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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Oxidized phospholipids as biomarkers of tissue and cell damage with a focus on cardiolipin
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Oxidized phospholipids as biomarkers of tissue and cell damage with a focus on cardiolipin

机译:氧化磷脂作为组织和细胞损伤的生物标志物,重点是心磷脂

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Oxidized phospholipid species are important, biologically relevant, lipid signaling molecules that usually exist in low abundance in biological tissues. Along with their inherent stability issues, these oxidized lipids present themselves as a challenge in their detection and identification. Often times, oxidized lipid species can co-chromatograph with non-oxidized species making the detection of the former extremely difficult, even with the use of mass spectrometry. In this study, a normal-phase and reverse-phase two dimensional high performance liquid chromatography (HPLC)-mass spectrometric system was applied to separate oxidized phospholipids from their non-oxidized counterparts, allowing unambiguous detection in a total lipid extract. We have utilized bovine heart cardiolipin as well as commercially available tetralinoleoyl cardiolipin oxidized with cytochrome c (cyt c) and hydrogen peroxide as well as with lipoxygenase to test the separation power of the system. Our findings indicate that oxidized species of not only cardiolipin, but other phospholipid species, can be effectively separated from their non-oxidized counterparts in this two dimensional system. We utilized three types of biological tissues and oxidative insults, namely rotenone treatment of lymphocytes to induce mitochondrial damage and cell death, pulmonary inhalation exposure to single walled carbon nanotubes, as well as total body irradiation, in order to identify cardiolipin oxidation products, critical to the cell damage/cell death pathways in these tissues following cellular stress/injury. Our results indicate that selective cardiolipin (CL) oxidation is a result of a non-random free radical process. In addition, we assessed the ability of the system to identify CL oxidation products in the brain, a tissue known for its extreme complexity and diversity of CL species. The ability of the two dimensional HPLC-mass spectrometric system to detect and characterize oxidized lipid products will allow new studies to be formulated to probe the answers to biologically important questions with regard to oxidative lipidomics and cellular insult. This article is part of a Special Issue entitled: Oxidized phospholipids - their properties and interactions with proteins.
机译:氧化的磷脂物质是重要的,生物学相关的脂质信号分子,通常在生物组织中以低丰度存在。除了其固有的稳定性问题外,这些氧化的脂质本身也成为其检测和鉴定的挑战。通常,即使使用质谱分析,氧化的脂质种类也可以与非氧化的种类共色谱,这使得检测前者极为困难。在这项研究中,使用正相和反相二维高效液相色谱(HPLC)-质谱系统将氧化的磷脂与未氧化的对应物分开,从而可以在总脂质提取物中进行明确的检测。我们已经利用牛心心磷脂以及用细胞色素c(cyt c)和过氧化氢以及脂氧合酶氧化的市售四亚油酰基心磷脂来测试系统的分离能力。我们的发现表明,在该二维系统中,不仅心磷脂的氧化物种,而且其他磷脂物种也可以有效地与非氧化物种分离。我们利用三种类型的生物组织和氧化性损伤,即鱼藤酮处理淋巴细胞以诱导线粒体损伤和细胞死亡,肺部吸入单壁碳纳米管以及全身照射,以鉴定对胆固醇至关重要的心磷脂氧化产物。细胞应激/损伤后这些组织中的细胞损伤/细胞死亡途径。我们的结果表明选择性心磷脂(CL)氧化是非随机自由基过程的结果。此外,我们评估了该系统识别脑中CL氧化产物的能力,该组织以其极度复杂和CL物种的多样性而闻名。二维HPLC-质谱系统检测和表征氧化脂质产物的能力将使新的研究得以制定,以探讨有关氧化脂质组学和细胞损伤的生物学重要问题的答案。本文是名为“氧化磷脂-它们的性质和与蛋白质的相互作用”的特刊的一部分。

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