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双苯乙烯苷和多酚60对过氧化氢处理的C2C12细胞中蛋白水解途径、炎性细胞因子和成肌标志物的影响。

Effects of Sunphenon and Polyphenon 60 on proteolytic pathways, inflammatory cytokines and myogenic markers in H2O2-treated C2C12 cells.

作者信息

Sivakumar Allur Subramaniyan, Hwang Inho

机构信息

Department of Animal Science and BK21 PLUS program, Chonbuk National University, Jeonju 561-756, South Korea.

出版信息

J Biosci. 2015 Mar;40(1):53-9. doi: 10.1007/s12038-015-9503-y.

Abstract

The effect of Sunphenon and Polyphenon 60 in oxidative stress response, myogenic regulatory factors, inflammatory cytokines, apoptotic and proteolytic pathways on H2O2-induced myotube atrophy was addressed. Cellular responses of H2O2-induced C2C12 cells were examined, including mRNA expression of myogenic regulatory factors, such as MyoD and myogenin, inflammatory pathways, such as TNF-α and NF-kB, as well as proteolytic enzymes, such as μ-calpain and m-calpain. The pre-treatment of Sunphenon (50 μg/mL)/Polyphenon 60 (50 μg/mL) on H2O2-treated C2C12 cells significantly down-regulated the mRNA expression of myogenin and MyoD when compared to those treated with H2O2-induced alone. Additionally, the mRNA expression of μ-calpain and m-calpain were significantly(p<0.05) increased in H2O2-treated C2C12 cells, whereas pre-treatment with Sunphenon/Polyphenon significantly down-regulated the above genes, namely μ-calpain and m-calpain. Furthermore, the mRNA expression of TNF-α and NF-kB were significantly increased in H2O2-treated C2C12 cells, while pre-treatment with Sunphenon (50 μg/mL)/Polyphenon 60 (50 μg/mL) significantly (p<0.05) down-regulated it when compared to the untreated control group.Subsequent analysis of DNA degeneration and caspase activation revealed that Sunphenon (50 μg/mL)/Polyphenon 60 (50 μg/mL) inhibited activation of caspase-3 and showed an inhibitory effect on DNA degradation. From this result, we know that, in stress conditions, μ-calpain may be involved in the muscle atrophy through the suppression of myogenin and MyoD. Moreover, Sunphenon may regulate the skeletal muscle genes/promote skeletal muscle recovery by the up-regulation of myogenin and MyoD and suppression of μ-calpain and inflammatory pathways and may regulate the apoptosis pathways. Our findings suggest that dietary supplementation of Sunphenon might reduce inflammatory events in muscle-associated diseases, such as myotube atrophy.

摘要

研究了孙氏多酚和多酚60对H2O2诱导的肌管萎缩在氧化应激反应、生肌调节因子、炎性细胞因子、凋亡和蛋白水解途径方面的影响。检测了H2O2诱导的C2C12细胞的细胞反应,包括生肌调节因子如MyoD和肌细胞生成素的mRNA表达、炎性途径如TNF-α和NF-κB以及蛋白水解酶如μ-钙蛋白酶和m-钙蛋白酶。与单独用H2O2处理的细胞相比,用孙氏多酚(50μg/mL)/多酚60(50μg/mL)预处理H2O2处理的C2C12细胞可显著下调肌细胞生成素和MyoD的mRNA表达。此外,H2O2处理的C2C12细胞中μ-钙蛋白酶和m-钙蛋白酶的mRNA表达显著(p<0.05)增加,而用孙氏多酚/多酚60预处理可显著下调上述基因,即μ-钙蛋白酶和m-钙蛋白酶。此外,H2O2处理的C2C12细胞中TNF-α和NF-κB的mRNA表达显著增加,而与未处理的对照组相比,用孙氏多酚(50μg/mL)/多酚60(50μg/mL)预处理可显著(p<0.05)下调其表达。随后对DNA变性和半胱天冬酶激活的分析表明,孙氏多酚(50μg/mL)/多酚60(50μg/mL)抑制了半胱天冬酶-3的激活,并对DNA降解显示出抑制作用。从该结果可知,在应激条件下,μ-钙蛋白酶可能通过抑制肌细胞生成素和MyoD参与肌肉萎缩。此外,孙氏多酚可能通过上调肌细胞生成素和MyoD以及抑制μ-钙蛋白酶和炎性途径来调节骨骼肌基因/促进骨骼肌恢复,并可能调节凋亡途径。我们的研究结果表明,饮食中补充孙氏多酚可能会减少肌肉相关疾病如肌管萎缩中的炎性事件。

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