Impaired glucose tolerance and insulin resistance in a prenatally-androgenized rat model of polycystic ovary syndrome in later life.

IF 2.6 4区 医学 Q2 PHYSIOLOGY
Mahbanoo Farhadi-Azar, Mahsa Noroozzadeh, Maryam Mousavi, Marzieh Saei Ghare Naz, Fahimeh Ramezani Tehrani
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Abstract

Polycystic ovary syndrome (PCOS), one of the most common endocrine disorders in reproductive-aged women, is associated with metabolic disturbances. The present study aimed to examine changes in body weight (BW) and glucose and insulin tolerance in a prenatally-androgenized (PNA) rat model of PCOS compared to control with increasing age. Pregnant rats in the experimental group were subcutaneously injected with 5 mg of free testosterone on the 20th day of pregnancy, while the control group received the solvent. Female offspring of both groups, PNA rats (rat model of PCOS) and control, were examined in terms of changes in BW, glucose and insulin tolerance at 3, 6, 12 and 20 months of age. BW at birth (6.53 ± 0.89 vs. 5.60 ± 1.18 g; P = 0.038), 15 (25 ± 1.15 vs. 22.36 ± 3.98 g; P = 0.019) and 30 (59.37 ± 10.19 vs.49.9 ± 9.39 g; P = 0.022) days of age was significantly increased in the rat model of PCOS compared to control, but no significant differences were observed in BW of the rat model of PCOS compared to control at 60 (P = 0.155) and 75 (P = 0.932) days or at 3 (P = 0.239), 6 (P = 0.782), 12 (P = 0.755) and 20 (P = 0.092) months of age. Rat model of PCOS showed impaired glucose tolerance (IGT) at 3 months of age (P = 0.020) and insulin resistance (IR) with increasing age (3-20 months of age) compared to control. Increased BW before puberty, IGT at 3 months of age and IR with increasing age were observed in our rat model of PCOS. This rat model may contribute to a better understanding of underlying mechanisms of changes in BW, IGT and IR in future studies.

产前雄激素化多囊卵巢综合征大鼠模型在晚年的糖耐量和胰岛素抵抗受损。
多囊卵巢综合征(PCOS)是育龄妇女最常见的内分泌疾病之一,与代谢紊乱有关。本研究旨在研究PCOS大鼠的体重(BW)、葡萄糖和胰岛素耐量随年龄增长的变化。实验组妊娠大鼠于妊娠第20天皮下注射游离睾酮5 mg,对照组给予溶剂。观察PNA大鼠(PCOS模型大鼠)和对照组雌性后代在3、6、12和20月龄时体重、葡萄糖和胰岛素耐量的变化。出生体重(6.53±0.89∶5.60±1.18 g);P = 0.038), 15(25±1.15∶22.36±3.98)g;P = 0.019)和30(59.37±10.19 vs.49.9±9.39克;PCOS模型大鼠60 (P = 0.155)、75 (P = 0.932)日龄及3 (P = 0.239)、6 (P = 0.782)、12 (P = 0.755)、20 (P = 0.092)月龄体重与对照组比较差异无统计学意义。与对照组相比,PCOS模型大鼠在3月龄时葡萄糖耐量(IGT)下降(P = 0.020),胰岛素抵抗(IR)随年龄的增加(3-20月龄)而下降。在我们的PCOS大鼠模型中,观察到青春期前体重、3月龄时IGT和IR随年龄增长而增加。该大鼠模型可能有助于在未来的研究中更好地了解体重、IGT和IR变化的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Experimental Physiology
Experimental Physiology 医学-生理学
CiteScore
5.10
自引率
3.70%
发文量
262
审稿时长
1 months
期刊介绍: Experimental Physiology publishes research papers that report novel insights into homeostatic and adaptive responses in health, as well as those that further our understanding of pathophysiological mechanisms in disease. We encourage papers that embrace the journal’s orientation of translation and integration, including studies of the adaptive responses to exercise, acute and chronic environmental stressors, growth and aging, and diseases where integrative homeostatic mechanisms play a key role in the response to and evolution of the disease process. Examples of such diseases include hypertension, heart failure, hypoxic lung disease, endocrine and neurological disorders. We are also keen to publish research that has a translational aspect or clinical application. Comparative physiology work that can be applied to aid the understanding human physiology is also encouraged. Manuscripts that report the use of bioinformatic, genomic, molecular, proteomic and cellular techniques to provide novel insights into integrative physiological and pathophysiological mechanisms are welcomed.
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