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首页> 外文期刊>Biochemical Pharmacology >Salvianolic acid B protects human endothelial progenitor cells against oxidative stress-mediated dysfunction by modulating Akt/mTOR/4EBP1, p38 MAPK/ATF2, and ERK1/2 signaling pathways
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Salvianolic acid B protects human endothelial progenitor cells against oxidative stress-mediated dysfunction by modulating Akt/mTOR/4EBP1, p38 MAPK/ATF2, and ERK1/2 signaling pathways

机译:丹酚酸B通过调节Akt / mTOR / 4EBP1,p38 MAPK / ATF2和ERK1 / 2信号通路来保护人类内皮祖细胞免受氧化应激介导的功能障碍

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The vascular endothelium is specifically sensitive to oxidative stress, and this is one of the mechanisms that causes widespread endothelial dysfunction in most cardiovascular diseases and disorders. Protection against reactive oxygen species (ROS)-mediated oxidative damage via antioxidant mechanisms is essential for tissue maintenance and shows therapeutic potential for patients suffering from cardiovascular and metabolic disorders. Salvianolic acid B (SalB), a natural bioactive component known from Traditional Chinese Medicine, has been reported to exert cellular protection in various types of cells. However, the underlying mechanisms involved are not fully understood. Here, we showed that SalB significantly promoted the migratory and tube formation abilities of human bone marrow derived-endothelial progenitor cells (BM-EPCs) in vitro, and substantially abrogated hydrogen peroxide (H2O2)-induced cell damage. SalB down-regulated Nox4 and eNOS, as well as nicotinamide adenine dinucleotide phosphate (NADPH)-oxidase expression upon H2O 2 induction that in turn prevents oxidative-induced endothelial dysfunction. Moreover, SalB suppressed the Bax/Bcl-xL ratio and caspase-3 activation after H2O2 induction. Furthermore, our results provide mechanistic evidence that activation of the mTOR/p70S6K/4EBP1 pathways is required for both SalB-mediated angiogenic and protective effects against oxidative stress-induced cell injury in BM-EPCs. Suppression of MKK3/6-p38 MAPK-ATF2 and ERK1/2 signaling pathways by SalB significantly protected BM-EPCs against cell injury caused by oxidative stress via reduction of intracellular ROS levels and apoptosis. Taken together, by providing a mechanistic insight into the modulation of redox states in BM-EPCs by SalB, we suggest that SalB has a strong potential of being a new proangiogenic and cytoprotective therapeutic agent with applications in the field of endothelial injury-mediated vascular diseases.
机译:血管内皮对氧化应激特别敏感,这是在大多数心血管疾病和病症中引起广泛的内皮功能障碍的机制之一。通过抗氧化剂机制保护免受活性氧(ROS)介导的氧化损伤对于组织维持至关重要,并且对患有心血管和代谢疾病的患者具有治疗潜力。丹酚酸B(SalB)是一种从传统中药中获知的天然生物活性成分,据报道可在多种类型的细胞中发挥细胞保护作用。但是,所涉及的潜在机制尚未完全了解。在这里,我们表明SalB显着提高了人骨髓来源的内皮祖细胞(BM-EPCs)的迁移能力和管形成能力,并且基本上消除了过氧化氢(H2O2)诱导的细胞损伤。 SalB在H2O 2诱导时下调了Nox4和eNOS以及烟酰胺腺嘌呤二核苷酸磷酸(NADPH)-氧化酶的表达,从而防止了氧化诱导的内皮功能障碍。此外,SalB抑制了H2O2诱导后的Bax / Bcl-xL比和caspase-3活化。此外,我们的研究结果提供了机制证据,表明SalB介导的BM-EPC中SalB介导的血管生成和抗氧化应激诱导的细胞损伤的保护作用均需要激活mTOR / p70S6K / 4EBP1途径。 SalB抑制MKK3 / 6-p38 MAPK-ATF2和ERK1 / 2信号通路可通过减少细胞内ROS水平和凋亡来显着保护BM-EPC免受氧化应激引起的细胞损伤。综上所述,通过提供对SalB调节BM-EPC中氧化还原状态的机理的机械性见解,我们建议SalB具有强大的潜力,可作为一种新的促血管生成和细胞保护性治疗剂,并在内皮损伤介导的血管疾病领域中得到应用。

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