[1] 李青花.环境因素导致男性不育症的机理探讨[J]. 中国计划生育学杂志, 2004, 12(5):319-320. [2] SALVATI G, GENOVESI G, MARCELLINI L, et al. Effects of Panax Ginseng C.A. Meyer saponins on male fertility[J]. Panminerva Med, 1996, 38(4):249-254. [3] PARK W S, SHIN D Y, KIM D R, et al. Korean ginseng induces spermatogenesis in rats through the activation of cAMP-responsive element modulator (CREM)[J]. Fertil Steril, 2007, 88(4):1000-1002. [4] 许慧. 人参皂苷Rg1及其代谢产物Rh1、Ppt生精保护作用的分子机制研究[D]. 开封:河南大学, 2013. [5] LIU T, PENG Y F, JIA C, et al. Ginsenoside Rg3 improves erectile function in streptozotocin-induced diabetic rats[J]. J Sex Med, 2015, 12(3):611-620. [6] LIANG H Y, ZHANG S W, LI Z L. Ginsenoside Rg3 protects mouse leydig cells against triptolide by downregulation of miR-26a[J]. Drug Des Devel Ther, 2019, 13:2057-2066. [7] CHATONNET P,BOUTOU S,PLANA A. Contamination of wines and spirits by phthalates:types of contaminants present, contamination sources and means of prevention[J]. Food Addit Contam Part A Chem Anal Control Expo Risk Assess,2014,31(9):1605-1615. [8] 赵金昌,靳曙光,徐一波,等.ERK-MAPK通路在DBP致大鼠睾丸缝隙连接损伤中作用[J].中国公共卫生,2017,33(2):206-210. [9] 吴冠宇. 邻苯二甲酸二丁酯对雄性小鼠生殖系统的影响[D].长春:吉林大学,2015. [10] 常兵,梁玉香,王珥梅.邻苯二甲酸二丁酯对青春期雄性大鼠的生殖毒性研究[J].中国自然医学杂志,2007, 21(3):194-197. [11] FISHER J S, MACPHERSON S, MARCHETTI N, et al. Human ‘testicular dysgenesis syndrome’:a possible model using in-utero exposure of the rat to dibutyl phthalate[J]. Hum Reprod, 2003, 18(7):1383-1394. [12] ZHOU S H, DENG Y F, WENG Z W, et al. Traditional Chinese medicine as a remedy for male infertility:a review[J]. World J Mens Health, 2019, 37(2):175-185. [13] 王晓英, 张均田. 人参皂苷Rb1对小鼠性功能的改善作用及其机制探讨[J]. 药学学报, 2000, 35(7):492-495. [14] YAO Y. Ginsenosides reduce body weight and ameliorate hepatic steatosis in high fat dietinduced obese mice via endoplasmic reticulum stress and pSTAT3/STAT3 signaling[J]. Mol Med Rep, 2020, 21(3):1059-1070. [15] 郝杰, 王应雄, 何俊琳, 等. 人参皂甙Rg1对镉诱导的大鼠睾丸损伤的保护作用[J]. 重庆医科大学学报, 2007, 32(3):236-238. [16] LARA N L M, VAN DEN DRIESCHE S, MACPHERSON S, et al. Dibutyl phthalate induced testicular dysgenesis originates after seminiferous cord formation in rats[J].Sci Rep,2017,7(1):2521. [17] LI N, MRUK D D, CHEN H Q, et al. Rescue of perfluorooctanesulfonate (PFOS)-mediated Sertoli cell injury by overexpression of gap junction protein connexin 43[J]. Sci Rep, 2016, 6:29667. [18] CHU D S, SHAKES D C. Spermatogenesis[J]. Adv Exp Med Biol, 2013, 757:171-203. [19] CHENG C Y, MRUK D D. A local autocrine axis in the testes that regulates spermatogenesis[J]. Nat Rev Endocrinol, 2010, 6(7):380-395. [20] POINTIS G, GILLERON J, CARETTE D, et al. Physiological and physiopathological aspects of connexins and communicating gap junctions in spermatogenesis[J]. Philos Trans R Soc Lond B Biol Sci, 2010, 365(1546):1607-1620. [21] CHENG C Y. Toxicants target cell junctions in the testis:Insights from the indazole-carboxylic acid model[J]. Spermatogenesis, 2014, 4(2):e981485. [22] MOK K W, MRUK D D, LEE W M, et al. Spermatogonial stem cells alone are not sufficient to re-initiate spermatogenesis in the rat testis following adjudin-induced infertility[J]. Int J Androl, 2012, 35(1):86-101. [23] BAI D L. Structural analysis of key gap junction domains:Lessons from genome data and disease-linked mutants[J]. Semin Cell Dev Biol, 2016, 50:74-82. [24] GÜNTHER S, FIETZ D, WEIDER K, et al. Effects of a murine germ cell-specific knockout of Connexin 43 on Connexin expression in testis and fertility[J]. Transgenic Res, 2013, 22(3):631-641. [25] MRUK D D, CHENG C Y. The mammalian blood-testis barrier:its biology and regulation[J]. Endocr Rev, 2015, 36(5):564-591. [26] ZHANG J, LI H. PGE2 regulating Cx43 to affect testosterone synthesis in rats leydig cell exposed at DBP[J]. Int J Clin Exp Pathol, 2016, 9(4):4574-4578. [27] 张燚, 李环. DBP介导Cx43对大鼠睾丸Leydig细胞睾酮合成的影响[J]. 北华大学学报(自然科学版), 2015, 16(2):191-194. |