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杂合子内皮型一氧化氮合酶缺陷小鼠作为研究内皮型一氧化氮合酶单倍体不足对脑循环影响的模型。

Heterozygous eNOS Deficient Mice as a Model to Examine the Effects of eNOS Haploinsufficiency on the Cerebral Circulation.

作者信息

Didion Sean P

机构信息

Department of Pharmacology and Department of Neurology, The University of Mississippi Medical Center, USA.

出版信息

J Neurol Neuromedicine. 2017;2(2):6-9. Epub 2017 Feb 7.

Abstract

Nitric oxide derived from endothelial nitric oxide synthase (eNOS) has been shown to be a major mediator of endothelium-dependent responses in cerebral blood vessels. Loss of a single eNOS gene is not associated with any apparent negative consequences on endothelial function in most blood vessels. In contrast, we have recently demonstrated that heterozygous eNOS gene deficiency in combination with a high fat diet is associated with marked impairment of endothelial function. These findings provide an important example of eNOS haploinsufficiency and one that directly impacts the cerebral vasculature. A major mechanism associated with the impairment of endothelial function with eNOS deficiency and a high fat diet appears to be related to increases in plasma IL-6 that serves to further reduce the bioavailability of NO either directly or indirectly via reductions in eNOS expression or activity and via increases in vascular superoxide. Taken together, these findings provide important insights into genetic and molecular mechanisms that promote endothelial dysfunction in response to a high fat diet in cerebral blood vessels with inherent reductions in eNOS gene expression, such as those due to eNOS gene polymorphisms. These findings also highlight the importance of eNOS+/- mice to study the effects of eNOS haploinsufficiency on cerebral blood vessels.

摘要

内皮型一氧化氮合酶(eNOS)产生的一氧化氮已被证明是脑血管内皮依赖性反应的主要介质。在大多数血管中,单个eNOS基因的缺失与内皮功能的任何明显负面后果无关。相比之下,我们最近证明,杂合子eNOS基因缺陷与高脂饮食相结合会导致内皮功能明显受损。这些发现提供了一个重要的eNOS单倍剂量不足的例子,并且直接影响脑血管系统。与eNOS缺乏和高脂饮食导致内皮功能受损相关的一个主要机制似乎与血浆IL-6的增加有关,IL-6通过降低eNOS的表达或活性以及通过增加血管超氧化物直接或间接进一步降低NO的生物利用度。综上所述,这些发现为遗传和分子机制提供了重要见解,这些机制在具有固有eNOS基因表达降低(如由于eNOS基因多态性导致的降低)的脑血管中,促进高脂饮食引起的内皮功能障碍。这些发现还突出了eNOS+/-小鼠在研究eNOS单倍剂量不足对脑血管影响方面的重要性。

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