Bioengineering Department, Université de Technologie de Compiègne, Compiègne, France.
PLoS One. 2013;8(1):e53891. doi: 10.1371/journal.pone.0053891. Epub 2013 Jan 11.
A finely tuned balance between estrogens and androgens controls reproductive functions, and the last step of steroidogenesis plays a key role in maintaining that balance. Environmental toxicants are a serious health concern, and numerous studies have been devoted to studying the effects of endocrine disrupting chemicals (EDCs). The effects of EDCs on steroidogenic enzymes may influence steroid secretion and thus lead to reproductive toxicity. To predict hormonal balance disruption on the basis of data on aromatase activity and mRNA level modulation obtained in vitro on granulosa cells, we developed a mathematical model for the last gonadal steps of the sex steroid synthesis pathway. The model can simulate the ovarian synthesis and secretion of estrone, estradiol, androstenedione, and testosterone, and their response to endocrine disruption. The model is able to predict ovarian sex steroid concentrations under normal estrous cycle in female rat, and ovarian estradiol concentrations in adult female rats exposed to atrazine, bisphenol A, metabolites of methoxychlor or vinclozolin, and letrozole.
雌激素和雄激素之间的精细平衡控制着生殖功能,而类固醇生成的最后一步在维持这种平衡中起着关键作用。环境毒素是一个严重的健康问题,许多研究致力于研究内分泌干扰化学物质(EDCs)的影响。EDCs 对甾体生成酶的影响可能会影响甾体的分泌,从而导致生殖毒性。为了根据体外培养的颗粒细胞中芳香酶活性和 mRNA 水平调节获得的数据预测激素平衡紊乱,我们开发了一个用于性类固醇合成途径的最后性腺步骤的数学模型。该模型可以模拟雌酮、雌二醇、雄烯二酮和睾酮的卵巢合成和分泌,以及它们对内分泌干扰的反应。该模型能够预测正常发情周期下雌性大鼠的卵巢性类固醇浓度,以及暴露于莠去津、双酚 A、甲氧氯或 vinclozolin 的代谢物或来曲唑的成年雌性大鼠的卵巢雌二醇浓度。