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首页> 外文期刊>Cell Biology and Toxicology >The mechanistic role of oxidative stress in cigarette smoke-induced cardiac stem cell dysfunction and prevention by ascorbic acid
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The mechanistic role of oxidative stress in cigarette smoke-induced cardiac stem cell dysfunction and prevention by ascorbic acid

机译:烟雾诱导心脏干细胞功能障碍和抗坏血酸预防的氧化胁迫的机械作用

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Cigarette smoking causes a vast array of diseases including cardiovascular diseases. Our laboratory focuses on investigating cigarette smoke (CS)-induced cardiovascular malfunction and the responsible mechanisms utilizing the model, c-kit-positive cardiac stem cells (CSCs). The main objective of our study is to investigate whether CS extracts (CSEs) cause impairment of CSC functions via oxidative damage. We hypothesized that CSE, via oxidative modifications of CSC proteins and antioxidant enzymes, can modulate CSC functions and these modifications can be attenuated by ascorbate treatment. Our specific aims are (1) to investigate CSE-induced oxidative modification of CSC proteins via carbonylation, and prevention by ascorbic acid; (2) to investigate CSE-induced oxidative modification of antioxidant enzymes and ascorbic acid-mediated modulations; and (3) to investigate CSE-induced changes in CSC functions and protection by ascorbic acid. CSCs were cultured, and the aqueous extracts of CSE were prepared. CSE-induced modulations of CSC viability, oxidative modification of proteins, and antioxidant enzyme activities were detected using standard assays including Apostain, bromodeoxyuridine, and Oxiblot. CSE caused oxidative modification of CSC proteins, changed antioxidant enzyme levels, attenuated CSC proliferation, and accelerated CSC apoptosis. Ascorbic acid prevented CSE-induced CSC malfunctions, and ascorbic acid therapy might be useful in smoker CSC recipients and to condition CSCs prior to the transplant in the future. Cardiac stem cell therapy is currently undergoing in clinical trials.
机译:吸烟导致大量疾病,包括心血管疾病。我们的实验室专注于调整卷烟烟雾(CS)诱导的心血管发生故障以及利用模型,C-Kit阳性心脏干细胞(CSC)的负责机制。我们研究的主要目的是调查CS提取物(CSES)是否导致CSC功能损害通过氧化损害。我们假设CSE,通过CSC蛋白和抗氧化酶的氧化修饰,可以调节CSC功能,并且这些修饰可以通过抗坏血酸处理来衰减。我们的具体目标是(1)通过羰基化研究CSE诱导的CSC蛋白氧化改性,并通过抗坏血酸预防; (2)研究CSE诱导的抗氧化酶和抗坏血酸介导的调节的氧化改性; (3)调查CSE诱导的CSC功能变化和抗坏血酸保护。培养CSCs,制备CSE的水性提取物。 CSE诱导的CSC活力调节,使用载体,溴酰基亚氨啶和氧化蛋白的标准测定检测蛋白质的CSC活力,氧化改性和抗氧化酶活性。 CSE引起CSC蛋白的氧化改性,改变抗氧化酶水平,减毒CSC增殖,加速CSC凋亡。抗坏血酸预防CSE诱导的CSC故障,抗坏血酸治疗可能在吸烟者CSC受者中有用,并在未来移植之前调节CSC。目前在临床试验中正在进行心脏干细胞疗法。

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