首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Cardiovascular and Cerebrovascular Aging—New Mechanisms and Insights: Caloric restriction confers persistent anti-oxidative pro-angiogenic and anti-inflammatory effects and promotes anti-aging miRNA expression profile in cerebromicrovascular endothelial cells of aged rats
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Cardiovascular and Cerebrovascular Aging—New Mechanisms and Insights: Caloric restriction confers persistent anti-oxidative pro-angiogenic and anti-inflammatory effects and promotes anti-aging miRNA expression profile in cerebromicrovascular endothelial cells of aged rats

机译:心血管和脑血管衰老—新机制和新见解:热量限制赋予老年大鼠脑微血管内皮细胞持续的抗氧化促血管生成和抗炎作用并促进抗衰老的miRNA表达谱

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摘要

In rodents, moderate caloric restriction (CR) without malnutrition exerts significant cerebrovascular protective effects, improving cortical microvascular density and endothelium-dependent vasodilation, but the underlying cellular mechanisms remain elusive. To elucidate the persisting effects of CR on cerebromicrovascular endothelial cells (CMVECs), primary CMVECs were isolated from young (3 mo old) and aged (24 mo old) ad libitum-fed and aged CR F344xBN rats. We found an age-related increase in cellular and mitochondrial oxidative stress, which is prevented by CR. Expression and transcriptional activity of Nrf2 are both significantly reduced in aged CMVECs, whereas CR prevents age-related Nrf2 dysfunction. Expression of miR-144 was upregulated in aged CMVECs, and overexpression of miR-144 significantly decreased expression of Nrf2 in cells derived from both young animals and aged CR rats. Overexpression of a miR-144 antagomir in aged CMVECs significantly decreases expression of miR-144 and upregulates Nrf2. We found that CR prevents age-related impairment of angiogenic processes, including cell proliferation, adhesion to collagen, and formation of capillary-like structures and inhibits apoptosis in CMVECs. CR also exerts significant anti-inflammatory effects, preventing age-related increases in the transcriptional activity of NF-κB and age-associated pro-inflammatory shift in the endothelial secretome. Characterization of CR-induced changes in miRNA expression suggests that they likely affect several critical functions in endothelial cell homeostasis. The predicted regulatory effects of CR-related differentially expressed miRNAs in aged CMVECs are consistent with the anti-aging endothelial effects of CR observed in vivo. Collectively, we find that CR confers persisting anti-oxidative, pro-angiogenic, and anti-inflammatory cellular effects, preserving a youthful phenotype in rat cerebromicrovascular endothelial cells, suggesting that through these effects CR may improve cerebrovascular function and prevent vascular cognitive impairment.
机译:在啮齿类动物中,没有营养不良的中等热量限制(CR)发挥了重要的脑血管保护作用,改善了皮质微血管密度和内皮依赖性血管舒张功能,但潜在的细胞机制仍然难以捉摸。为了阐明CR对脑微血管内皮细胞(CMVEC)的持续影响,从年轻(3个月大)和年老(24个月大)随意喂养和衰老的CR F344xBN大鼠中分离了原代CMVEC。我们发现与年龄相关的细胞和线粒体氧化应激增加,可以通过CR预防。在老年CMVEC中,Nrf2的表达和转录活性均显着降低,而CR可以预防与年龄有关的Nrf2功能障碍。 miR-144的表达在老年CMVECs中上调,而miR-144的过表达显着降低了幼年动物和CR老年大鼠的细胞中Nrf2的表达。在老年CMVEC中过表达miR-144 antagomir会显着降低miR-144的表达并上调Nrf2。我们发现CR可以防止与年龄相关的血管生成过程受损,包括细胞增殖,对胶原蛋白的粘附以及毛细管样结构的形成,并抑制CMVECs的凋亡。 CR还具有显着的抗炎作用,可防止与年龄相关的NF-κB转录活性的增加以及与内皮细胞分泌激素相关的与年龄相关的促炎性转变。 CR诱导的miRNA表达变化的特征表明,它们可能影响内皮细胞稳态中的几个关键功能。在老年CMVECs中,CR相关差异表达的miRNA的预期调节作用与体内观察到的CR的抗衰老内皮作用一致。集体地,我们发现CR赋予持久的抗氧化,促血管生成和抗炎性细胞作用,在大鼠脑微血管内皮细胞中保持年轻的表型,这表明CR通过这些作用可以改善脑血管功能并防止血管性认知功能障碍。

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