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虾青素通过调节 p38 和mek 信号通路抑制 h2o2 介导的小鼠神经祖细胞凋亡性细胞死亡。

Astaxanthin inhibits H2O2-mediated apoptotic cell death in mouse neural progenitor cells via modulation of P38 and MEK signaling pathways.

机构信息

Department of Biomaterial Control,Dong-Eui University, Busan 614-714, Korea.

出版信息

J Microbiol Biotechnol. 2009 Nov;19(11):1355-63. doi: 10.4014/jmb.0906.06003.

Abstract

In the present study, neuroprotective effects of astaxanthin on H2O2-mediated apoptotic cell death using cultured mouse neural progenitor cells (mNPCs) were investigated. To cause apoptotic cell death, mNPCs were pretreated with astaxanthin for 8 h and followed by treatment of 0.3 mM H2O2. Pretreatment of mNPCs with astaxanthin significantly inhibited H2O2-mediated apoptosis and induced cell growth in a dose-dependent manner. In Western blot analysis, astaxanthin-pretreated cells showed the activation of p-Akt, p-MEK, p-ERK, and Bcl-2, and the reduction of p-P38, p-SAPK/JNK, Bax, p-GSK3beta, cytochrome c, caspase-3, and PARP. Because H2O2 triggers caspases activation, this study examined whether astaxanthin can inhibit caspases activation in H2O2-treated mNPCs. After H2O2 treatment, caspases activities were prominently increased but astaxanthin pretreatment significantly inhibited H2O2-mediated caspases activation. Astaxanthin pretreatment also significantly recovered ATP production ability of H2O2-treated cells. These findings indicate that astaxanthin inhibits H2O2-mediated apoptotic features in mNPCs. Inhibition assays with SB203580 (10 microM, a specific inhibitor of p38) and PD98059 (10 microM, a specific inhibitor of MEK) clearly showed that astaxanthin can inhibit H2O2-mediated apoptotic death via modulation of p38 and MEK signaling pathways.

摘要

在本研究中,使用培养的小鼠神经祖细胞 (mNPCs) 研究了虾青素对 H2O2 介导的凋亡细胞死亡的神经保护作用。为了引起凋亡性细胞死亡,将 mNPCs 用虾青素预处理 8 小时,然后用 0.3 mM H2O2 处理。虾青素预处理的 mNPCs 显著抑制 H2O2 介导的细胞凋亡,并呈剂量依赖性诱导细胞生长。在 Western blot 分析中,虾青素预处理的细胞显示 p-Akt、p-MEK、p-ERK 和 Bcl-2 的激活,以及 p-P38、p-SAPK/JNK、Bax、p-GSK3β、细胞色素 c、caspase-3 和 PARP 的减少。由于 H2O2 触发 caspase 激活,本研究检查了虾青素是否可以抑制 H2O2 处理的 mNPCs 中的 caspase 激活。在 H2O2 处理后,caspases 活性明显增加,但虾青素预处理显著抑制了 H2O2 介导的 caspase 激活。虾青素预处理还显著恢复了 H2O2 处理细胞的 ATP 产生能力。这些发现表明虾青素抑制 mNPCs 中 H2O2 介导的凋亡特征。用 SB203580(10 μM,p38 的特异性抑制剂)和 PD98059(10 μM,MEK 的特异性抑制剂)进行抑制测定清楚地表明,虾青素可以通过调节 p38 和 MEK 信号通路来抑制 H2O2 介导的凋亡性死亡。

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