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乌龙茶通过减轻p-JNK介导的肥大、增强P-IGF1R、p-akt和p-Bad活性以及强化NRF2抗氧化系统来预防缺氧引起的心肌细胞损失。

Oolong tea prevents cardiomyocyte loss against hypoxia by attenuating p-JNK mediated hypertrophy and enhancing P-IGF1R, p-akt, and p-Bad activity and by fortifying NRF2 antioxidation system.

作者信息

Shibu Marthandam Asokan, Kuo Chia-Hua, Chen Bih-Cheng, Ju Da-Tong, Chen Ray-Jade, Lai Chao-Hung, Huang Pei-Jane, Viswanadha Vijaya Padma, Kuo Wei-Wen, Huang Chih-Yang

机构信息

Graduate Institute of Basic Medical Science, China Medical University, Taichung, Taiwan.

Department of Sports Sciences, University of Taipei, Taipei, Taiwan.

出版信息

Environ Toxicol. 2018 Feb;33(2):220-233. doi: 10.1002/tox.22510. Epub 2017 Nov 15.

Abstract

Tea, the most widely consumed natural beverage has been associated with reduced mortality risk from cardiovascular disease. Oolong tea is a partially fermented tea containing high levels of catechins, their degree of oxidation varies between 20%-80% causing differences in their active metabolites. In this study we examined the effect of oolong tea extract (OTE) obtained by oxidation at low-temperature for short-time against hypoxic injury and found that oolong tea provides cyto-protective effects by suppressing the JNK mediated hypertrophic effects and by enhancing the innate antioxidant mechanisms in neonatal cardiomyocytes and in H9c2 cells. OTE effectively attenuates 24 h hypoxia-triggered cardiomyocyte loss by suppressing caspase-3-cleavage and apoptosis in a dose-dependent manner. OTE also enhances the IGFIR/p-Akt associated survival-mechanism involving the elevation of p-Bad in a dose-dependent manner to aid cellular adaptations against hypoxic challenge. The results show the effects and mechanism of Oolong tea to provide cardio-protective benefits during hypoxic conditions.

摘要

茶是消费最为广泛的天然饮品,与降低心血管疾病导致的死亡风险相关。乌龙茶是一种半发酵茶,含有高水平的儿茶素,其氧化程度在20%至80%之间变化,导致其活性代谢产物存在差异。在本研究中,我们检测了通过低温短时间氧化获得的乌龙茶提取物(OTE)对缺氧损伤的影响,发现乌龙茶通过抑制JNK介导的肥大效应以及增强新生心肌细胞和H9c2细胞中的固有抗氧化机制来提供细胞保护作用。OTE通过剂量依赖性地抑制caspase-3切割和凋亡,有效减轻24小时缺氧引发的心肌细胞损失。OTE还以剂量依赖性方式增强涉及p-Bad升高的IGFIR/p-Akt相关存活机制,以帮助细胞适应缺氧挑战。结果显示了乌龙茶在缺氧条件下提供心脏保护益处的作用和机制。

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