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Astaxanthin Restrains Nitrative-Oxidative Peroxidation in Mitochondrial-Mimetic Liposomes: A Pre-Apoptosis Model

机译:虾青素抑制线粒体模拟脂质体中的硝化-过氧化:细胞凋亡前的模型。

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摘要

Astaxanthin (ASTA) is a ketocarotenoid found in many marine organisms and that affords many benefits to human health. ASTA is particularly effective against radical-mediated lipid peroxidation, and recent findings hypothesize a “mitochondrial-targeted” action of ASTA in cells. Therefore, we examined the protective effects of ASTA against lipid peroxidation in zwitterionic phosphatidylcholine liposomes (PCLs) and anionic phosphatidylcholine: phosphatidylglycerol liposomes (PCPGLs), at different pHs (6.2 to 8.0), which were challenged by oxidizingitrating conditions that mimic the regular and preapoptotic redox environment of active mitochondria. Pre-apoptotic conditions were created by oxidizeditr(osyl)ated cytochrome c and resulted in the highest levels of lipoperoxidation in both PCL and PCPGLs (pH 7.4). ASTA was less protective at acidic conditions, especially in anionic PCPGLs. Our data demonstrated the ability of ASTA to hamper oxidative and nitrative events that lead to cytochrome c-peroxidase apoptosis and lipid peroxidation, although its efficiency changes with pH and lipid composition of membranes.
机译:虾青素(ASTA)是在许多海洋生物中发现的酮类胡萝卜素,对人体健康具有许多益处。 ASTA对自由基介导的脂质过氧化特别有效,最近的研究结果假设ASTA在细胞中具有“线粒体靶向”作用。因此,我们研究了ASTA对两性离子磷脂酰胆碱脂质体(PCLs)和阴离子磷脂酰胆碱:磷脂酰甘油脂质体(PCPGLs)在不同pH值(6.2至8.0)下的脂质过氧化的保护作用,这些条件受到模仿常规规则的氧化/硝化条件的挑战和活性线粒体的凋亡前氧化还原环境。凋亡前的状况是由氧化/硝化(osyl)化的细胞色素c产生的,导致PCL和PCPGL中的脂过氧化水平最高(pH 7.4)。 ASTA在酸性条件下的保护性较低,尤其是在阴离子PCPGL中。我们的数据证明了ASTA抑制导致细胞色素c-过氧化物酶凋亡和脂质过氧化的氧化和硝化事件的能力,尽管其效率随pH和膜脂质成分的变化而变化。

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