首页> 外文期刊>American Journal of Physiology >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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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:热量限制赋予持续的抗氧化,促血管生成和抗炎作用,并促进老年大鼠脑血管内皮细胞中的抗衰老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 micro vascular density and en-dothelium-dependent vasodilation, but the underlying cellular mechanisms remain elusive. To elucidate the persisting effects of CR on cerebromicrovascular endothelial cells (CMVECs), primary CM-VECs 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 upregu-lates 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-kappaB 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 cerebrqvascular function and prevent vascular cognitive impairment.
机译:在啮齿动物中,中等热量限制(CR)没有营养不良施加显着的脑血管保护作用,改善皮质微血管密度和血管依赖性血管舒张,但潜在的细胞机制仍然难以捉摸。为了阐明Cr对脑血管内皮细胞(CMVEC)的持续作用,原发性cm-Vecs与年轻(3莫旧)和年龄(24莫旧)AD Libitum喂养和老化的Cr F344xbn大鼠分离。我们发现细胞和线粒体氧化应激的年龄相关的增加,由Cr预防。 NRF2的表达和转录活性在老化的CMVEC中均显着降低,而Cr均可阻止与年龄相关的NRF2功能障碍。 MiR-144的表达在老年的CMVEC中上调,MIR-144的过表达明显降低了NRF2在源自幼小动物和老年CR大鼠的细胞中的表达。在老化CMVEC中的MiR-144抗噬杆的过表达显着降低miR-144和Upregu-Lates NRF2的表达。我们发现CR可防止与血管生成过程的年龄有关的损伤,包括细胞增殖,对胶原蛋白的粘附性,以及形成毛细管样结构并抑制CMVEC中的凋亡。 CR还发挥了显着的抗炎作用,预防NF-Kappab的转录活性和内皮秘密中的年龄相关的促炎变化的年龄相关增加。 MiRNA表达的Cr诱导变化的表征表明它们可能影响内皮细胞稳态中的几个关键功能。 CR相关的差异表达miRNA在老年CMVEC中的预测调节效果与体内观察到的Cr的抗衰老内皮效应一致。总的来说,我们发现CR促进持续存在抗氧化,促血管生成和抗炎细胞作用,在大鼠脑血管内皮细胞中保持青春表型,表明通过这些影响CR可以改善脑内功能并预防血管认知障碍。

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