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纳米姜黄素通过改善氧化平衡保护心肌母细胞H9c2免受缺氧诱导的肥大和凋亡。

Nanocurcumin protects cardiomyoblasts H9c2 from hypoxia-induced hypertrophy and apoptosis by improving oxidative balance.

作者信息

Nehra Sarita, Bhardwaj Varun, Kalra Namita, Ganju Lilly, Bansal Anju, Saxena Shweta, Saraswat Deepika

机构信息

Experimental Biology Division, Department of Experimental Biology, Defence Institute of Physiology and Allied Science, Defence Research and Development Organization, Lucknow Road, Timarpur, New Delhi, India.

出版信息

J Physiol Biochem. 2015 Jun;71(2):239-51. doi: 10.1007/s13105-015-0405-0. Epub 2015 Apr 7.

Abstract

Hypoxia-induced cardiomyocyte hypertrophy is evident; however, the distinct molecular mechanism underlying the oxidative stress-mediated damages to cardiomyocytes remains unknown. Curcumin (diferuloylmethane) is known for anti-hypertrophic effects, but low bioavailability makes it unsuitable to exploit its pharmacological properties. We assessed the efficacy of nanotized curcumin, i.e. nanocurcumin, in ameliorating hypoxia-induced hypertrophy and apoptosis in H9c2 cardiomyoblasts and compared it to curcumin. H9c2 cardiomyoblasts were challenged with 0.5 % oxygen, for 24 h to assess hypoxia-induced oxidative damage, hypertrophy and consequent apoptosis. The molecular mechanism underlying the protective efficacy of nanocurcumin was evaluated in regulating Raf-1/Erk-1/2 apoptosis by caspase-3/-7 pathway and oxidative stress. Nanocurcumin ameliorated hypoxia-induced hypertrophy and apoptosis in H9c2 cells significantly (p ≤ 0.01), by downregulating atrial natriuretic factor expression, caspase-3/-7 activation, oxidative stress and stabilizing hypoxia-inducible factor-1α (HIF-1α) better than curcumin. Nanocurcumin provides insight into its use as a potential candidate in curing hypoxia-induced cardiac pathologies by restoring oxidative balance.

摘要

缺氧诱导的心肌细胞肥大很明显;然而,氧化应激介导的心肌细胞损伤的独特分子机制仍然未知。姜黄素(二阿魏酰甲烷)以其抗肥大作用而闻名,但低生物利用度使其不适于发挥其药理特性。我们评估了纳米姜黄素(即纳米化姜黄素)改善H9c2心肌母细胞缺氧诱导的肥大和凋亡的效果,并将其与姜黄素进行比较。用0.5%氧气处理H9c2心肌母细胞24小时,以评估缺氧诱导的氧化损伤、肥大及随之而来的凋亡。通过caspase-3/-7途径和氧化应激调节Raf-1/Erk-1/2凋亡,评估纳米姜黄素保护作用的分子机制。纳米姜黄素通过下调心钠素表达、caspase-3/-7激活、氧化应激并比姜黄素更好地稳定缺氧诱导因子-1α(HIF-1α),显著改善了H9c2细胞中缺氧诱导的肥大和凋亡(p≤0.01)。纳米姜黄素通过恢复氧化平衡,为其作为治疗缺氧诱导的心脏疾病的潜在候选药物提供了依据。

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