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Advanced age protects resistance arteries of mouse skeletal muscle from oxidative stress through attenuating apoptosis induced by hydrogen peroxide

机译:通过通过过氧化氢诱导的凋亡来保护小鼠骨骼肌的抗性动脉免受氧化胁迫的抵抗动脉

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Key points Vascular oxidative stress increases with advancing age. We hypothesized that resistance vessels develop resilience to oxidative stress to protect functional integrity and tested this hypothesis by exposing isolated pressurized superior epigastric arteries (SEAs) of old and young mice to H 2 O 2 . H 2 O 2 ‐induced death was greater in smooth muscle cells (SMCs) than endothelial cells (ECs) and lower in SEAs from old vs . young mice; the rise in vessel wall [Ca 2+ ] i induced by H 2 O 2 was attenuated with ageing, as was the decline in noradrenergic vasoconstriction; genetic deletion of IL‐10 mimicked the effects of advanced age on cell survival. Inhibiting NO synthase or scavenging peroxynitrite reduced SMC death; endothelial denudation or inhibiting gap junctions increased SMC death; delocalization of cytochrome C activated caspases 9 and 3 to induce apoptosis. Vascular cells develop resilience to H 2 O 2 during ageing by preventing Ca 2+ overload and endothelial integrity promotes SMC survival. Abstract Advanced age is associated with elevated oxidative stress and can protect the endothelium from cell death induced by H 2 O 2 . Whether such protection occurs for intact vessels or differs between smooth muscle cell (SMC) and endothelial cell (EC) layers is unknown. We tested the hypothesis that ageing protects SMCs and ECs during acute exposure to H 2 O 2 (200?μ m , 50?min). Mouse superior epigastric arteries (SEAs; diameter, ~150?μm) were isolated and pressurized to 100?cmH 2 O at 37?C. For SEAs from young (4?months) mice, H 2 O 2 killed 57% of SMCs and 11% of ECs in males vs . 8% and 2%, respectively, in females. Therefore, SEAs from males were studied to resolve the effect of ageing and experimental interventions. For old (24?months) mice, SMC death was reduced to 10% with diminished accumulation of [Ca 2+ ] i in the vessel wall during H 2 O 2 exposure. In young mice, genetic deletion of IL‐10 mimicked the protective effect of ageing on cell death and [Ca 2+ ] i accumulation. Whereas endothelial denudation or gap junction inhibition (carbenoxolone; 100?μ m ) increased SMC death, inhibiting NO synthase ( l ‐NAME, 100?μ m ) or scavenging peroxynitrite (FeTPPS, 5?μ m ) reduced SMC death along with [Ca 2+ ] i . Despite NO toxicity via peroxynitrite formation, endothelial integrity protects SMCs. Caspase inhibition (Z‐VAD‐FMK, 50?μ m ) attenuated cell death with immunostaining for annexin V, cytochrome C, and caspases 3 and 9 pointing to induction of intrinsic apoptosis during H 2 O 2 exposure. We conclude that advanced age reduces Ca 2+ influx that triggers apoptosis, thereby promoting resilience of the vascular wall during oxidative stress.
机译:关键点血管氧化应激随着年龄增长而增加。我们假设电阻血管产生氧化应激的抵抗能,以保护功能完整性,并通过暴露于旧小鼠的孤立的加压高级上颌动脉(SEAR)至H 2 O 2来测试这种假设。 H 2 O 2-2〜2℃的死亡在平滑肌细胞(SMC)比内皮细胞(ECS)和来自旧与旧的海洋中的较低。年轻的老鼠; H 2 O 2诱导的血管壁[Ca 2+]的升高随着衰老而衰减,因为诺肾上腺素能血管收缩的下降是如此; IL-10的遗传缺失模仿高龄血液对细胞存活的影响。抑制不含合酶或清除过氧尼硝基的SMC死亡;内皮剥落或抑制间隙交叉点增加了SMC死亡;细胞色素C活化的胱天蛋白酶9和3的分层化诱导细胞凋亡。通过预防Ca 2+过载和内皮完整性促进SMC存活期间,血管细胞在老化期间对H 2 O 2产生弹性。摘要晚期高龄与氧化应激升高的血液,可以保护H 2 O 2诱导的细胞死亡中的内皮。无论是否发生这种保护,对于完整的血管或平滑肌细胞(SMC)和内皮细胞(EC)层之间的不同是未知的。我们测试了老化在急性暴露于H 2 O 2(200Ωμm,50Ω)期间保护SMC和EC的假设。小鼠优异的外延动脉(海;直径,〜150μm)被分离并在37μl℃下加压至100μl20。对于来自年轻(4?月)小鼠的海洋,H 2 O 2杀死了57%的SMC和11%的男性ECS vs。在女性中分别为8%和2%。因此,研究了来自雄性的海洋以解决老化和实验干预的影响。对于旧(24?月)小鼠,SMC死亡降低至10%,在H 2 O 2曝光期间,血管壁中的[Ca 2+] I的积聚减少。在年轻的小鼠中,IL-10的遗传缺失模仿了老化对细胞死亡和[Ca 2+]的保护作用。虽然内皮剥落或间隙结抑制(碳氧酮; 100?μm)增加了SMC死亡,抑制了没有合酶(L-碱,100μm)或清除过氧硝酸盐(FETPPS,5?μM)和[CA 2+]我。尽管通过过氧硝酸盐形成没有毒性,但内皮完整性保护SMC。 Caspase抑制(Z-VAD-FMK,50Ωμm)减弱细胞死亡,具有针对膜蛋白V,细胞色素C和Caspases 3和9的免疫染色,指向H 2 O 2暴露期间诱导内在细胞凋亡的诱导。我们得出结论,晚期减少了触发凋亡的Ca 2+流入,从而在氧化应激期间促进血管壁的弹性。

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