Artocarpus Communis Seed 调节多囊卵巢综合征大鼠的 P53、IRS、HsD17β2、FTO 和 CYP11a 基因

Akingbolabo Daniel Ogunlakin, O. Ojo, Chimzi David Onu-Boms, Oluwafemi Samson Afolayan, P. O. Ayeni, I. A. Akinwumi, Opeyemi J. Akinmurele, G. Adebodun, Damilare Iyinkristi Ayokunle, O. A. Ambali, Omolola Adenike Ajayi-Odoko, O. A. Ogunlakin, M. Sonibare
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摘要

多囊卵巢综合征(PCOS)是一种常见的内分泌疾病,影响着全球 5-10% 的育龄妇女。多囊卵巢综合征是一种多方面的内分泌失调症,其特点是有多种分子机制参与其发病。本研究探讨了 Artocarpus communis seed 对来曲唑诱导的多囊卵巢综合征大鼠卵巢内分泌失调及 P53、IRS、HsD17β2、FTO 和 CYP11a 基因表达的影响。为了诱导 30 只雌性 Wistar 大鼠患上多囊卵巢综合征,来曲唑的剂量为 1 mg/kg。连续 12 天,给大鼠服用 Artocarpus communis 种子水提取物(100 和 250 毫克/千克体重)和标准药物枸橼酸氯米芬(1 毫克/千克体重)。ELISA 评估黄体生成素(LH)、卵泡刺激素(FSH)和雌二醇水平。还评估了卵巢中 P53、IRS、HsD17β2、FTO 和 CYP11a 基因的表达水平。在来曲唑诱导的多囊卵巢综合征大鼠体内,种子水提取物降低了 LH 水平,提高了 FSH 水平。此外,种子水提取物(250 毫克/千克体重)还能调节 P53、2 型 17-HSD(17-HSD)、脂肪量与肥胖相关(FTO)、11a-羟化酶/17,20-去淀粉酶(CYP11a)和胰岛素受体底物(IRS)基因在 PCOS 大鼠卵巢中的表达。因此,多囊卵巢综合征大鼠卵巢中的 Artocarpus communis seed 可能会对与多囊卵巢综合征相关的分子通路产生多方面的影响,有可能使雄激素代谢、荷尔蒙失衡和卵巢功能正常化。
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Artocarpus Communis Seed Regulates P53, IRS, HsD17β2, FTO, and CYP11a Genes in Polycystic Ovarian Syndrome Rats
Polycystic ovarian syndrome (PCOS) is a prevalent endocrine illness that affects 5-10% of reproductive women globally. It is a multifaceted hormonal disorder characterized by the involvement of numerous molecular mechanisms that contribute to its development. This study investigates the effect of Artocarpus communis seed on the hormonal imbalance and P53, IRS, HsD17β2, FTO, and CYP11a genes expression in the ovaries of letrozole-induced polycystic ovarian syndrome rats. To induce PCOS in 30 female Wistar rats, letrozole was administered at a dosage of 1 mg/kg. For 12 days, Artocarpus communis seed aqueous extract (100 and 250 mg/kg body weight) and Clomiphene citrate (1 mg/kg body weight), a standard medication, were given. ELISA assessed luteinizing hormone (LH), follicle-stimulating hormone (FSH), and estradiol levels. The levels of P53, IRS, HsD17β2, FTO, and CYP11a gene expression in the ovaries were assessed. The aqueous extract reduced LH and increased FSH levels in Letrozole-induced PCOS rats. Additionally, seed aqueous extract (250 mg/kg bw) regulated the expression of P53, type 2 17-HSD (17-HSD), fat mass and obesity-associated (FTO), 11a-hydroxylase/17,20-desmolase (CYP11a), and insulin receptor substrate (IRS) genes in the ovaries of PCOS rats. Therefore, Artocarpus communis seed might have multifaceted effects on molecular pathways associated with PCOS, potentially normalizing androgen metabolism, hormonal imbalance, and ovarian function.
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