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Medical bioremediation: prospects for the application of microbial catabolic diversity to aging and several major age-related diseases.

机译:医学生物修复:微生物分解代谢多样性在衰老和几种与年龄相关的主要疾病中的应用前景。

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摘要

Several major diseases of old age, including atherosclerosis, macular degeneration and neurodegenerative diseases are associated with the intracellular accumulation of substances that impair cellular function and viability. Moreover, the accumulation of lipofuscin, a substance that may have similarly deleterious effects, is one of the most universal markers of aging in postmitotic cells. Reversing this accumulation may thus be valuable, but has proven challenging, doubtless because substances resistant to cellular catabolism are inherently hard to degrade. We suggest a radically new approach: augmenting humans' natural catabolic machinery with microbial enzymes. Many recalcitrant organic molecules are naturally degraded in the soil. Since the soil in certain environments - graveyards, for example - is enriched in human remains but does not accumulate these substances, it presumably harbours microbes that degrade them. The enzymes responsible could be identified and engineered to metabolise these substances in vivo. Here, we survey a range of such substances, their putative roles in age-related diseases and the possible benefits of their removal. We discuss how microbes capable of degrading them can be isolated, characterised and their relevant enzymes engineered for this purpose and ways to avoid potential side-effects.
机译:几种主要的老年疾病,包括动脉粥样硬化,黄斑变性和神经退行性疾病,与损害细胞功能和生存能力的物质在细胞内的积累有关。此外,脂褐素(一种可能具有类似有害作用的物质)的积累是有丝分裂后细胞中最普遍的衰老标记之一。因此,逆转这种积累可能是有价值的,但无疑已经证明是具有挑战性的,因为对细胞分解代谢具有抗性的物质本来就难以降解。我们建议一种全新的方法:用微生物酶增强人类的天然分解代谢机制。许多顽固的有机分子在土壤中自然降解。由于某些环境(例如墓地)中的土壤富含人体残留物,但不会积聚这些物质,因此它可能含有使它们降解的微生物。负责的酶可以被鉴定和工程化以在体内代谢这些物质。在这里,我们调查了一系列此类物质,它们在与年龄有关的疾病中的假定作用以及去除这些物质的可能益处。我们讨论了如何分离,表征能够降解微生物的微生物,以及如何为此目的设计其相关酶以及避免潜在副作用的方法。

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