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Conazole fungicides inhibit Leydig cell testosterone secretion and androgen receptor activation in vitro

机译:康唑杀真菌剂体外抑制Leydig细胞睾丸激素分泌和雄激素受体活化

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摘要

Conazole fungicides are widely used in agriculture despite their suspected endocrine disrupting properties. In this study, the potential (anti-)androgenic effects of ten conazoles were assessed and mutually compared with existing data. Effects of cyproconazole (CYPRO), fluconazole (FLUC), flusilazole (FLUS), hexaconazole (HEXA), myconazole (MYC), penconazole (PEN), prochloraz (PRO), tebuconazole (TEBU), triadimefon (TRIA), and triticonazole (TRIT) were examined using murine Leydig (MA-10) cells and human T47D-ARE cells stably transfected with an androgen responsive element and a firefly luciferase reporter gene. Six conazoles caused a decrease in basal testosterone (T) secretion by MA-10 cells varying from 61% up to 12% compared to vehicle-treated control. T secretion was concentration-dependently inhibited after exposure of MA-10 cells to several concentrations of FLUS (IC50 = 12.4 μM) or TEBU (IC50 = 2.4 μM) in combination with LH. The expression of steroidogenic and cholesterol biosynthesis genes was not changed by conazole exposure. Also, there were no changes in reactive oxygen species (ROS) formation that could explain the altered T secretion after exposure to conazoles. Nine conazoles decreased T-induced AR activation (IC50s ranging from 10.7 to 71.5 μM) and effect potencies (REPs) were calculated relative to the known AR antagonist flutamide (FLUT). FLUC had no effect on AR activation by T. FLUS was the most potent (REP = 3.61) and MYC the least potent (REP = 0.03) AR antagonist. All other conazoles had a comparable REP from 0.12 to 0.38. Our results show distinct in vitro anti-androgenic effects of several conazole fungicides arising from two mechanisms: inhibition of T secretion and AR antagonism, suggesting potential testicular toxic effects. These effects warrant further mechanistic investigation and clearly show the need for accurate exposure data in order to perform proper (human) risk assessment of this class of compounds.
机译:康唑杀真菌剂尽管被怀疑具有破坏内分泌的特性,但仍广泛用于农业。在这项研究中,评估了十种康唑的潜在(抗)雄激素作用,并与现有数据进行了相互比较。环丙康唑(CYPRO),氟康唑(FLUC),氟硅唑(FLUS),己康唑(HEXA),霉菌唑(MYC),戊康唑(PEN),丙草胺(PRO),戊丁康唑(TEBU),三唑酮(TRIA)和三苯甲唑(使用鼠Leydig(MA-10)细胞和用雄激素响应元件和萤火虫荧光素酶报道基因稳定转染的人T47D-ARE细胞检查TRIT)。与载体处理的对照相比,六种康唑可导致MA-10细胞的基础睾丸激素(T)分泌减少,从61%到12%不等。将MA-10细胞暴露于几种浓度的FLUS(IC50 = 12.4μM)或TEBU(IC50 = 2.4μM)与LH结合后,T分泌受到浓度依赖性抑制。康唑暴露不会改变类固醇生成和胆固醇生物合成基因的表达。同样,活性氧(ROS)的形成也没有变化,可以解释暴露于康唑后T分泌的变化。相对于已知的AR拮抗剂氟他胺(FLUT),九个康唑降低了T诱导的AR激活(IC50在10.7至71.5μM之间),并且计算了效价(REPs)。 FLUC对T激活AR无效。FLUS是最有效的AR拮抗剂(REP = 3.61),而MYC则最不有效(REP = 0.03)。所有其他康唑的可比REP从0.12到0.38。我们的研究结果表明,几种康唑类杀菌剂的体外抗雄激素作用来自两个机制:抑制T分泌和AR拮抗作用,表明潜在的睾丸毒性作用。这些效应需要进一步的机械研究,并清楚地表明需要准确的接触数据才能对此类化合物进行适当的(人类)风险评估。

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