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首页> 外文期刊>Physiological Reports >Metabolic profiling reveals reprogramming of lipid metabolic pathways in treatment of polycystic ovary syndrome with 3?¢????iodothyronamine
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Metabolic profiling reveals reprogramming of lipid metabolic pathways in treatment of polycystic ovary syndrome with 3?¢????iodothyronamine

机译:代谢谱分析揭示了脂质代谢途径在3 ???????碘多巴胺治疗多囊卵巢综合征中的重编程

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Complex diseases such as polycystic ovary syndrome (PCOS) are associated with intricate pathophysiological, hormonal, and metabolic feedbacks that make their early diagnosis challenging, thus increasing the prevalence risks for obesity, cardiovascular, and fatty liver diseases. To explore the crosstalk between endocrine and lipid metabolic pathways, we administered 3?¢????iodothyronamine (T1AM), a natural analog of thyroid hormone, in a mouse model of PCOS and analyzed plasma and tissue extracts using multidisciplinary omics and biochemical approaches. T1AM administration induces a profound tissue?¢????specific antilipogenic effect in liver and muscle by lowering gene expression of key regulators of lipid metabolism, PTP1B and PLIN2, significantly increasing metabolites (glucogenic, amino acids, carnitine, and citrate) levels, while enhancing protection against oxidative stress. In contrast, T1AM has an opposing effect on the regulation of estrogenic pathways in the ovary by upregulating STAR , CYP11A1, and CYP17A1. Biochemical measurements provide further evidence of significant reduction in liver cholesterol and triglycerides in post?¢????T1AM treatment. Our results shed light onto tissue?¢????specific metabolic vs. hormonal pathway interactions, thus illuminating the intricacies within the pathophysiology of PCOS. This study opens up new avenues to design drugs for targeted therapeutics to improve quality of life in complex metabolic diseases.
机译:诸如多囊卵巢综合症(PCOS)等复杂疾病与复杂的病理生理,激素和代谢反馈相关,这使得其早期诊断具有挑战性,从而增加了肥胖,心血管和脂肪肝疾病的患病风险。为了探索内分泌和脂质代谢途径之间的串扰,我们在PCOS小鼠模型中施用了甲状腺素的天然类似物3 ???????甲状腺素(T1AM),并使用多学科组学和生化方法分析了血浆和组织提取物。 T1AM给药通过降低脂质代谢,PTP1B和PLIN2关键调节因子的基因表达,显着增加代谢物(生糖,氨基酸,肉碱和柠檬酸盐)的水平,从而在肝脏和肌肉中诱导出深刻的组织特异性抗脂肪形成作用,同时增强对氧化应激的保护。相反,T1AM通过上调STAR,CYP11A1和CYP17A1对卵巢中雌激素途径的调节产生相反的作用。生化测量结果提供了进一步的证据,证明T1AM治疗后肝胆固醇和甘油三酯显着降低。我们的结果揭示了组织中特定代谢与激素途径之间的相互作用,从而阐明了PCOS病理生理学的复杂性。这项研究为设计针对性治疗药物以改善复杂的代谢性疾病的生活质量开辟了新途径。

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