Biogem, Istituto di Biologia e Genetica Molecolare, Via Camporeale, 83031 Ariano Irpino (AV), Italy.
Department of Science and Technology, University of Sannio, 82100 Benevento, Italy.
Cells. 2021 Aug 25;10(9):2187. doi: 10.3390/cells10092187.
Thyroid hormones (THs) regulate many biological processes in vertebrates, including reproduction. Testicular somatic and germ cells are equipped with the arrays of enzymes (deiodinases), transporters, and receptors necessary to locally maintain the optimal level of THs and their signalling, needed for their functions and spermatogenesis. Pesticides, as chlorpyrifos (CPF) and ethylene thiourea (ETU), impair the function of thyroid and testis, affecting male fertility. However, their ability to disarrange testicular T3 (t-T3) metabolism and signalling is poorly considered. Here, a multi-species analysis involving zebrafish and mouse suggests the damage of t-T3 metabolism and signalling as a mechanism of gonadic toxicity of low-doses CPF and ETU. Indeed, the developmental exposure to both compounds reduces transcript in both models, as well as in ex-vivo cultures of murine seminiferous tubules, and it is linked to alteration of steroidogenesis and germ cell differentiation. A major impact on spermatogonia was confirmed molecularly by the expression of their markers and morphologically evidenced in zebrafish. The results reveal that in the adopted models, exposure to both pesticides alters the t-T3 metabolism and signalling, affecting the reproductive capability. Our data, together with previous reports suggest zebrafish as an evaluable model in assessing the action of compounds impairing locally T3 signalling.
甲状腺激素 (THs) 调节脊椎动物的许多生物学过程,包括生殖。睾丸体细胞和生殖细胞配备了一系列的酶(脱碘酶)、转运蛋白和受体,这些酶、蛋白和受体对于局部维持 THs 的最佳水平及其信号转导至关重要,这是它们发挥功能和精子发生所必需的。农药,如毒死蜱 (CPF) 和乙烯硫脲 (ETU),会损害甲状腺和睾丸的功能,影响男性生育能力。然而,它们扰乱睾丸 T3(t-T3)代谢和信号转导的能力尚未得到充分考虑。在这里,一项涉及斑马鱼和小鼠的多物种分析表明,t-T3 代谢和信号转导的破坏是 CPF 和 ETU 低剂量性腺毒性的一种机制。事实上,这两种化合物的发育暴露都会导致两种模型中的转录物减少,以及在离体培养的小鼠曲细精管中减少,这与类固醇生成和生殖细胞分化的改变有关。在斑马鱼中,通过其标志物的表达在分子水平上证实了对精原细胞的重大影响,并在形态上在斑马鱼中得到了证实。研究结果表明,在采用的模型中,暴露于这两种农药会改变 t-T3 的代谢和信号转导,从而影响生殖能力。我们的数据与之前的报告一起表明,斑马鱼可以作为评估破坏局部 T3 信号化合物作用的可评估模型。