首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Lipofuscin-bound iron is a major intracellular source of oxidants: role in senescent cells.
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Lipofuscin-bound iron is a major intracellular source of oxidants: role in senescent cells.

机译:结合脂褐素的铁是主要的细胞内氧化剂来源:在衰老细胞中起作用。

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摘要

Aging is accompanied by an intracellular accumulation of lipofuscin, a hydrophobic yellow-brownish material that accumulates especially in the lysosomal compartment, where it can be neither degraded nor exocytosed from the cell. The intracellular effects of accumulating lipofuscin are still a subject of speculation. In addition to the demonstrated inhibition of the proteasome, it was proposed that lipofuscin is cytotoxic because of its ability to incorporate transition metals such as copper and iron, resulting in a redox-active surface, able to catalyze the Fenton reaction. This characteristic of lipofuscin may contribute to an increased level of radical formation and oxidatively modified cellular components such as proteins, lipids, and RNA/DNA, which has been shown to be extensive in aging cells. In this study for the first time the lipofuscin-mediated formation of oxidants and the role of iron in this process are directly shown in a model of senescent fibroblasts, as well as in vitro with artificial lipofuscin. We demonstrate that this oxidant production is independent of mitochondria and has cytotoxic effects. The ability of lipofuscin to produce oxidants is dependent on the amount of transition metals incorporated. Although the amount of oxidants formed by cellular lipofuscin turned out to be moderate, it is chronic and thus lipofuscin is able to catalyze its own formation.
机译:老化伴随着脂褐素的细胞内积聚,脂褐素是一种疏水的黄棕色物质,特别是在溶酶体区室中积聚,在溶酶体区室中它既不会降解也不会从细胞中胞吐。积累脂褐素的细胞内作用仍然是推测的主题。除了已证明的对蛋白酶体的抑制作用外,有人提出脂褐素具有细胞毒性,因为它具有掺入过渡金属(例如铜和铁)的能力,从而产生了具有氧化还原活性的表面,能够催化Fenton反应。脂褐素的这种特性可能有助于自由基形成和氧化修饰的细胞成分(例如蛋白质,脂质和RNA / DNA)的水平提高,这些成分已被证明在衰老细胞中广泛存在。这项研究首次在衰老的成纤维细胞模型中以及在人工脂褐素的体外实验中直接显示了脂褐素介导的氧化剂形成和铁在该过程中的作用。我们证明,这种氧化剂的生产独立于线粒体,并具有细胞毒性作用。脂褐素产生氧化剂的能力取决于所结合的过渡金属的量。尽管由细胞脂褐素形成的氧化剂的量被证明是中等的,但是它是长期的,因此脂褐素能够催化其自身的形成。

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