Wang Fan, Liu Fei, Chen Wanguang, Xu Ruijie, Wang Wei
School of Biological Science, Luoyang Normal University, Luoyang, 471022, China; Cold Water Fish Breeding Engineering Technology Research Center of Henan Province, Luoyang, 471022, China.
School of Biological Science, Luoyang Normal University, Luoyang, 471022, China; Cold Water Fish Breeding Engineering Technology Research Center of Henan Province, Luoyang, 471022, China.
Chemosphere. 2018 Feb;193:695-701. doi: 10.1016/j.chemosphere.2017.11.088. Epub 2017 Nov 20.
Triclosan (TCS) is a broad spectrum antimicrobial agent which has been widely dispersed and determinated in the aquatic environment. However, the effects of TCS on reproductive endocrine in male fish are poorly understood. In this study, male Yellow River carp (Cyprinus carpio) were exposed to 0, 1/5, 1/10 and 1/20 LC (96 h LC of TCS to carp) TCS under semi-static conditions for 42 d. Vitellogenin (Vtg), 17β-estradiol (E), testosterone(T), gonadotropin (GtH), and gonadotropin-releasing hormone (GnRH) levels were measured by enzyme-linked immunosorbent assay (ELISA). Meanwhile, we also examined the mRNA expressions of aromatase, GtHs-β, GnRH, estrogen receptor (Er), and androgen receptor (Ar) by quantitative Real-time Polymerase Chain Reaction (qRT-PCR). TCS induced Vtg levels of hepatopancreas, E levels of serum, and inhibited Ar and Er mRNA levels, suggesting that the induction of Vtg production by TCS was indirectly caused by non-Er pathways. TCS-induced Vtg levels by interfering with the reproductive axis at plenty of latent loci of male carps: (a) TCS exposure increased the aromatase mRNA expression of hypothalamus and gonad aromatase, consequently increasing serum concentrations of E to induce Vtg in hepatopancreas; (b) TCS treatment changed GtH-β and GnRH mRNA expression and secretion, causing the disturbance of reproductive endocrine; (c) TCS exposure decreased Ar mRNA levels, indicating potential Ar-mediated antiandrogen action. These mechanisms showed that TCS may induce Vtg production in male carp by non-Er-mediated pathways.
三氯生(TCS)是一种广谱抗菌剂,已在水生环境中广泛分布并被检测到。然而,TCS对雄性鱼类生殖内分泌的影响却知之甚少。在本研究中,雄性黄河鲤(Cyprinus carpio)在半静态条件下暴露于0、1/5、1/10和1/20 LC(TCS对鲤鱼的96小时LC)的TCS中42天。通过酶联免疫吸附测定(ELISA)测量卵黄蛋白原(Vtg)、17β-雌二醇(E)、睾酮(T)、促性腺激素(GtH)和促性腺激素释放激素(GnRH)水平。同时,我们还通过定量实时聚合酶链反应(qRT-PCR)检测了芳香化酶、GtHs-β、GnRH、雌激素受体(Er)和雄激素受体(Ar)的mRNA表达。TCS诱导了肝胰腺中Vtg水平、血清中E水平,并抑制了Ar和Er mRNA水平,表明TCS诱导Vtg产生是由非Er途径间接引起的。TCS通过干扰雄性鲤鱼多个潜在位点的生殖轴来诱导Vtg水平:(a)TCS暴露增加了下丘脑芳香化酶mRNA表达和性腺芳香化酶,从而增加血清E浓度以诱导肝胰腺中Vtg的产生;(b)TCS处理改变了GtH-β和GnRH mRNA表达及分泌,导致生殖内分泌紊乱;(c)TCS暴露降低了Ar mRNA水平,表明存在潜在的Ar介导的抗雄激素作用。这些机制表明,TCS可能通过非Er介导的途径诱导雄性鲤鱼产生Vtg。