Wu Jian Hui, Batist Gerald
McGill University, Canada.
Biochim Biophys Acta. 2013 May;1830(5):3350-3. doi: 10.1016/j.bbagen.2012.11.016. Epub 2012 Nov 28.
Glutathione (GSH) and related enzymes are critical to cell protection from toxins, both endogenous and environmental, including a number of anti-cancer cytotoxic agents.
Enhancing GSH and associated enzymes represents a longtime and persistent aim in the search for cytoprotective strategies against cancer, neurologic degeneration, pulmonary and inflammatory conditions, as well as cardiovascular ailments. The challenge is to identify effective GSH analogues or precursors that generate mimic molecules with glutathione's cellular protective effects. This review will provide an update on these efforts. Much effort has also been directed at depleting cellular GSH and related cytoprotective effects, in order to sensitize established tumors to the cytotoxic effects of anti-cancer agents. Efforts to deplete GSH have been limited by the challenge of selectivity doing so in tumor and not in normal tissue so as to avoid enhancing the toxicity of anti-cancer drugs. This review will also provide an update of efforts at overcoming the challenge of targeting the desired GSH depletion to tumor cells.
This chapter provides a brief background and update of progress in the development and use of GSH analogues in the therapeutic setting, including the pharmacological aspects of these compounds.
This is an area of enormous research activity, and major advances promise the advent of novel therapeutic opportunities in the near future. This article is part of a Special Issue entitled Cellular functions of glutathione.
谷胱甘肽(GSH)及相关酶对于细胞抵御内源性和环境毒素至关重要,这些毒素包括多种抗癌细胞毒性药物。
增强谷胱甘肽及相关酶是寻找针对癌症、神经退行性变、肺部疾病、炎症以及心血管疾病的细胞保护策略的长期且持续的目标。挑战在于识别能产生具有谷胱甘肽细胞保护作用的模拟分子的有效谷胱甘肽类似物或前体。本综述将对这些研究进展进行更新。为使已形成的肿瘤对抗癌药物的细胞毒性作用敏感,也进行了大量针对消耗细胞内谷胱甘肽及相关细胞保护作用的研究。然而,消耗谷胱甘肽的努力受到在肿瘤而非正常组织中选择性进行此操作的挑战所限制,以免增强抗癌药物的毒性。本综述还将更新在克服将所需的谷胱甘肽消耗靶向肿瘤细胞这一挑战方面所做的努力。
本章提供了谷胱甘肽类似物在治疗环境中的开发与应用进展的简要背景及更新内容,包括这些化合物的药理学方面。
这是一个研究活动极为活跃的领域,并有望在不久的将来取得重大进展,带来新的治疗机会。本文是名为“谷胱甘肽的细胞功能”的特刊的一部分。