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首页> 外文期刊>The international journal of biochemistry and cell biology >Anthocyanins block ischemia-induced apoptosis in the perfused heart and support mitochondrial respiration potentially by reducing cytosolic cytochrome c
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Anthocyanins block ischemia-induced apoptosis in the perfused heart and support mitochondrial respiration potentially by reducing cytosolic cytochrome c

机译:花色苷可能通过减少细胞溶质中的细胞色素c来阻断缺血引起的灌注细胞凋亡,并支持线粒体呼吸

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Anthocynanins, found in fruits and vegetables, have a variety of protective properties, which have generally been attributed to their antioxidant capacity. However, antioxidants are generally strong reductants, and some reductants have been found to block apoptosis by reducing cytosolic cytochrome c, which prevents caspase activation. We tested the ability of various anthocyanins: to reduce cytochrome c, to support cytochrome c-induced mitochondrial respiration and to inhibit apoptosis induced by heart ischemia. Anthocyanins such as delphinidin-3-glucoside (Dp3G) and cyanidin-3-glucoside (Cy3G) were able to reduce cytochrome c directly and rapidly, whereas pelargonidin-3-glucoside (Pg3G), malvinidin-3-glucoside (Mv3G) and peonidin-3-glucoside (Pn3G) had relatively low cytochrome c reducing activities. Dp3G and Cy3G but not Pg3G supported mitochondrial state 4 respiration in the presence of exogenous cytochrome c. Pre-perfusion of hearts with 20 μM Cy3G but not Pg3G prevented ischemia-induced caspase activation. This suggests that the ability of anthocyanins to block caspase activation may be due to their ability to reduce cytosolic cytochrome c. This article is part of a Directed Issue entitled: Bioenergetic dysfunction, adaptation and therapy.
机译:在水果和蔬菜中发现的花青素具有多种保护特性,通常归因于其抗氧化能力。然而,抗氧化剂通常是强还原剂,并且已经发现一些还原剂通过减少胞浆细胞色素c来阻止细胞凋亡,从而阻止了caspase的活化。我们测试了各种花色苷的能力:减少细胞色素c,支持细胞色素c诱导的线粒体呼吸并抑制由心脏缺血引起的细胞凋亡。花青素,例如delphinidin-3-glucoside(Dp3G)和cyanidin-3-glucoside(Cy3G)能够直接和快速地还原细胞色素c,而pelargonidin-3-glucoside(Pg3G),malvinidin-3-glucoside(Mv3G)和peonidin -3-葡萄糖苷(Pn3G)具有较低的细胞色素c还原活性。在存在外源细胞色素c的情况下,Dp3G和Cy3G而非Pg3G支持线粒体4状态呼吸。用20μMCy3G而非Pg3G预先灌注心脏可防止缺血诱导的caspase活化。这表明花色苷阻止胱天蛋白酶激活的能力可能是由于它们减少胞质细胞色素c的能力。本文是《定向问题》的一部分,标题为:生物能功能障碍,适应和治疗。

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