Activation of cellular signalling pathways and apoptosis by the aldehyde acrolein – A major environmental hazard

Diana A. Averill-Bates, André Tanel
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Abstract

Interest in the molecular actions of acrolein has increased in light of growing knowledge that implicates this reactive aldehyde in a wide range of pathophysiologies including neurodegenerative diseases, various lung disorders including chronic obstructive pulmonary disease, atherosclerosis, and certain cancers. This is rendered complex because acrolein exists in mixtures of environmental pollutants. Reactive α,β-unsaturated aldehydes like acrolein are major components of common environmental pollutants like cigarettes, automobile exhaust, and smoke from wood, coal, forest and house fires. It is a natural constituent of several foods and is generated in the human body during inflammation or oxidation of unsaturated lipids. Acrolein is also a toxic metabolic product of the widely used anticancer drug cyclophosphamide and is generated from the enzymatic oxidation of polyamines. It is a toxic by-product of lipid peroxidation and has been implicated as a mediator of oxidative damage in cells and tissues. The purpose of this review is to assess the literature about the activation of cell signalling pathways and transcription factors, and cell survival and cell death pathways by acrolein. Several reports show that anti-apoptosis processes dominate at lower dose exposures to acrolein, whereas pro-apoptotic processes and necrosis dominate at higher dose exposures. There has been improved understanding about the deleterious molecular and cellular mechanisms that are triggered in cells in response to acrolein injury. However, more progress is required to define the contributions of acrolein to human diseases and to design efficient therapeutic strategies based on the biochemical modulation of acrolein activity.

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醛类丙烯醛激活细胞信号通路和细胞凋亡--对环境的一大危害
越来越多的知识表明,丙烯醛与神经退行性疾病、各种肺部疾病(包括慢性阻塞性肺病)、动脉粥样硬化和某些癌症等多种病理生理现象有关,因此,人们对丙烯醛分子作用的兴趣与日俱增。由于丙烯醛存在于环境污染物的混合物中,因此情况变得更加复杂。像丙烯醛这样的反应性 α、β-不饱和醛类是香烟、汽车尾气以及木材、煤炭、森林和房屋火灾产生的烟雾等常见环境污染物的主要成分。它是几种食物的天然成分,在炎症或不饱和脂质氧化过程中会在人体内产生。丙烯醛也是广泛使用的抗癌药物环磷酰胺的一种有毒代谢产物,由多胺的酶促氧化生成。它是脂质过氧化反应的一种有毒副产品,被认为是细胞和组织氧化损伤的介质。本综述旨在评估有关丙烯醛激活细胞信号通路和转录因子以及细胞存活和细胞死亡通路的文献。一些报告显示,在接触较低剂量的丙烯醛时,抗细胞凋亡过程占主导地位,而在接触较高剂量的丙烯醛时,促细胞凋亡过程和细胞坏死占主导地位。人们对细胞在受到丙烯醛伤害时引发的有害分子和细胞机制有了更深入的了解。然而,要确定丙烯醛对人类疾病的影响,并根据丙烯醛活性的生化调节来设计有效的治疗策略,还需要取得更多进展。
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