Phytochemical profiles and bioactivities of Parnassia palustris L.
Tài liệu tham khảo
1995, 35, 64
A, 2015, The anti - tumor effects and mechanism of inherit protect liver Mongolia prescriptions on hepatocarcinoma cells, J. Med. Pharm. Chin. Minor., 21, 63
Gao, 2014, Further study on chemical constituents of Parnassia wightiana Wall: four new dihydro-β-agarofuran sesquiterpene polyesters, Int. J. Mol. Sci., 16, 9119, 10.3390/ijms16059119
Lv, 2014, New dihydro-β-agarofuran sesquiterpenes from Parnassia wightiana Wall: isolation, identification and cytotoxicity against cancer cells, Int. J. Mol. Sci., 15, 11111, 10.3390/ijms150611111
Wang, 2014, Wightianines A–E, dihydro-β-agarofuran sesquiterpenes from Parnassia wightiana, and their antifungal and insecticidal activities, J. Agric. Food. Chem, 62, 6669, 10.1021/jf501767s
Hu, 2013, Flavonols from Parnassia palustris Linn. (Saxifragaceae), Biochem. Syst. Ecol, 48, 70, 10.1016/j.bse.2012.12.014
Bohm, 1978, Flavonoids of some species of Bergenia, Francoa, Parnassia and Lepuropetalon, Biochem. Syst. Ecol., 14, 75, 10.1016/0305-1978(86)90088-8
Xin, 2019, Chemical constituents of antitumor active fractions from Parnassia palustris, Chin Pharm. J., 54, 264
Zhang, 2021, Phytochemical profiles and antioxidant, anticholinergic, and antidiabetic activities of Odontites serotina (Lam.) dum, Eur. J. Integr. Med., 44, 10.1016/j.eujim.2021.101340
Wen, 2012, In vitro antioxidant activity of Parnassia wightiana W. extracts, Chin, J. Nat. Med., 10
Xiao, 2018, Study on separation and purification technology of total phenolic acids extract from Chaenomeles speciosa and its biological activities, Mod. Chin. Med., 20, 316
Kamran, 2022, Therapeutic potential of certain terpenoids as anticancer agents: A scoping review, Cancers, 14, 1100, 10.3390/cancers14051100
Liu, 2022, Elsholtzia rugulosa: phytochemical profile and antioxidant, anti-Alzheimer’s Disease, antidiabetic, antibacterial, cytotoxic and hepatoprotective activities, Plant. Food. Hum. Nutr., 77, 62, 10.1007/s11130-021-00941-4
Zhang, 2019, Antioxidant chemical composition and determination of total content of phenolic acid in seeds of Actinidia chinensis planch, Chin. Pharm. J., 54, 1653
Long, 2017
Xu, 2020, Studies on antioxidant and α-glucosidase inhibitory constituents of Chinese toon bud (Toona sinensis), J. Funct. Foods, 73, 10.1016/j.jff.2020.104108
Zou, 2021, Bioassay-guided isolation and identification of anti-Alzheimer's active compounds from Spiranthes sinensis (Pers.) Ames, Med. Chem. Res., 30, 1849, 10.1007/s00044-021-02777-8
Meng, 2016, Evaluation of total flavonoids, myricetin, and quercetin from Hovenia dulcis Thunb. as inhibitors of α-amylase and α-glucosidase, Plant. Food. Hum. Nutr., 71, 444, 10.1007/s11130-016-0581-2
Li, 2022, Therapeutic effect of two Co(II) coordination polymers by inhibiting tumor cell proliferation and invasion on pancreatic cancer, Arab. J. Chem., 15
Zhu, 2022, New butyrylcholinesterase inhibitor derived from mulberry twigs, a kind of agricultural byproducts, Ind. Crop. Prod., 187, 10.1016/j.indcrop.2022.115535