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Curcumin-induced heme oxygenase-1 expression prevents H2O2-induced cell death in wild type and heme oxygenase-2 knockout adipose-derived mesenchymal stem cells

机译:姜黄素诱导的血红素加氧酶-1表达可防止H2O2诱导的野生型细胞死亡和血红素加氧酶2敲除脂肪来源的间充质干细胞

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摘要

Mesenchymal stem cell (MSC) administration is a promising adjuvant therapy to treat tissue injury. However, MSC survival after administration is often hampered by oxidative stress at the site of injury. Heme oxygenase (HO) generates the cytoprotective effector molecules biliverdin/bilirubin, carbon monoxide (CO) and iron/ferritin by breaking down heme. Since HO-activity mediates anti-apoptotic, anti-inflammatory, and anti-oxidative effects, we hypothesized that modulation of the HO-system affects MSC survival. Adipose-derived MSCs (ASCs) from wild type (WT) and HO-2 knockout (KO) mice were isolated and characterized with respect to ASC marker expression. In order to analyze potential modulatory effects of the HO-system on ASC survival, WT and HO-2 KO ASCs were pre-treated with HO-activity modulators, or downstream effector molecules biliverdin, bilirubin, and CO before co-exposure of ASCs to a toxic dose of H2O2. Surprisingly, sensitivity to H2O2-mediated cell death was similar in WT and HO-2 KO ASCs. However, pre-induction of HO-1 expression using curcumin increased ASC survival after H2O2 exposure in both WT and HO-2 KO ASCs. Simultaneous inhibition of HO-activity resulted in loss of curcumin-mediated protection. Co-treatment with glutathione precursor N-Acetylcysteine promoted ASC survival. However, co-incubation with HO-effector molecules bilirubin and biliverdin did not rescue from H2O2-mediated cell death, whereas co-exposure to CO-releasing molecules-2 (CORM-2) significantly increased cell survival, independently from HO-2 expression. Summarizing, our results show that curcumin protects via an HO-1 dependent mechanism against H2O2-mediated apoptosis, and likely through the generation of CO. HO-1 pre-induction or administration of CORMs may thus form an attractive strategy to improve MSC therapy.
机译:间充质干细胞(MSC)管理是一种有希望的辅助疗法,用于治疗组织损伤。但是,给药后的MSC存活常常受到损伤部位的氧化应激的阻碍。血红素加氧酶(HO)通过分解血红素产生细胞保护效应分子biliverdin / bilirubin,一氧化碳(CO)和铁/铁蛋白。由于HO活性介导抗凋亡,抗炎和抗氧化作用,我们假设HO系统的调节会影响MSC的生存。分离了来自野生型(WT)和HO-2敲除(KO)小鼠的脂肪来源的MSC(ASC),并就ASC标志物的表达进行了表征。为了分析HO系统对ASC存活的潜在调节作用,在将ASC共同暴露于ASC之前,先用HO活性调节剂或下游效应分子biliverdin,胆红素和CO预处理WT和HO-2 KO ASC。有毒的H2O2。令人惊讶的是,WT和HO-2 KO ASC对H2O2介导的细胞死亡的敏感性相似。但是,使用姜黄素预先诱导HO-1表达可增加WT和HO-2 KO ASC中H2O2暴露后的ASC存活率。 HO活性的同时抑制导致姜黄素介导的保护作用的丧失。与谷胱甘肽前体N-乙酰半胱氨酸的共同治疗促进了ASC的存活。但是,与HO效应分子胆红素和胆绿素的共孵育不能从H2O2介导的细胞死亡中拯救出来,而与CO释放分子2(CORM-2)共同暴露显着增加了细胞存活,而与HO-2表达无关。总而言之,我们的结果表明姜黄素通过HO-1依赖性机制防止H2O2介导的细胞凋亡,并可能通过产生CO来进行保护。HO-1的预诱导或CORMs的给药可能因此成为改善MSC治疗的诱人策略。

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