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首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >MnSOD Overexpression Reduces Fibrosis and Pro-Apoptotic Signaling in the Aging Mouse Heart
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MnSOD Overexpression Reduces Fibrosis and Pro-Apoptotic Signaling in the Aging Mouse Heart

机译:MnSOD的过表达减少衰老小鼠心脏中的纤维化和促凋亡信号

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Contractility of the heart is impaired with advancing age via mechanical remodeling, as myocytes are lost through apoptosis and collagenous fibers accumulate. Exercise training confers protection against fibrosis and apoptosis in the aging heart, but the mechanisms remain poorly understood. We recently reported that exercise training elevates Mn isoform of superoxide dismutase (MnSOD) in the aging heart, concomitant with reduction in oxidative stress and fibrosis. Here, we tested the hypothesis that overexpression of MnSOD would be causal in protection against fibrosis and apoptosis in the aging heart. Hearts were extracted from young (8 months) wild-type, young mice overexpressing the Sod2 (MnSOD) gene, old (28 months) wild-type, and old transgenic mice. Left ventricle MnSOD protein levels were elevated in young mice overexpressing the Sod2 (MnSOD) gene and old transgenic mice. MnSODTg mice exhibited lower oxidative stress (total hydroperoxides, 4-hydroxynonenal, and 8-isoprostane) in the old group. Age-related cardiac remodeling and fibrosis was mitigated in MnSOD Tg mice with reductions in extramyocyte space (-65%), collagen-I, and transforming growth factor-beta. Pro-apoptotic markers Bax (-38%) and caspase-3 cleavage (-41%) were reduced and apoptosis (terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling-positive nuclei, DNA laddering) was mitigated in MnSOD Tg hearts compared with old wild-type. We conclude that MnSOD elevation is indeed protective against oxidative stress, fibrosis, and apoptosis in the aging heart.
机译:随着年龄的增长,机械收缩会损害心脏的收缩力,因为心肌细胞会通过凋亡而丢失,胶原纤维会积聚。运动训练可以防止心脏衰老,防止纤维化和细胞凋亡,但其机制尚不清楚。我们最近报告说,运动训练可提高衰老心脏中超氧化物歧化酶(MnSOD)的Mn亚型,同时降低氧化应激和纤维化。在这里,我们测试了这样的假设,即MnSOD的过表达将有助于防止衰老心脏中的纤维化和细胞凋亡。从年轻(8个月)野生型,过表达Sod2(MnSOD)基因的年轻小鼠,老(28个月)野生型和老转基因小鼠中提取心脏。在过度表达Sod2(MnSOD)基因的年轻小鼠和老转基因小鼠中,左心室MnSOD蛋白水平升高。 MnSODTg小鼠在旧组中表现出较低的氧化应激(总氢过氧化物,4-羟基壬烯醛和8-异前列腺素)。在MnSOD Tg小鼠中,与年龄相关的心脏重塑和纤维化得到缓解,肌外细胞空间减少(-65%),胶原蛋白I和转化生长因子β减少。与MnSOD Tg心脏相比,促凋亡标记Bax(-38%)和caspase-3裂解(-41%)减少,凋亡(末端脱氧核苷酸转移酶介导的dUTP缺口末端标记阳性核,DNA梯形)减轻。老野生型。我们得出结论,MnSOD的升高确实可以抵抗衰老心脏中的氧化应激,纤维化和细胞凋亡。

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