Inhibitory Effect of Vaginal Lactobacillus Supernatants on Cervical Cancer Cells
Tóm tắt
Từ khóa
Tài liệu tham khảo
Boccardo E, Lepique AP, Villa LL (2010) The role of inflammation in HPV carcinogenesis. Carcinogenesis 31:1905–1912
Bosch FX, Lorincz A, Muñoz N, Meijer CJ, Shah KV (2002) The causal relation between human papillomavirus and cervical cancer. J Clin Pathol 55:244–265
Nam KH, Kim YT, Kim SR et al (2009) Association between bacterial vaginosis and cervical intraepithelial neoplasia. J Gynecol Oncol 20:39–43
Liu JJ, Reid G, Jiang Y, Turner MS, Tsai CC (2007) Activity of HIV entry and fusion inhibitors expressed by the human vaginal colonizing probiotic Lactobacillus reuteri RC-14. Cell Microbiol 9:120–130
Ravel J, Gajer P, Abdo Z et al (2011) Vaginal microbiome of reproductive-age women. Proc Natl Acad Sci U S A 108(Suppl 1):4680–4687
Pendharkar S, Magopane T, Larsson PG et al (2013) Identification and characterisation of vaginal lactobacilli from South African women. BMC Infect Dis 13:43
Ngugi BM, Hemmerling A, Bukusi EA et al (2011) Effects of bacterial vaginosis-associated bacteria and sexual intercourse on vaginal colonization with the probiotic Lactobacillus crispatus CTV-05. Sex Transm Dis 38:1020–1027
Fujimura S, Watanabe A, Kimura K, Kaji M (2012) Probiotic mechanism of Lactobacillus gasseri OLL2716 strain against Helicobacter pylori. J Clin Microbiol 50:1134–1136
Spurbeck RR, Arvidson CG (2011) Lactobacilli at the front line of defense against vaginally acquired infections. Future Microbiol 6:567–582
Hemarajata P, Versalovic J (2013) Effects of probiotics on gut microbiota: mechanisms of intestinal immunomodulation and neuromodulation. Therap Adv Gastroenterol 6:39–51
Linsalata M, Cavallini A, Messa C, Orlando A, Refolo MG, Russo F (2009) Effects of Lactobacillus rhamnosus GG on proliferation and polyamine metabolism in HGC-27 human gastric and DLD-1 colonic cancer cell lines. Immunopharmacol Immunotoxicol 31:108–116
Li P, Yin Y, Yu Q, Yang Q (2011) Lactobacillus acidophilus S-layer protein-mediated inhibition of Salmonella-induced apoptosis in Caco-2 cells. Biochem Biophys Res Commun 409:142–147
Motevaseli E, Shirzad M, Akrami SM, Mousavi AS, Mirsalehian A, Modarressi MH (2013) Normal and tumour cervical cells respond differently to vaginal lactobacilli, independent of pH and lactate. J Med Microbiol 62:1065–1072
Kim SN, Lee WM, Park KS, Kim JB, Han DJ, Bae J (2015) The effect of Lactobacillus casei extract on cervical cancer cell lines. Contemp Oncol (Pozn) 19:306–312
Motevaseli E, Azam R, Akrami SM et al (2016) The effect of Lactobacillus crispatus and Lactobacillus rhamnosus culture supernatants on expression of autophagy genes and HPV E6 and E7 oncogenes in the HeLa cell line. Cell J 17:601–607
Xiao BB, Liao QP (2012) Analysis of diversity of vaginal microbiota in healthy Chinese women by using DNA-fingerprinting. Beijing Da Xue Xue Bao 44:281–287
Zeng ZY, Li YN, Su JR (2015) Retrospective analysis of high risk human papillomavirus genotypes infection among 1294 women. Int J Lab Med 36:796–800
Myers ER, McCrory DC, Nanda K, Bastian L, Matchar DB (2000) Mathematical model for the natural history of human papillomavirus infection and cervical carcinogenesis. Am J Epidemiol 151:1158–1171
Richardson H, Kelsall G, Tellier P et al (2003) The natural history of type-specific human papillomavirus infections in female university students. Cancer Epidemiol Biomark Prev 12:485–490
Goodwin EC, Di Maio D (2000) Repression of human papillomavirus oncogenes in HeLa cervical carcinoma cells causes the orderly reactivation of dormant tumor suppressor pathways. Proc Natl Acad Sci USA 97:12513–12518
Baker TS, Newcomb WW, Olson NH, Cowsert LM, Olson C, Brown JC (1991) Structures of bovine and human papillomaviruses. Analysis by cryoelectron microscopy and three dimensional image reconstruction. Biophys J 60:1445–1456
Ostör AG (1993) Natural history of cervical intraepithelial neoplasia: a critical review. Int J Gynecol Pathol 12:186–192
Pett M, Coleman N (2007) Integration of high-risk human papillomavirus: a key event in cervical carcinogenesis? J Pathol 212:356–367
Gray E, Pett MR, Ward D et al (2010) In Vitro progression of human papillomavirus 16 episome-associated cervical neoplasia displays fundamental similarities to integrant-associated carcinogenesis. Cancer Res 70:4081–4091
Boskey ER, Cone RA, Whaley KJ, Moench TR (2001) Origins of vaginal acidity: high D/L lactate ratio is consistent with bacteria being the primary source. Hum Reprod 16:1809–1813
McMillan A, Dell M, Zellar MP et al (2011) Disruption of urogenital biofilms by lactobacilli. Colloids Surf B Biointerfaces 86:58–64
Boris S, Barbes C (2000) Role played by lactobacilli in controlling the population of vaginal pathogens. Microbes Infect 2:543–546
Aroutcheva A, Gariti D, Simon M et al (2001) Defense factors of vaginal lactobacilli. Am J Obstet Gynecol 185:375–379
Ocaña VS, Pesce De Ruiz Holgado AA, Nader-Macías ME (1999) Characterization of a bacteriocin-like substance produced by a vaginal Lactobacillus salivarius strain. Appl Environ Microbiol 65:5631–5635
Guo YL, You K, Qiao J, Zhao YM, Geng L (2012) Bacterial vaginosis is conducive to the persistence of HPV infection. Int J STD AIDS 23:581–584
King CC, Jamieson DJ, Wiener J et al (2011) Bacterial vaginosis and the natural history of human papillomavirus. Infect Dis Obstet Gynecol 319460
Gillet E, Meys JF, Verstraelen H et al (2011) Bacterial vaginosis is associated with uterine cervical human papillomavirus infection: a meta-analysis. BMC Infect Dis 11:10
Gillet E, Meys JF, Verstraelen H et al (2012) Association between bacterial vaginosis and cervical intraepithelial neoplasia: systematic review and meta-analysis. PLoS One 7:e45201
Gunde T, Barberis A (2005) Yeast growth selection system for detecting activity and inhibition of dimerization-dependent receptor tyrosine kinase. Bio Techniques 39:541–549
Rashid NN, Rothan HA, Yusoff MS (2015) The association of mammalian DREAM complex and HPV16 E7 proteins. Am J Cancer Res 5:3525–3533
Zahra TE, Atieh AD, Zahra N et al (2016) Lactobacilli differentially modulate mTOR andWnt/β-catenin pathways in different cancer cell lines. Iran J Cancer Prev 9(3):e5369