首页> 美国卫生研究院文献>BioMed Research International >Human Mesenchymal Stem Cells Provide Protection against Radiation-Induced Liver Injury by Antioxidative Process, Vasculature Protection, Hepatocyte Differentiation, and Trophic Effects
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Human Mesenchymal Stem Cells Provide Protection against Radiation-Induced Liver Injury by Antioxidative Process, Vasculature Protection, Hepatocyte Differentiation, and Trophic Effects

机译:人间充质干细胞通过抗氧化过程,血管保护作用,肝细胞分化和营养作用,提供针对辐射诱发的肝损伤的保护作用

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摘要

To evaluate the potential therapeutic effect of the infusion of hMSCs for the correction of liver injuries, we performed total body radiation exposure of NOD/SCID mice. After irradiation, mir-27b level decreases in liver, increasing the directional migration of hMSCs by upregulating SDF1α. A significant increase in plasmatic transaminases levels, apoptosis process in the liver vascular system, and in oxidative stress were observed. hMSC injection induced a decrease in transaminases levels and oxidative stress, a disappearance of apoptotic cells, and an increase in Nrf2, SOD gene expression, which might reduce ROS production in the injured liver. Engrafted hMSCs expressed cytokeratin CK18 and CK19 and AFP genes indicating possible hepatocyte differentiation. The presence of hMSCs expressing VEGF and Ang-1 in the perivascular region, associated with an increased expression of VEGFr1, r2 in the liver, can confer a role of secreting cells to hMSCs in order to maintain the endothelial function. To explain the benefits to the liver of hMSC engraftment, we find that hMSCs secreted NGF, HGF, and anti-inflammatory molecules IL-10, IL1-RA contributing to prevention of apoptosis, increasing cell proliferation in the liver which might correct liver dysfunction. MSCs are potent candidates to repair and protect healthy tissues against radiation damages.
机译:为了评估输注hMSC纠正肝损伤的潜在治疗效果,我们对NOD / SCID小鼠进行了全身放射线照射。照射后,肝脏中的mir-27b水平降低,通过上调SDF1α来增加hMSC的定向迁移。观察到血浆转氨酶水平,肝血管系统凋亡过程和氧化应激显着增加。 hMSC注射诱导转氨酶水平和氧化应激的降低,凋亡细胞的消失,以及Nrf2,SOD基因表达的增加,这可能会减少受伤肝脏中的ROS产生。移植的hMSC表达细胞角蛋白CK18和CK19以及AFP基因,表明可能分化为肝细胞。在血管周区域表达VEGF和Ang-1的hMSC的存在与肝脏中VEGFr1,r2表达的增加有关,可以赋予hMSC分泌细胞的功能,以维持内皮功能。为了解释hMSC植入对肝脏的益处,我们发现hMSC分泌NGF,HGF和抗炎分子IL-10,IL1-RA有助于预防细胞凋亡,增加肝脏中的细胞增殖,这可能会纠正肝功能障碍。 MSC是修复和保护健康组织免受辐射损害的有效候选者。

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