阉割引起的睾酮缺乏以组织特异性和饮食依赖性的方式增加雄性大鼠的肥胖。

Myunggi Baik, Jin Young Jeong, Seung Ju Park, Seon Pil Yoo, Jin Oh Lee, Jae Sung Lee, Md Najmul Haque, Hyun-Jeong Lee
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引用次数: 7

摘要

背景:男性睾酮缺乏在临床上与代谢综合征的发生有关,代谢综合征表现为肥胖、肝脂肪变性和2型糖尿病。我们研究了阉割诱导的睾酮缺乏对正常饮食(ND)和高脂肪饮食(HFD)雄性大鼠体肥胖以及脂质代谢、葡萄糖摄取和雄激素信号相关基因表达的影响。方法:从生理和分子水平研究ND或HFD饲喂下未去势和去势大鼠肌肉、肝脏和脂肪组织的脂质、糖代谢和雄激素信号的变化。结果:阉割诱导的睾酮缺乏通过激活脂肪酸(FA)合成,使ND动物更易早期发展为脂肪肝,而HFD激活肝脏FA摄取CD36的表达,导致肝脏脂肪变性的发展。在饲喂ND的大鼠中,去势通过激活CD36表达诱导肌肉脂肪积累。在nd喂养的大鼠皮下脂肪中,去势增加了脂肪和FA合成相关基因的表达,但降低了葡萄糖转运体基因的表达。在饲喂ND的大鼠腹部脂肪中,去势通过上调FA合成相关基因增加肥胖,HFD通过诱导FA摄取、葡萄糖转运蛋白和FA合成相关基因表达促进肥胖。在饲喂ND的大鼠中,去势降低了身体生长和肌肉重量,并下调了背最长肌雄激素信号基因的表达。结论:睾酮缺乏以组织特异性和饮食依赖性的方式增加肥胖。睾酮缺乏会降低身体和肌肉重量,并下调雄激素信号。
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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Testosterone deficiency caused by castration increases adiposity in male rats in a tissue-specific and diet-dependent manner.

Background: Testosterone deficiency in men is clinically associated with the development of metabolic syndrome, which manifests as obesity, hepatic steatosis, and type-2 diabetes. We investigated the effects of castration-induced testosterone deficiency on body adiposity and the expression of genes related to lipid metabolism and glucose uptake and androgen signaling in male rats fed a normal diet (ND) or a high-fat diet (HFD).

Methods: Changes in lipid and glucose metabolism and androgen signaling were investigated at physiological and molecular levels in the muscle, liver, and adipose tissues of non-castrated and castrated rats under ND or HFD feeding.

Results: Castration-induced testosterone deficiency predisposed animals on ND to early development of fatty liver by activating fatty acid (FA) synthesis, whereas HFD activated hepatic FA uptake CD36 expression, leading to the development of hepatic steatosis. In rats fed ND, castration induced muscle fat accumulation by activating CD36 expression. In the subcutaneous fat of ND-fed rats, castration increased adiposity and the expression of FA synthesis-related genes, but it decreased glucose transporter gene expression. In the abdominal fat of rats fed ND, castration increased adiposity by upregulating FA synthesis-related genes, and HFD promoted adiposity by inducing FA uptake, glucose transporter, and FA synthesis-related gene expression. In rats fed ND, castration decreased body growth and muscle weight and downregulated the expression of genes androgen signaling in the longissimus dorsi muscle.

Conclusions: Testosterone deficiency increases adiposity in a tissue-specific and diet-dependent manner. Testosterone deficiency decreases body and muscle weights and downregulates androgen signaling.

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