自发性糖尿病大鼠早期脂质改变。

I N de Gomez Dumm, S Montenegro, M C Tarrés, S M Martinez, R A Igal
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引用次数: 0

摘要

人类和实验性糖尿病广泛改变脂质代谢。eSS是一种进化缓慢的自发性糖尿病的大鼠品系,类似于年轻人的非胰岛素依赖性糖尿病。我们在这里报告了5个月大的eSS大鼠与年龄匹配的α对照相比的脂质代谢紊乱。空腹时血糖水平正常,葡萄糖负荷后明显呈糖尿病曲线。与对照组相比,eSS动物血浆和肝微粒体制剂中甘油三酯含量升高。糖尿病菌株的肝、肾微粒体和红细胞膜的亚油酸含量明显下降。在肝脏中,也注意到22:6 (n-3)的增加。肝微粒体中磷脂酰胆碱和磷脂酰乙醇胺的亚油酸含量降低,二十二碳六烯酸含量增加。eSS大鼠睾丸脂肪酸模式显示花生四烯酸相对比例升高,22:5 (n-6)、22:5 (n-3)和22:6 (n-3)酸相对比例降低。糖尿病大鼠肝脏和睾丸微粒体胆固醇含量和胆固醇/磷脂比值显著升高。在后一种组织中,也观察到较高的荧光各向异性值。目前的观察表明,在糖尿病发病的早期,当eSS大鼠仍处于血糖正常状态时,脂质代谢的严重改变可能有助于糖尿病综合征的建立和进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Early lipid alterations in spontaneously diabetic rats.

Human and experimental diabetes mellitus extensively alters lipid metabolism. The eSS is a rat strain that develops a spontaneous diabetes of slow evolution, resembling the non-insulin-dependent diabetes mellitus of young people. We report here disturbances in lipid metabolism of 5-month old eSS rats compared to age-matched alpha-controls. Normal plasmatic glucose levels were found in the fasted state, whereas a diabetic curve was evident for eSS rats after glucose load. Triglyceride content was elevated in plasma and in liver microsomal preparations of eSS animals, when compared to the controls. The diabetic strain revealed a significant fall in the amount of linoleic acid in liver and kidney microsomes and in erythrocyte membranes. In liver, an increase in 22:6 (n-3) was also noted. A depression in the content of linoleic acid as well as an enhancement of docosahexaenoic acid were detected in phosphatidylcholine and phosphatidylethanolamine fractions from liver microsomes of eSS rats. The fatty acid pattern of eSS rat testis showed a raise in the relative percentage of arachidonic and a decrease in 22:5 (n-6), 22:5 (n-3) and 22:6 (n-3) acids compared to their controls. Diabetic rats exhibited a significant increase in microsomal cholesterol content and cholesterol/phospholipid ratio in liver and testis. In the latter tissue, higher values of fluorescence anisotropy were also observed. The current observations indicate that in early stages of the diabetes onset, when eSS rats are still normoglycemic, severe alterations of lipid metabolism may contribute to the establishment and progression of the diabetic syndrome.

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