Hydroxychavicol, a Piper betle leaf component, induces apoptosis of CML cells through mitochondrial reactive oxygen species-dependent JNK and endothelial nitric oxide synthase activation and overrides imatinib resistance

羟基胡椒酚是荜茇叶中的一种成分,它通过激活线粒体活性氧依赖性 JNK 和内皮型一氧化氮合酶来诱导 CML 细胞凋亡,并消除伊马替尼耐药性

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作者:Jayashree B Chakraborty, Sanjit K Mahato, Kalpana Joshi, Vaibhav Shinde, Srabanti Rakshit, Nabendu Biswas, Indrani Choudhury Mukherjee, Labanya Mandal, Dipyaman Ganguly, Avik A Chowdhury, Jaydeep Chaudhuri, Kausik Paul, Bikas C Pal, Jayaraman Vinayagam, Churala Pal, Anirban Manna, Parasuraman Jaisan

Abstract

Alcoholic extract of Piper betle (Piper betle L.) leaves was recently found to induce apoptosis of CML cells expressing wild type and mutated Bcr-Abl with imatinib resistance phenotype. Hydroxy-chavicol (HCH), a constituent of the alcoholic extract of Piper betle leaves, was evaluated for anti-CML activity. Here, we report that HCH and its analogues induce killing of primary cells in CML patients and leukemic cell lines expressing wild type and mutated Bcr-Abl, including the T315I mutation, with minimal toxicity to normal human peripheral blood mononuclear cells. HCH causes early but transient increase of mitochondria-derived reactive oxygen species. Reactive oxygen species-dependent persistent activation of JNK leads to an increase in endothelial nitric oxide synthase-mediated nitric oxide generation. This causes loss of mitochondrial membrane potential, release of cytochrome c from mitochondria, cleavage of caspase 9, 3 and poly-adenosine diphosphate-ribose polymerase leading to apoptosis. One HCH analogue was also effective in vivo in SCID mice against grafts expressing the T315I mutation, although to a lesser extent than grafts expressing wild type Bcr-Abl, without showing significant bodyweight loss. Our data describe the role of JNK-dependent endothelial nitric oxide synthase-mediated nitric oxide for anti-CML activity of HCH and this molecule merits further testing in pre-clinical and clinical settings.

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