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蜂毒及其主要成分蜂毒肽在癌症治疗中的应用。

Application of bee venom and its main constituent melittin for cancer treatment.

作者信息

Liu Cui-Cui, Hao Ding-Jun, Zhang Qian, An Jing, Zhao Jing-Jing, Chen Bo, Zhang Ling-Ling, Yang Hao

机构信息

Translational Medicine Center, Hong-Hui Hospital, Xi'an Jiaotong University College of Medicine, Xi'an, 710054, China.

Spine Surgery, Hong-Hui Hospital, Xi'an Jiaotong University College of Medicine, Xi'an, 710054, China.

出版信息

Cancer Chemother Pharmacol. 2016 Dec;78(6):1113-1130. doi: 10.1007/s00280-016-3160-1. Epub 2016 Sep 27.

Abstract

Bee venom and its main constituent melittin (MEL) have been extensively studied in the treatment of tumors. However, the non-specific cytotoxicity and hemolytic activity have hampered the clinical application. Currently, a number of research groups have reported a series of optimization strategies, including gene therapy, recombinant immunotoxin incorporating MEL or MEL nanoparticles, targeting tumor cells to attenuate the cytotoxicity and improve its antitumor efficiency and therapeutic capabilities, which have shown very promising in overcoming some of these obstacles. In this review, we summarize the current knowledge regarding anticancer effects of bee venom and its main compound MEL on different kinds of tumor cells as well as elucidate their possible anticancer mechanisms. It could be concluded that MEL exerts multiple effects on cellular functions of cancerous cells such as proliferation, apoptosis, metastasis, angiogenesis as well as cell cycle, and the anticancer processes involve diverse signal molecules and regulatory pathways. We also highlight the recent research progress for efficient delivery of MEL peptide, thus providing new ideas and hopeful strategies for the in vivo application of MEL.

摘要

蜂毒及其主要成分蜂毒肽(MEL)在肿瘤治疗方面已得到广泛研究。然而,其非特异性细胞毒性和溶血活性阻碍了临床应用。目前,许多研究团队已报道了一系列优化策略,包括基因治疗、包含MEL的重组免疫毒素或MEL纳米颗粒,将其靶向肿瘤细胞以减弱细胞毒性并提高其抗肿瘤效率和治疗能力,这些策略在克服其中一些障碍方面已显示出非常广阔的前景。在本综述中,我们总结了关于蜂毒及其主要化合物MEL对不同种类肿瘤细胞的抗癌作用的现有知识,并阐明其可能的抗癌机制。可以得出结论,MEL对癌细胞的细胞功能如增殖、凋亡、转移、血管生成以及细胞周期发挥多种作用,且抗癌过程涉及多种信号分子和调控途径。我们还强调了MEL肽高效递送的最新研究进展,从而为MEL的体内应用提供新思路和有希望的策略。

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