[1] | Su RY, Ho LJ, Yang HY, et al. Association between Trichomonas vaginalis infection and cervical lesions: a population-based, nested case-control study in Taiwan[J]. Parasitol Res, 2020, 119(8):2649-2657. | [2] | Rowley J, Vander Hoorn S, Korenromp E, et al. Chlamydia, gonorrhoea, trichomoniasis and syphilis: global prevalence and incidence estimates, 2016[J]. Bull World Health Organ, 2019, 97(8):548-562. | [3] | World Health Organization. Report on global sexually transmitted infection surveillance[R]. Geneva: WHO, 2018. | [4] | Zhao NN. Study on leucorrhea examination and infection rate in trichomoniasis fungal vaginitis[J]. Med Forum, 2021, 25(1):102-103. (in Chinese) | [4] | (赵男男. 滴虫霉菌性阴道炎患者白带检验及感染率动态研究[J]. 基层医学论坛, 2021, 25(1):102-103.) | [5] | Chen Y, Liu SL, Ma DX, et al. Analysis of 19 342 cases of Trichomonas vaginalis[J]. J Trop Med, 2019, 19(9):1177-1179. (in Chinese) | [5] | (陈杨, 刘素伶, 马丹霞, 等. 19 342例阴道毛滴虫检查结果分析[J]. 热带医学杂志, 2019, 19(9):1177-1179.) | [6] | Bi H. Leucorrhea test and dynamic analysis of infection rate in patients with trichomonad fungal vaginitis[J]. J Clin Med Lit, 2016, 3(47):9323. (in Chinese) | [6] | (毕恒. 滴虫霉菌性阴道炎患者白带检验及感染率动态分析[J]. 临床医药文献电子杂志, 2016, 3(47):9323.) | [7] | Zhang ZC, Kang LX, Wang WJ, et al. Prevalence and genetic diversity of Trichomonas vaginalis clinical isolates in a targeted population in Xinxiang City, Henan Province, China[J]. Parasit Vectors, 2018, 11(1):124. | [8] | He YF. Analysis of Trichomonas vaginalis infection in gynecology and preventive measures[J]. Chin J Nosocomiol, 2012, 22(6):1205-1206. (in Chinese) | [8] | (何燕妃. 妇科阴道毛滴虫感染分析及预防措施[J]. 中华医院感染学杂志, 2012, 22(6):1205-1206.) | [9] | Zhu RY, Zhu YF, Fu RN, et al. Investigation and analysis of Trichomonas vaginalis infection in middle-aged and elderly patients with vaginitis[J]. Prog Mod Biomed, 2020, 20(18):3478-3481, 3557. (in Chinese) | [9] | (朱荣英, 朱艳芳, 付蕊宁, 等. 中老年阴道炎患者阴道毛滴虫感染状况调查分析[J]. 现代生物医学进展, 2020, 20(18):3478-3481, 3557.) | [10] | ACOG Committee on Practice Bulletins--Gynecology. ACOG Practice Bulletin. Clinical management guidelines for obstetrician-gynecologists, Number 72, May 2006: Vaginitis[J]. Obstet Gynecol, 2006, 107(5):1195-1206. | [11] | Meites E, Gaydos CA, Hobbs MM, et al. A review of evidence-based care of symptomatic trichomoniasis and asymptomatic Trichomonas vaginalis infections[J]. Clin Infect Dis, 2015, 61(Suppl 8):S837-S848. | [12] | Krieger JN. Trichomoniasis in men: old issues and new data[J]. Sex Transm Dis, 1995, 22(2):83-96. | [13] | Aquino MFK, Hinderfeld AS, Simoes-Barbosa A. Trichomonas vaginalis[J]. Trends Parasitol, 2020, 36(7):646-647. | [14] | Xu ZX. Influence of Trichomonas vaginalis infection on semen parameters[J]. J Henan Univ Med Sci, 2005, 24(2):59-60. (in Chinese) | [14] | (徐志喜. 阴道毛滴虫感染对精液各参数的影响[J]. 河南大学学报(医学版), 2005, 24(2):59-60.) | [15] | Roh J, Lim YS, Seo MY, et al. The secretory products of Trichomonas vaginalis decrease fertilizing capacity of mice sperm in vitro[J]. Asian J Androl, 2015, 17(2):319-323. | [16] | Han QJ, Liu JH. Effects of the metabolite of Trichomonas vaginalis on membrane function integrity of human sperm in vitro[J]. Chin J Misdiagnostics, 2005, 5(3):418-419. (in Chinese) | [16] | (韩青江, 刘继红. 阴道毛滴虫代谢产物体外对精子膜功能的影响[J]. 中国误诊学杂志, 2005, 5(3):418-419.) | [17] | van Gerwen OT, Muzny CA. Recent advances in the epidemiology, diagnosis, and management of Trichomonas vaginalis infection[J]. F1000Res, 2019, 8: F1000FacultyRev-F1000Faculty1666. | [18] | Chen WL, Zhong XR, Chen JF, et al. An ultrastructural study on the process of spermatozoa phagocytosis by Trichomonas vaginalis[J]. J Chin Electron Microsc Soc, 1997, 16(1): 17-18, 21-22. (in Chinese) | [18] | (陈文列, 钟秀容, 陈金富, 等. 阴道毛滴虫吞噬精子过程的超微结构观察[J]. 电子显微学报, 1997, 16(1): 17-18, 21-22.) | [19] | Chen WL, Zhong XR, Chen LY, et al. Ultrastructural cytochemistry of Trichomonas vaginalis[J]. J Chin Electron Microsc Soc, 1994, 13(5):346. (in Chinese) | [19] | (陈文列, 钟秀容, 陈莲云, 等. 阴道毛滴虫的超微结构细胞化学研究[J]. 电子显微学报, 1994, 13(5):346.) | [20] | Benchimol M, de Andrade Rosa I, da Silva Fontes R, et al. Trichomonas adhere and phagocytose sperm cells: adhesion seems to be a prominent stage during interaction[J]. Parasitol Res, 2008, 102(4):597-604. | [21] | Tuttle JP Jr, Holbrook TW Jr, Derrick FC Jr. Interference of human spermatozoal motility by Trichomonas vaginalis[J]. J Urol, 1977, 118(6):1024-1025. | [22] | Wiwanitkit V. Counteraction during movement of spermatozoa by Trichomonas vaginalis observed by visual image analysis: a possible cause of female infertility[J]. Fertil Steril, 2008, 90(3):528-530. | [23] | Wiwanitkit V. Motion of spermatozoa by visual image analysis[J]. Sex Disabil, 2007, 25(3):151-154. | [24] | Amos WB, Grimstone AV, Rothschild LJ, et al. Structure, protein composition and birefringence of the costa: a motile flagellar root fibre in the flagellate Trichomonas[J]. J Cell Sci, 1979, 35:139-164. | [25] | Jarecki-Black JC, Lushbaugh WB, Golosov L, et al. Trichomonas vaginalis: preliminary characterization of a sperm motility inhibiting factor[J]. Ann Clin Lab Sci, 1988, 18(6):484-489. | [26] | Tash JS, Mann T. Adenosine 3’: 5’-cyclic monophosphate in relation to motility and senescence of spermatozoa[J]. Proc R Soc Lond B Biol Sci, 1973, 184(1074):109-114. | [27] | Cohen MS, Colin MJ, Golimbu M, et al. The effects of prostaglandins on sperm motility[J]. Fertil Steril, 1977, 28(1):78-85. | [28] | Kranjcić-Zec I, Dzamić A, Mitrović S, et al. The role of parasites and fungi in secondary infertility[J]. Med Pregl, 2004, 57(1/2):30-32. | [29] | Cai HZ, Chen WL, Zhong XR, et al. Study on enzymic location and metabolism of Trichomonas vaginalis[J]. Chin J Parasit Dis Control, 1993(4): 256-258, 323-324. (in Chinese) | [29] | (蔡蕙珍, 陈文列, 钟秀容, 等. 阴道毛滴虫酶的定位与代谢的研究[J]. 中国寄生虫病防治杂志, 1993(4): 256-258, 323-324.) | [30] | Midlej V, Benchimol M. Trichomonas vaginalis kills and eats: evidence for phagocytic activity as a cytopathic effect[J]. Parasitology, 2010, 137(1):65-76. | [31] | Lustig G, Ryan CM, Secor WE, et al. Trichomonas vaginalis contact-dependent cytolysis of epithelial cells[J]. Infect Immun, 2013, 81(5):1411-1419. | [32] | Mercer F, Johnson PJ. Trichomonas vaginalis: pathogenesis, symbiont interactions, and host cell immune responses[J]. Trends Parasitol, 2018, 34(8):683-693. | [33] | Bhakta SB, Moran JA, Mercer F. Neutrophil interactions with the sexually transmitted parasite Trichomonas vaginalis: implications for immunity and pathogenesis[J]. Open Biol, 2020, 10(9):200192. | [34] | Im SJ, Han IH, Kim JH, et al. Inflammatory response of a prostate stromal cell line induced by Trichomonas vaginalis[J]. Parasite Immunol, 2016, 38(4):218-227. | [35] | Daly JJ, Sherman JK, Green L, et al. Survival of Trichomonas vaginalis in human semen[J]. Genitourin Med, 1989, 65(2):106-108. | [36] | Pei F, Luo Q, Lv WJ, et al. Effect of chronic prostatitis on semen quality in men[J]. Chin J Reproductive Health, 2018, 29(3):262-265. (in Chinese) | [36] | (裴峰, 罗倩, 吕文静, 等. 慢性前列腺炎对男性精液质量的影响[J]. 中国生育健康杂志, 2018, 29(3):262-265.) | [37] | Yuan HY, Ge B. Research progress of chronic prostatitis and male infertility mechanism[J]. Chin Pract Med, 2011, 6(4):256-258. (in Chinese) | [37] | (袁宏毅, 葛波. 慢性前列腺炎与男性不育机制的研究进展[J]. 中国实用医药, 2011, 6(4):256-258.) | [38] | Bedwal RS, Bahuguna A. Zinc, copper and selenium in reproduction[J]. Experientia, 1994, 50(7):626-640. | [39] | Björndahl L, Kvist U. A model for the importance of zinc in the dynamics of human sperm chromatin stabilization after ejaculation in relation to sperm DNA vulnerability[J]. Syst Biol Reprod Med, 2011, 57(1/2):86-92. | [40] | Barratt CL, Aitken RJ, Björndahl L, et al. Sperm DNA: organization, protection and vulnerability: from basic science to clinical applications: a position report[J]. Hum Reprod, 2010, 25(4):824-838. | [41] | Alshahrani S, McGill J, Agarwal A. Prostatitis and male infertility[J]. J Reprod Immunol, 2013, 100(1):30-36. | [42] | Najafi A, Chaechi Nosrati MR, Ghasemi E, et al. Is there association between Trichomonas vaginalis infection and prostate cancer risk?: asystematic review and meta-analysis[J]. Microb Pathog, 2019, 137:103752. | [43] | Han IH, Kim JH, Jang KS, et al. Inflammatory mediators of prostate epithelial cells stimulated with Trichomonas vaginalis promote proliferative and invasive properties of prostate cancer cells[J]. Prostate, 2019, 79(10):1133-1146. | [44] | Han IH, Song HO, Ryu JS. IL-6 produced by prostate epithelial cells stimulated with Trichomonas vaginalis promotes proliferation of prostate cancer cells by inducing M2 polarization of THP-1-derived macrophages[J]. PLoS Negl Trop Dis, 2020, 14(3):e0008126. | [45] | Chung HY, Kim JH, Han IH, et al. Polarization of M2 macrophages by interaction between prostate cancer cells treated with Trichomonas vaginalis and adipocytes[J]. Korean J Parasitol, 2020, 58(3):217-227. | [46] | Lee JJ, Moon HS, Lee TY, et al. PCR for diagnosis of male Trichomonas vaginalis infection with chronic prostatitis and urethritis[J]. Korean J Parasitol, 2012, 50(2):157-159. | [47] | Inui A. Cancer anorexia-Cachexia syndrome: current issues in research and management[J]. CA Cancer J Clin, 2002, 52(2):72-91. | [48] | Viviani S, Ragni G, Santoro A, et al. Testicular dysfunction in Hodgkin’s disease before and after treatment[J]. Eur J Cancer, 1991, 27(11):1389-1392. | [49] | Tsang SH, Peisch SF, Rowan B, et al. Association between Trichomonas vaginalis and prostate cancer mortality[J]. Int J Cancer, 2019, 144(10):2377-2380. | [50] | Marous M, Huang WY, Rabkin CS, et al. Trichomonas vaginalis infection and risk of prostate cancer: associations by disease aggressiveness and race/ethnicity in the PLCO trial[J]. Cancer Causes Control, 2017, 28(8):889-898. | [51] | Shui IM, Kolb S, Hanson C, et al. Trichomonas vaginalis infection and risk of advanced prostate cancer[J]. Prostate, 2016, 76(7):620-623. | [52] | Chen ZG, Guo B, Ma GC, et al. Clinical analysis of 5 cases of trichomonas urogenital infection[J]. Chin J Dermatovenereology, 2000, 14(6):404. (in Chinese) | [52] | (陈宗淦, 郭宾, 马贵春, 等. 滴虫性泌尿生殖系感染5例临床分析[J]. 中国皮肤性病学杂志, 2000, 14(6):404.) | [53] | Gimenes F, Souza RP, Bento JC, et al. Male infertility: a public health issue caused by sexually transmitted pathogens[J]. Nat Rev Urol, 2014, 11(12):672-687. | [54] | La Vignera S, Vicari E, Condorelli RA, et al. Male accessory gland infection and sperm parameters (review)[J]. Int J Androl, 2011, 34(5 Pt 2):e330-e347. | [55] | Janssenswillen C, Tournaye H, Pierard D, et al. Microsurgical epididymal sperm aspiration with motile trophozoite cells but no spermatozoa[J]. Hum Reprod, 1997, 12(10):2217-2219. | [56] | Lloyd G, Case JR, De Frias D, et al. Trichomonas vaginalis orchitis with associated severe oligoasthenoteratospermia and hypogonadism[J]. J Urol, 2003, 170(3):924. | [57] | Naito M, Terayama H, Hirai S, et al. Experimental autoimmune orchitis as a model of immunological male infertility[J]. Med Mol Morphol, 2012, 45(4):185-189. | [58] | Zhou PY. Systemic transmission of infection and infertility in male reproduction[J]. J Clin Dermatol, 2009, 38(3):198-200. (in Chinese) | [58] | (周平玉. 男性生殖系统性传播感染与不育[J]. 临床皮肤科杂志, 2009, 38(3):198-200.) |
|