fjats:sub>‐P, được báo cáo bởi Neubauer và Schreiber (\u003Cjats:italic>Z. 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J., 1983, Reaction of the triplet state of retinol with oxygen, J. Chem. Soc. Faraday Trans., 2, 79",{},{"id":26,"text":2932,"url":26,"identifiers":2933},"10.1111\u002Fj.1751-1097.1996.tb03008.x",{"doi":2932},{"id":26,"text":2935,"url":26,"identifiers":2936},"Shea C. R., 1989, Rhodamine dyes as potential agents for photochemotherapy of cancer in human bladder carcinoma cells, Cancer Res., 49, 3961",{},{"id":26,"text":2938,"url":26,"identifiers":2939},"10.1111\u002Fj.1751-1097.1992.tb02191.x",{"doi":2938},{"id":26,"text":2941,"url":26,"identifiers":2942},"10.1111\u002Fj.1751-1097.1987.tb04756.x",{"doi":2941},{"id":26,"text":2944,"url":26,"identifiers":2945},"10.1111\u002Fj.1751-1097.1990.tb08663.x",{"doi":2944},{"id":26,"text":2947,"url":26,"identifiers":2948},"10.1021\u002Fj100561a023",{"doi":2947},{"id":26,"text":2950,"url":26,"identifiers":2951},"10.1021\u002Fjp960852e",{"doi":2950},{"id":26,"text":2953,"url":26,"identifiers":2954},"10.1021\u002Fbk-1987-0339.ch002",{"doi":2953},{"id":26,"text":2956,"url":26,"identifiers":2957},"10.1016\u002F0048-3575(91)90063-R",{"doi":2956},{"id":26,"text":2959,"url":26,"identifiers":2960},"10.1016\u002F1010-6030(95)04144-3",{"doi":2959},{"id":26,"text":2962,"url":26,"identifiers":2963},"10.1016\u002F1010-6030(94)03802-3",{"doi":2962},{"id":26,"text":2965,"url":26,"identifiers":2966},"10.1111\u002Fj.1751-1097.1985.tb03439.x",{"doi":2965},{"id":26,"text":2968,"url":26,"identifiers":2969},"10.1016\u002F1011-1344(91)80020-I",{"doi":2968},{"id":26,"text":2971,"url":26,"identifiers":2972},"10.1111\u002Fj.1751-1097.1987.tb05366.x",{"doi":2971},{"id":26,"text":2974,"url":26,"identifiers":2975},"10.1002\u002Fhlca.19830660517",{"doi":2974},{"id":26,"text":2977,"url":26,"identifiers":2978},"10.1016\u002F1011-1344(95)90249-X",{"doi":2977},{"id":26,"text":2980,"url":26,"identifiers":2981},"Gorman A. 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Naturforsch., 35, 731, 10.1515\u002Fznb-1980-0619",{"doi":3000},"10.1515\u002Fznb-1980-0619",{"id":26,"text":3002,"url":26,"identifiers":3003},"10.1016\u002F0304-4165(91)90072-O",{"doi":3002},{"id":26,"text":3005,"url":26,"identifiers":3006},"10.1111\u002Fj.1751-1097.1988.tb08842.x",{"doi":3005},{"id":3008,"createTime":3009,"updateTime":3010,"relativeEntities":3011,"slug":3012,"properties":3013,"entityType":854,"verifyStatus":25,"verifyTime":3029,"verifyNote":1261,"syncStatus":28,"languages":3030,"translateLanguages":3031,"viewCount":36,"primaryUrl":3032,"fullTextUrl":26,"authors":3033,"publicationType":887,"publisherRelationship":3075,"citationCount":3112,"citationInfo":3113,"publishDate":3115,"publishYear":3116,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":3117,"isForceReanalyzing":1237},"f4e8fcd6-dc80-4a4b-872c-96dc306e0c97","2024-11-26T16:44:05.978+00:00","2025-02-25T02:25:09.431+00:00",[],"THE-PHOTODEGRADATION-OF-PORPHYRINS-IN-CELLS-CAN-BE-USED-TO-ESTIMATE-THE-LIFETIME-OF-SINGLET-OXYGEN",{"mag":3014,"keywords":3016,"openalex":3017,"abstract":3019,"title":3022,"pm":3025,"doi":3027},{"VOID":3015},"2062273647",{"VI":1248},{"VOID":3018},"W2062273647",{"EN":3020,"VI":3021},"\u003Cjats:title>Abstract—\u003C\u002Fjats:title>\u003Cjats:p>NHIK 3025 cells were incubated with Photofrin II (PII) and\u002For tetra (3‐hydroxyphenyl)porphyrin (3THPP) and exposed to light at either 400 or 420 nm, i. e. at the wavelengths of the maxima of the fluorescence excitation spectra of the two dyes. The kinetics of the photodegradation of the dyes were studied. When present separately in the cells the two dyes are photodegraded with a similar quantum yield. 3THPP is degraded 3–6 times more efficiently by light quanta absorbed by the fluorescent fraction of 3THPP than by light quanta absorbed by the fluorescent fraction of PII present in the same cells. The distance diffused by the reactive intermediate, supposedly mainly \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>, causing the photodegradation was estimated to be on the order of 0.01–0.02 μm, which corresponds to a lifetime of 0.01–0.04 μs of the intermediate in the cells. PII has binding sites at proteins in the cells as shown by an energy transfer band in the fluorescence excitation spectrum at 290 nm. During light exposure this band decays faster than the Soret band of PII under the present conditions. Photoproducts (\u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> etc.) generated at one binding site contribute significantly in the destruction of remote binding sites.\u003C\u002Fjats:p>","\u003Cjats:title>Tóm tắt—\u003C\u002Fjats:title>\u003Cjats:p>Các tế bào NHIK 3025 được nuôi cấy với Photofrin II (PII) và\u002Fhoặc tetra (3‐hydroxyphenyl)porphyrin (3THPP) và được chiếu ánh sáng ở bước sóng 400 hoặc 420 nm, tức là tại các bước sóng của cực đại trong phổ kích thích huỳnh quang của hai thuốc nhuộm này. Động lực học của quá trình phân hủy quang học của các thuốc nhuộm đã được nghiên cứu. Khi xuất hiện riêng biệt trong các tế bào, hai thuốc nhuộm này bị phân hủy quang học với hiệu suất lượng tử tương tự nhau. 3THPP bị phân hủy hiệu quả hơn từ 3 đến 6 lần nhờ photon ánh sáng hấp thu bởi phân đoạn huỳnh quang của 3THPP so với photon ánh sáng hấp thu bởi phân đoạn huỳnh quang của PII có mặt trong cùng một tế bào. Khoảng cách mà các trung gian phản ứng, chủ yếu được cho là \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>, khuếch tán để gây ra phân hủy quang học được ước lượng nằm trong khoảng 0.01–0.02 μm, tương ứng với thời gian sống của trung gian trong các tế bào là 0.01–0.04 μs. PII có các vị trí liên kết tại protein trong tế bào như được chỉ ra bởi một dải chuyển năng lượng trong phổ kích thích huỳnh quang tại 290 nm. Trong suốt thời gian chiếu sáng, dải này phân rã nhanh hơn so với dải Soret của PII dưới các điều kiện hiện tại. Các sản phẩm quang (\u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> v.v.) được sinh ra tại một vị trí liên kết đóng góp đáng kể vào việc phá hủy các vị trí liên kết xa.",{"EN":3023,"VI":3024},"THE PHOTODEGRADATION OF PORPHYRINS IN CELLS CAN BE USED TO ESTIMATE THE LIFETIME OF SINGLET OXYGEN","SỰ PHOTODEGRADATION CỦA PORPHYRINS TRONG TẾ BÀO CÓ THỂ ĐƯỢC SỬ DỤNG ĐỂ ƯỚC LƯỢNG THỜI GIAN SỐNG CỦA OXYGEN 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R., 1987, Morphological study of the combined effect of purpurin derivatives and light on transplantable rat bladder tumors, Cancer Res., 47, 496",{},{"id":26,"text":3425,"url":26,"identifiers":3426},"Murphree A. L., 1982, Clinical application of hematoporphyrin photoradiation therapy in recurrent retinoblastoma, Invest. Ophthalmol. Vis. Sci., 22, 7",{},{"id":26,"text":3428,"url":26,"identifiers":3429},"10.1016\u002FS0022-5347(17)45339-0",{"doi":3428},{"id":26,"text":3431,"url":26,"identifiers":3432},"Parker J. G., 1986, Optical detection of the photodynamic production of singlet oxygen in vivo, Lasers Surg. 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M., 1986, Destruction of rat mammary tumor and normal tissue microcirculation by hematoporphyrin derivative photoradiation observed in vivo in sandwich observation chambers, Cancer Res., 46, 2532",{},{"id":26,"text":1205,"url":26,"identifiers":3461},{},{"id":26,"text":3463,"url":26,"identifiers":3464},"10.1111\u002Fj.1751-1097.1985.tb03446.x",{"doi":3463},{"id":26,"text":3466,"url":26,"identifiers":3467},"Taketa C., 1983, Lasers and Hematoporphyrin Derivative in Cancer, 70",{},{"id":26,"text":3469,"url":26,"identifiers":3470},"10.1038\u002Fbjc.1986.126",{"doi":3469},{"id":26,"text":3472,"url":26,"identifiers":3473},"Tokuda Y., 1983, Lasers and Hematoporphyrin Derivative in Cancer, 88",{},{"id":26,"text":3475,"url":26,"identifiers":3476},"10.3109\u002F02841868309134338",{"doi":3475},{"id":26,"text":3478,"url":26,"identifiers":3479},"10.1038\u002Fbjc.1987.78",{"doi":3478},{"id":26,"text":3481,"url":26,"identifiers":3482},"10.1378\u002Fchest.85.1.29",{"doi":3481},{"id":26,"text":3484,"url":26,"identifiers":3485},"10.2307\u002F3576288",{"doi":3484},{"id":26,"text":3487,"url":26,"identifiers":3488},"10.1016\u002F0002-9378(82)90744-X",{"doi":3487},{"id":26,"text":1223,"url":26,"identifiers":3490},{},{"id":26,"text":3492,"url":26,"identifiers":3493},"Wile A. 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The primary site of light absorption in mammalian cells has been identified as the mitochondria and, more specifically, cytochrome c oxidase (\u003Cjats:styled-content style=\"fixed-case\">CCO\u003C\u002Fjats:styled-content>). It is hypothesized that inhibitory nitric oxide can be dissociated from \u003Cjats:styled-content style=\"fixed-case\">CCO\u003C\u002Fjats:styled-content>, thus restoring electron transport and increasing mitochondrial membrane potential. Another mechanism involves activation of light or heat‐gated ion channels. This review will cover the redox signaling that occurs in \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> and examine the difference between healthy and stressed cells, where \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> can have apparently opposite effects. \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> has a marked effect on stem cells, and this is proposed to operate via mitochondrial redox signaling. \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> can act as a preconditioning regimen and can interact with exercise on muscles.\u003C\u002Fjats:p>","\u003Cjats:title>Tóm tắt\u003C\u002Fjats:title>\u003Cjats:p>Photobiomodulation (\u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content>) bao gồm việc sử dụng ánh sáng đỏ hoặc gần hồng ngoại với mật độ công suất thấp để tạo ra hiệu ứng có lợi cho tế bào hoặc mô. Liệu pháp \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> được sử dụng để giảm đau, viêm, phù nề và để tái tạo các mô bị tổn thương như vết thương, xương và gân. Vị trí chính của sự hấp thụ ánh sáng trong tế bào động vật có vú đã được xác định là ty thể, và cụ thể hơn là oxyase cytochrome c (\u003Cjats:styled-content style=\"fixed-case\">CCO\u003C\u002Fjats:styled-content>). Có giả thuyết rằng nitric oxide ức chế có thể bị phân ly khỏi \u003Cjats:styled-content style=\"fixed-case\">CCO\u003C\u002Fjats:styled-content>, do đó phục hồi quá trình vận chuyển điện tử và tăng tiềm năng màng ty thể. Một cơ chế khác bao gồm việc kích hoạt các kênh ion nhạy cảm với ánh sáng hoặc nhiệt. Bài tổng quan này sẽ đề cập đến tín hiệu redox xảy ra trong \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> và xem xét sự khác biệt giữa tế bào khỏe mạnh và tế bào bị căng thẳng, nơi mà \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> có thể có những tác động trái ngược nhau một cách rõ ràng. \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> có tác động đáng kể đến các tế bào gốc, và điều này được đề xuất hoạt động thông qua tín hiệu redox ty thể. \u003Cjats:styled-content style=\"fixed-case\">PBM\u003C\u002Fjats:styled-content> có thể hoạt động như một chế độ tiền điều kiện và có thể tương tác với tập thể dục trên cơ bắp.\u003C\u002Fjats:p>",{"EN":3515,"VI":3516},"Mechanisms and Mitochondrial Redox Signaling in Photobiomodulation","Cơ chế và tín hiệu oxi hóa khử của ti mitochondria trong liệu pháp photobiomodulation",{"VOID":3518},"29164625",{"VOID":3520},"10.1111\u002Fphp.12864",[102],[101],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1111\u002Fphp.12864",[3525],{"id":3526,"sortIndex":36,"researcher":26,"roles":3527,"affiliations":3528,"properties":3561},"7720338e-384e-4ed6-8c41-a090f52777e6",[],[3529,3540,3550],{"id":3530,"sortIndex":114,"affiliation":3531,"properties":26},"c88b86fd-129a-4eef-9d77-ddad105082f8",{"id":3532,"createTime":3533,"updateTime":3534,"relativeEntities":3535,"slug":3536,"properties":3537,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"42e7ea8b-435a-49dc-ba6c-86714b490c3c","2024-02-08T13:25:22.347+00:00","2024-11-25T07:10:15.123+00:00",[],"Wellman-Center-for-Photomedicine-Massachusetts-General-Hospital-Boston-MA",{"title":3538},{"VI":3539},"Wellman Center for Photomedicine, Massachusetts General Hospital, Boston, MA",{"id":3541,"sortIndex":36,"affiliation":3542,"properties":26},"1db5143a-d0e9-45c6-8786-2bfd3f35ebbc",{"id":3543,"createTime":3544,"updateTime":3544,"relativeEntities":3545,"slug":3546,"properties":3547,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"1d323948-1cce-4df2-a99a-d6d347c861af","2024-11-25T07:09:59.276+00:00",[],"Department-of-Dermatology-Harvard-Medical-School-Boston-MA",{"title":3548},{"EN":3549},"Department of Dermatology, Harvard Medical School, Boston, MA",{"id":3551,"sortIndex":115,"affiliation":3552,"properties":26},"45e9f689-8e1d-426c-8472-7cb7630f9b63",{"id":3553,"createTime":3554,"updateTime":3555,"relativeEntities":3556,"slug":3557,"properties":3558,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"7ab98a0b-2d15-4377-b246-c8b91b7792cb","2024-01-24T11:47:28.339+00:00","2024-11-25T07:09:59.280+00:00",[],"Harvard-MIT-Division-of-Health-Sciences-and-Technology-Cambridge-MA",{"title":3559},{"VI":3560},"Harvard-MIT Division of Health Sciences and Technology, Cambridge, MA",{"openalex":3562,"orcid":3564,"title":3566},{"VOID":3563},"A5001374433",{"VOID":3565},"https:\u002F\u002Forcid.org\u002F0000-0001-6431-4605",{"EN":3567},"Michael R. 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T., 2004, Low‐level laser therapy facilitates superficial wound healing in humans: A triple‐blind, Sham‐controlled study, J Athl Train., 39, 223",{},{"id":26,"text":4062,"url":26,"identifiers":4063},"10.1007\u002Fs10103-016-2012-x",{"doi":4062},{"id":26,"text":4065,"url":26,"identifiers":4066},"Momenzadeh S., 2015, The intravenous laser blood irradiation in chronic pain and fibromyalgia, J Lasers Med Sci., 6, 6",{},{"id":26,"text":4068,"url":26,"identifiers":4069},"10.1113\u002Fjphysiol.2010.201327",{"doi":4068},{"id":26,"text":4071,"url":26,"identifiers":4072},"10.1186\u002Fs40798-014-0003-7",{"doi":4071},{"id":4074,"createTime":4075,"updateTime":4076,"relativeEntities":4077,"slug":4078,"properties":4079,"entityType":854,"verifyStatus":25,"verifyTime":4093,"verifyNote":1261,"syncStatus":28,"languages":4094,"translateLanguages":4095,"viewCount":36,"primaryUrl":4096,"fullTextUrl":26,"authors":4097,"publicationType":887,"publisherRelationship":4132,"citationCount":156,"citationInfo":4170,"publishDate":4172,"publishYear":4173,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":4174,"isForceReanalyzing":1237},"2e9f6d5b-c3e8-4dbd-87cb-1dade9091e43","2024-09-21T06:59:32.888+00:00","2025-02-25T02:28:08.889+00:00",[],"A-NEW-METHOD-FOR-THE-DETECTION-OF-SINGLET-OXYGEN-IN-AQUEOUS-SOLUTIONS",{"mag":4080,"keywords":4082,"openalex":4083,"abstract":4085,"title":4088,"doi":4091},{"VOID":4081},"1965340064",{"VI":1248},{"VOID":4084},"W1965340064",{"EN":4086,"VI":4087},"\u003Cjats:p>\u003Cjats:bold>Abstract—\u003C\u002Fjats:bold> In experiments on the interception of reactive intermediates of strongly oxidizing character in dye (S) sensitized photooxidations using \u003Cjats:italic>p\u003C\u002Fjats:italic>‐nitrosodimethylaniline (RNO) as a selective scavenger, it has been observed that some substrates (A) or \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> acceptors (like imidazole derivatives) induce the bleaching of RNO as followed spectrophotometrically at 440 nm. Since singlet oxygen (\u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>) does not react chemically with RNO, this bleaching is a consequence of \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> capture by the imidazole ring which results in the formation of a trans‐annular peroxide intermediate [\u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>] capable of inducing the bleaching of RNO (‐RNO). In the absence of RNO, [\u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>] decomposes or rearranges into the final oxygenation product \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>: \u003Cjats:sup>1\u003C\u002Fjats:sup>Δ\u003Cjats:sub>g\u003C\u002Fjats:sub> Thus, the system imidazole plus RNO can be used as a sensitive and selective test for the presence of \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> in aqueous solutions. The method can also be applied in the presence of sensitizing dyes which, under visible irradiation, can partially bleach RNO even in the absence of imidazole derivatives. In such a case, the bleaching of RNO is strongly increased by the presence of imidazoles with a characteristic dependence on their concentration. The separation of the product of RNO bleaching by thin layer chromatography can serve as additional proof of the presence of \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> in the system. The imidazole plus RNO method has been applied to a number of sensitizing and non‐sensitizing dyes.\u003C\u002Fjats:p>","\u003Cjats:p>\u003Cjats:bold>Tóm tắt—\u003C\u002Fjats:bold> Trong các thí nghiệm về việc chặn các trung gian phản ứng có tính oxi hóa mạnh trong quá trình quang oxi hóa nhạy màu (S) sử dụng \u003Cjats:italic>p\u003C\u002Fjats:italic>-nitrosodimethylaniline (RNO) làm tác nhân chọn lọc, đã quan sát thấy rằng một số hợp chất nền (A) hoặc các chất tiếp nhận \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> (như các dẫn xuất imidazole) thúc đẩy quá trình tẩy màu RNO theo cách quang phổ tại 440 nm. Do oxy đơn (\u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>) không phản ứng hóa học với RNO, việc tẩy màu này là hệ quả của việc thu giữ \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> bởi vòng imidazole, dẫn đến việc hình thành một trung gian peroxit trans-­annular [\u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>] có khả năng thúc đẩy tẩy màu RNO (‐RNO). Trong sự vắng mặt của RNO, [\u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>] phân hủy hoặc tái sắp xếp thành sản phẩm oxy hóa cuối cùng \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub>: \u003Cjats:sup>1\u003C\u002Fjats:sup>Δ\u003Cjats:sub>g\u003C\u002Fjats:sub>. Do đó, hệ thống imidazole cộng với RNO có thể được sử dụng như một thử nghiệm nhạy và chọn lọc cho sự hiện diện của \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> trong các dung dịch nước. Phương pháp này cũng có thể được áp dụng trong sự hiện diện của các phẩm màu nhạy sáng, những phẩm màu này, dưới ánh sáng nhìn thấy, có thể làm tẩy màu một phần RNO ngay cả khi không có các dẫn xuất imidazole. Trong trường hợp như vậy, việc tẩy màu RNO sẽ tăng mạnh nhờ sự hiện diện của các imidazole với phụ thuộc đặc trưng vào nồng độ của chúng. Việc tách sản phẩm của quá trình tẩy màu RNO bằng sắc ký lớp mỏng có thể phục vụ như một bằng chứng bổ sung cho sự hiện diện của \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> trong hệ thống. Phương pháp imidazole cộng với RNO đã được áp dụng cho một số phẩm màu nhạy sáng và không nhạy sáng.\u003C\u002Fjats:p>",{"EN":4089,"VI":4090},"A NEW METHOD FOR THE DETECTION OF SINGLET OXYGEN IN AQUEOUS SOLUTIONS","MỘT PHƯƠNG PHÁP MỚI ĐỂ PHÁT HIỆN OXYGEN ĐƠN TRONG CÁC DUNG DỊCH NƯỚC",{"VOID":4092},"10.1111\u002Fj.1751-1097.1978.tb06972.x","2024-09-21T06:59:32.887+00:00",[102],[101],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1111\u002Fj.1751-1097.1978.tb06972.x",[4098,4117],{"id":4099,"sortIndex":36,"researcher":26,"roles":4100,"affiliations":4101,"properties":4112},"7c680973-7577-4352-a8f5-195d941db71a",[],[4102],{"id":4103,"sortIndex":36,"affiliation":4104,"properties":26},"82620aff-e4f4-421a-9c45-c47af6bf908b",{"id":4105,"createTime":4106,"updateTime":4106,"relativeEntities":4107,"slug":4108,"properties":4109,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"715a1b6a-8943-4d0e-8c31-79ab265575d8","2024-09-21T06:59:32.900+00:00",[],"Laboratoire-de-Physico-Chimie-des-Rayonnements-associ%C3%A9-au-CNRS-Universit%C3%A9-de-Paris-Sud-91405-Orsay-France",{"title":4110},{"EN":4111},"Laboratoire de Physico-Chimie des Rayonnements (associé au CNRS), Université de Paris-Sud, 91405 Orsay, France",{"openalex":4113,"title":4115},{"VOID":4114},"A5007241935",{"EN":4116},"I. 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K. H. A.Kezle L. V.LevshinandT. D.Slavnova(1972)J. Chem. Soc. Chem. Commun. 1292–1293.",{"doi":4181},"10.1039\u002Fc39720001292",{"id":26,"text":4183,"url":26,"identifiers":4184},"Mohsni S., 1976, Excited States of Biological Molecules, 34",{},{"id":26,"text":4186,"url":26,"identifiers":4187},"10.1021\u002Far50004a002",{"doi":4186},{"id":26,"text":4189,"url":26,"identifiers":4190},"10.1126\u002Fscience.162.3857.963",{"doi":4189},{"id":26,"text":4192,"url":26,"identifiers":4193},"Foote C. S. T. T.FujimotoandY. C.Chang(1972)Tetrahedron Lett.45–48.",{"doi":4194},"10.1016\u002FS0040-4039(01)84235-0",{"id":26,"text":4196,"url":26,"identifiers":4197},"10.1002\u002F9780470133361.ch1",{"doi":4196},{"id":26,"text":4199,"url":26,"identifiers":4200},"10.1021\u002Fja00760a057",{"doi":4199},{"id":26,"text":4202,"url":26,"identifiers":4203},"10.1111\u002Fj.1751-1097.1969.tb05678.x",{"doi":4202},{"id":26,"text":4205,"url":26,"identifiers":4206},"Hasty N. P. B.Merkel P.RadlickandD. R.Kearns(1972)Tetrahedron Lett.49–51.",{"doi":4207},"10.1016\u002FS0040-4039(01)84236-2",{"id":26,"text":4209,"url":26,"identifiers":4210},"10.1111\u002Fj.1751-1097.1967.tb08769.x",{"doi":4209},{"id":26,"text":4212,"url":26,"identifiers":4213},"10.1021\u002Fcr60272a004",{"doi":4212},{"id":26,"text":4215,"url":26,"identifiers":4216},"10.1016\u002F0020-7055(70)90017-3",{"doi":4215},{"id":26,"text":4218,"url":26,"identifiers":4219},"10.1111\u002Fj.1751-1097.1978.tb07557.x",{"doi":4218},{"id":26,"text":4221,"url":26,"identifiers":4222},"10.1111\u002Fj.1751-1097.1974.tb06587.x",{"doi":4221},{"id":26,"text":4224,"url":26,"identifiers":4225},"10.1111\u002Fj.1751-1097.1978.tb06973.x",{"doi":4224},{"id":26,"text":4227,"url":26,"identifiers":4228},"10.1021\u002Fja01090a004",{"doi":4227},{"id":26,"text":4230,"url":26,"identifiers":4231},"Kralji I. S.ElMohsniandM.Arvis(1976)The VIIth Intern. Congress on Photobiology Rome Book of Abstracts.",{},{"id":26,"text":4233,"url":26,"identifiers":4234},"10.1111\u002Fj.1751-1097.1978.tb07642.x",{"doi":4233},{"id":26,"text":4236,"url":26,"identifiers":4237},"10.1038\u002F263442a0",{"doi":4236},{"id":26,"text":4239,"url":26,"identifiers":4240},"10.1016\u002F0009-2614(72)80130-1",{"doi":4239},{"id":26,"text":4242,"url":26,"identifiers":4243},"10.1021\u002Fja00776a003",{"doi":4242},{"id":26,"text":4245,"url":26,"identifiers":4246},"10.1111\u002Fj.1751-1097.1973.tb06333.x",{"doi":4245},{"id":26,"text":4248,"url":26,"identifiers":4249},"10.1111\u002Fj.1751-1097.1972.tb07343.x",{"doi":4248},{"id":4251,"createTime":4252,"updateTime":4253,"relativeEntities":4254,"slug":4255,"properties":4256,"entityType":854,"verifyStatus":25,"verifyTime":4269,"verifyNote":1261,"syncStatus":28,"languages":4270,"translateLanguages":4271,"viewCount":36,"primaryUrl":4272,"fullTextUrl":26,"authors":4273,"publicationType":887,"publisherRelationship":4323,"citationCount":803,"citationInfo":4360,"publishDate":4362,"publishYear":4363,"citationAnalyzeStatus":28,"lastCitationAnalyze":26,"indexDatabases":26,"openAccess":26,"references":4364,"isForceReanalyzing":1237},"51b602a3-97d7-4ff1-a19b-9b4ab6e52fec","2025-02-06T02:44:45.918+00:00","2025-02-25T02:29:11.821+00:00",[],"QUANTUM-YIELD-OF-SINGLET-OXYGEN-PRODUCTION-BY-XANTHENE-DERIVATIVES",{"mag":4257,"keywords":4259,"openalex":4260,"abstract":4262,"title":4265,"doi":4268},{"VOID":4258},"1995935632",{"VI":1248},{"VOID":4261},"W1995935632",{"EN":4263,"VI":4264},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>The singlet oxygen quantum yield (ϕ\u003Cjats:sub>1\u003C\u002Fjats:sub>o\u003Cjats:sub>2\u003C\u002Fjats:sub>) of 11 purified fluorescein derivatives was determined by reaction with singlet oxygen acceptors in aqueous and ethanolic solutions; in both solvents ϕ\u003Cjats:sub>1\u003C\u002Fjats:sub>o\u003Cjats:sub>2\u003C\u002Fjats:sub> was enhanced with increasing halogenation. Tryptophan and 2,2,6,6‐tetramethylpiperidone were found to be unadapted for the determination of ϕ\u003Cjats:sub>1\u003C\u002Fjats:sub>o\u003Cjats:sub>2\u003C\u002Fjats:sub>, in our systems; however, the use of 9.10‐dipropionic anthracene acid andp‐nitrosodimethylaniline in conjunction with imidazole derivatives was suitable for \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> detection in water. Both methods lead to results in excellent agreement. As in ethanol. ϕ\u003Cjats:sub>1\u003C\u002Fjats:sub>o\u003Cjats:sub>2\u003C\u002Fjats:sub>, was equal to the triplet state quantum yield (ϕ\u003Cjats:sub>T\u003C\u002Fjats:sub>), the comparison between the two solvents showed that ϕ\u003Cjats:sub>T\u003C\u002Fjats:sub> in water was greater than in ethanol. The comparison between our values obtained with polychromatic light with published data obtained with monochromatic light suggests that the triplet quantum yield of fluorescein derivatives is wavelength independent.\u003C\u002Fjats:p>","\u003Cjats:title>Tóm tắt\u003C\u002Fjats:title>\u003Cjats:p>Năng suất lượng tử oxy đơn (ϕ\u003Cjats:sub>1\u003C\u002Fjats:sub>o\u003Cjats:sub>2\u003C\u002Fjats:sub>) của 11 dẫn xuất fluorescein đã được xác định bằng phản ứng với các chất nhận oxy đơn trong dung dịch nước và ethanol; trong cả hai dung môi, ϕ\u003Cjats:sub>1\u003C\u002Fjats:sub>o\u003Cjats:sub>2\u003C\u002Fjats:sub> đã tăng lên với sự gia tăng độ halogen hóa. Tryptophan và 2,2,6,6‐tetramethylpiperidone được coi là không thích hợp cho việc xác định ϕ\u003Cjats:sub>1\u003C\u002Fjats:sub>o\u003Cjats:sub>2\u003C\u002Fjats:sub> trong hệ thống của chúng tôi; tuy nhiên, việc sử dụng 9.10‐dipropionic anthracene acid và p‐nitrosodimethylaniline kết hợp với các dẫn xuất imidazole là phù hợp cho việc phát hiện \u003Cjats:sup>1\u003C\u002Fjats:sup>O\u003Cjats:sub>2\u003C\u002Fjats:sub> trong nước. Cả hai phương pháp đều cho kết quả rất phù hợp. Tương tự, trong ethanol, ϕ\u003Cjats:sub>1\u003C\u002Fjats:sub>o\u003Cjats:sub>2\u003C\u002Fjats:sub> bằng năng suất lượng tử trạng thái triplet (ϕ\u003Cjats:sub>T\u003C\u002Fjats:sub>), so sánh giữa hai dung môi cho thấy ϕ\u003Cjats:sub>T\u003C\u002Fjats:sub> trong nước lớn hơn trong ethanol. So sánh các giá trị mà chúng tôi thu được bằng ánh sáng đa sắc với dữ liệu đã được công bố thu được bằng ánh sáng đơn sắc cho thấy rằng năng suất lượng tử trạng thái triplet của các dẫn xuất fluorescein là độc lập với bước sóng.\u003C\u002Fjats:p>",{"EN":4266,"VI":4267},"QUANTUM YIELD OF SINGLET OXYGEN PRODUCTION BY XANTHENE DERIVATIVES","NĂNG SUẤT LƯỢNG TỬ OXY ĐƠN TỪ VIỆC SẢN XUẤT CỦA CÁC CHÈ DƯỢC THẢO XANTHENE",{"VOID":2222},"2025-02-06T02:44:45.917+00:00",[102],[101],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1111\u002Fj.1751-1097.1983.tb04472.x",[4274,4293,4308],{"id":4275,"sortIndex":36,"researcher":26,"roles":4276,"affiliations":4277,"properties":4288},"3f1c470c-d475-4a33-86ae-18bd95ecc045",[],[4278],{"id":4279,"sortIndex":36,"affiliation":4280,"properties":26},"78f8a265-fb57-4573-b460-f9549eca8dc3",{"id":4281,"createTime":4282,"updateTime":4282,"relativeEntities":4283,"slug":4284,"properties":4285,"entityType":98,"verifyStatus":28,"verifyTime":26,"verifyNote":26,"syncStatus":28,"languages":26,"translateLanguages":26,"viewCount":36},"64b644f8-1ca5-460f-a1d6-3cd7a610a1ae","2025-02-06T02:44:45.945+00:00",[],"Physique-Exp%C3%A9rimentale-Universit%C3%A9-de-Li%C3%A8ge-4000-Sart-Tilman-par-Li%C3%A8ge-1-Belgium",{"title":4286},{"EN":4287},"Physique Expérimentale.Université de Liège, 4000 Sart-Tilman par Liège 1. 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