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Chemical and Biochemical Mechanisms Underlying the Cardioprotective Roles of Dietary Organopolysulfides

机译:膳食有机多硫化物的心脏保护作用的化学和生化机制

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Foods that are rich in organosulfides are highly regarded for their broad range of functions in disease prevention and health promotion since ancient time yet modern scientific study, particularly clinical studies could not agree with traditional wisdom. One of the complexities is due to the labile nature of organosulfides, which are often transformed to different structures depending on the processing conditions. The recent evidence of polysulfides as H2S donor may open up a new avenue for establishing structure and health promotion activity relationship. To put this development into perspective, we carried out a review on the recent development on the chemistry and biochemistry of organopolysulfides with emphasis on their cardioprotective property. Firstly, we briefly surveyed the foods that are rich in polysulfides and their structural diversity. This is followed by in-depth discussion on the chemical transformations of polysulfides under various processing conditions. We further reviewed the potential action mechanisms of polysulfides in cardioprotection through a) hydrogen sulfide releasing activity; b) radical scavenging activity; and c) activity in enzyme inhibition and intervention of gene regulation pathways. Based on the literature trend, we can conclude that the emerging concept of organopolysulfides as naturally-occurring H2S donors is intriguing and warrants further research to establish the structure and activity relationship of the organopolysulfides as H2S donors.
机译:自远古时代以来,富含有机硫化物的食品就具有广泛的疾病预防和健康促进功能,而现代科学研究尤其是临床研究却与传统观点不一致。复杂性之一是由于有机硫化物的不稳定特性,有机硫化物通常会根据加工条件转变成不同的结构。多硫化物作为H2S供体的最新证据可能为建立结构与健康促进活动之间的关系开辟新的途径。为了使这一发展成为现实,我们对有机多硫化物的化学和生物化学的最新进展进行了综述,重点是它们的心脏保护性能。首先,我们简要调查了富含多硫化物的食物及其结构多样性。接下来是关于各种加工条件下多硫化物化学转化的深入讨论。我们通过a)硫化氢释放活性进一步综述了多硫化物在心脏保护中的潜在作用机理。 b)自由基清除活性; c)抑制酶活性和基因调控途径的干预。根据文献趋势,我们可以得出结论,有机多硫化物作为天然存在的H2S供体的新兴概念引起了人们的兴趣,值得进一步研究以建立有机多硫化物作为H2S供体的结构和活性关系。

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