肥胖Zucker大鼠胰岛素抵抗脂肪细胞中单胺氧化酶活性和咪唑啉结合位点增加。

Christian Carpéné, Luc Marti, Nathalie Morin
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引用次数: 1

摘要

背景:尽管有明显的胰岛素抵抗,遗传肥胖的Zucker大鼠的脂肪细胞以脂质形式积累了过量的卡路里摄入。在脂肪细胞、肝脏和肌肉中研究了14c -酪胺氧化和咪唑啉类放射性配体[3H-咪唑嗪,3H-(2-苯并呋喃基)-2-咪唑啉]的结合。在瘦肉大鼠和肥胖大鼠体内,研究酪胺+钒对葡萄糖处理的影响。结果:与瘦鼠相比,肥胖大鼠脂肪细胞中胰岛素对2-DG的摄取和脂肪生成的刺激受到抑制。这些变化是脂肪细胞特异性的,与瘦鼠相比,肥胖大鼠伴有更多的咪唑啉I2结合位点。在体外,酪胺阻止了I2位点的结合,而在体内,酪胺与钒一起给药可以降低肥胖大鼠的空腹血糖和甘油三酯水平。然而,可能是SSAO下调的结果,酪胺对葡萄糖转运的刺激在这些胰岛素抵抗的脂肪细胞中与胰岛素的刺激一样减少。脂肪细胞胺氧化酶在葡萄糖和脂质处理方面的假设贡献值得更多的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Increased monoamine oxidase activity and imidazoline binding sites in insulin-resistant adipocytes from obese Zucker rats.

Increased monoamine oxidase activity and imidazoline binding sites in insulin-resistant adipocytes from obese Zucker rats.

Increased monoamine oxidase activity and imidazoline binding sites in insulin-resistant adipocytes from obese Zucker rats.

Increased monoamine oxidase activity and imidazoline binding sites in insulin-resistant adipocytes from obese Zucker rats.

Background: Despite overt insulin resistance, adipocytes of genetically obese Zucker rats accumulate the excess of calorie intake in the form of lipids.

Aim: To investigate whether factors can replace or reinforce insulin lipogenic action by exploring glucose uptake activation by hydrogen peroxide, since it is produced by monoamine oxidase (MAO) and semicarbazide-sensitive amine oxidase (SSAO) in adipocytes.

Methods: 3H-2-deoxyglucose uptake (2-DG) was determined in adipocytes from obese and lean rats in response to insulin or MAO and SSAO substrates such as tyramine and benzylamine. 14C-tyramine oxidation and binding of imidazolinic radioligands [3H-Idazoxan, 3H-(2-benzofuranyl)-2-imidazoline] were studied in adipocytes, the liver, and muscle. The influence of in vivo administration of tyramine + vanadium on glucose handling was assessed in lean and obese rats.

Results: 2-DG uptake and lipogenesis stimulation by insulin were dampened in adipocytes from obese rats, when compared to their lean littermates. Tyramine and benzylamine activation of hexose uptake was vanadate-dependent and was also limited, while MAO was increased and SSAO decreased. These changes were adipocyte-specific and accompanied by a greater number of imidazoline I2 binding sites in the obese rat, when compared to the lean. In vitro, tyramine precluded the binding to I2 sites, while in vivo, its administration together with vanadium lowered fasting plasma levels of glucose and triacylglycerols in obese rats.

Conclusion: The adipocytes from obese Zucker rats exhibit increased MAO activity and imidazoline binding site number. However, probably as a consequence of SSAO down-regulation, the glucose transport stimulation by tyramine is decreased as much as that of insulin in these insulin-resistant adipocytes. The adipocyte amine oxidases deserve more studies with respect to their putative contribution to the management of glucose and lipid handling.

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