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首页> 外文期刊>Aging Cell >Short-term calorie restriction reverses vascular endothelial dysfunction in old mice by increasing nitric oxide and reducing oxidative stress
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Short-term calorie restriction reverses vascular endothelial dysfunction in old mice by increasing nitric oxide and reducing oxidative stress

机译:短期卡路里限制通过增加一氧化氮和减少氧化应激来逆转老龄小鼠的血管内皮功能障碍

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摘要

SummaryTo determine if short-term calorie restriction reverses vascular endothelial dysfunction in old mice, old (O, n = 30) and young (Y, n = 10) male B6D2F1 mice were fed ad libitum (AL) or calorie restricted (CR, approximately 30%) for 8 weeks. Ex vivo carotid artery endothelium-dependent dilation (EDD) was impaired in old ad libitum (OAL) vs. young ad libitum (YAL) (74 ± 5 vs. 95 ± 2% of maximum dilation, P < 0.05), whereas old calorie-restricted (OCR) and YCR did not differ (96 ± 1 vs. 94 ± 3%). Impaired EDD in OAL was mediated by reduced nitric oxide (NO) bioavailability associated with decreased endothelial NO synthase expression (aorta) (P < 0.05), both of which were restored in OCR. Nitrotyrosine, a cellular marker of oxidant modification, was markedly elevated in OAL (P < 0.05), whereas OCR was similar to Y. Aortic superoxide production was 150% greater in OAL vs. YAL (P < 0.05), but normalized in OCR, and TEMPOL, a superoxide dismutase (SOD) mimetic that restored EDD in OAL (to 97 ± 2%), had no effect in Y or OCR. OAL had increased expression and activity of the oxidant enzyme, NADPH oxidase, and its inhibition (apocynin) improved EDD, whereas NADPH oxidase in OCR was similar to Y. Manganese SOD activity and sirtuin1 expression were reduced in OAL (P < 0.05), but restored to Y in OCR. Inflammatory cytokines were greater in OAL vs. YAL (P < 0.05), but unaffected by CR. Carotid artery endothelium-independent dilation did not differ among groups. Short-term CR initiated in old age reverses age-associated vascular endothelial dysfunction by restoring NO bioavailability, reducing oxidative stress (via reduced NADPH oxidase–mediated superoxide production and stimulation of anti-oxidant enzyme activity), and upregulation of sirtuin-1.
机译:摘要为了确定短期卡路里限制是否能逆转成年小鼠(O,n = 30)和年轻(Y,n = 10)的老年小鼠的雄性B6D2F1小鼠自由饲喂(AL)或卡路里受限(CR,大约30%),持续8周。老年人自由采血(OAL)与年轻人自由采血(YAL)的离体颈动脉内皮依赖性舒张功能(EDD)受损(最大舒张度的74±5 vs. 95±2%,P <0.05),而旧卡路里限制(OCR)和YCR没有差异(96±1对94±3%)。 OAL的EDD受损是由一氧化氮(NO)生物利用度降低与内皮型一氧化氮合酶表达(aorta)降低相关的(P <0.05)介导的,两者均在OCR中得以恢复。硝基酪氨酸,一种氧化剂修饰的细胞标志物,在OAL中显着升高(P <0.05),而OCR与Y相似。在OAL中,主动脉超氧化物生成量比YAL高150%(P <0.05),但在OCR中归一化, TEMPOL是一种超氧化物歧化酶(SOD)模拟物,可将OAL中的EDD恢复至97±2%,而对Y或OCR没有影响。 OAL增加了氧化酶,NADPH氧化酶的表达和活性,其抑制作用(apocynin)改善了EDD,而OCR中的NADPH氧化酶与Y相似。OAL中的锰SOD活性和sirtuin1表达降低(P <0.05),但在OCR中恢复为Y。 OAL的炎症细胞因子比YAL更大(P <0.05),但不受CR影响。各组之间的颈动脉内皮依赖性扩张无差异。通过恢复NO的生物利用度,减少氧化应激(通过减少NADPH氧化酶介导的超氧化物生成和刺激抗氧化酶的活性)以及上调sirtuin-1的水平,在老年期开始的短期CR可逆转与年龄相关的血管内皮功能障碍。

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