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极端微生物:抗辐射微生物储备及其治疗意义

Extremophiles: radiation resistance microbial reserves and therapeutic implications.

作者信息

Singh O V, Gabani P

机构信息

Division of Biological and Health Sciences, University of Pittsburgh, Bradford, PA, USA.

出版信息

J Appl Microbiol. 2011 Apr;110(4):851-61. doi: 10.1111/j.1365-2672.2011.04971.x. Epub 2011 Mar 3.

Abstract

Micro-organisms with the ability to survive in extreme environmental conditions are known as 'extremophiles'. Currently, extremophiles have caused a sensation in the biotechnology/pharmaceutical industries with their novel compounds, known as 'extremolytes'. The potential applications of extremolytes are being investigated for human therapeutics including anticancer drugs, antioxidants, cell cycle-blocking agents, anticholesteric drugs, etc. It is hypothesized that the majority of ultraviolet radiation (UVR)-resistant micro-organisms can be used to develop anticancer drugs to prevent skin damage from UVR. The metabolites from UVR-resistant microbes are a great source of potential therapeutic applications in humans. This article aims to discuss the potentials of extremolytes along with their therapeutic implications of UVR extremophiles. The major challenges of therapeutic development using extremophiles are also discussed.

摘要

能够在极端环境条件下生存的微生物被称为“极端微生物”。目前,极端微生物凭借其被称为“极端代谢物”的新型化合物在生物技术/制药行业引起了轰动。人们正在研究极端代谢物在人类治疗方面的潜在应用,包括抗癌药物、抗氧化剂、细胞周期阻断剂、抗胆固醇药物等。据推测,大多数抗紫外线辐射(UVR)的微生物可用于开发抗癌药物,以预防紫外线辐射对皮肤造成的损伤。抗紫外线辐射微生物产生的代谢物是人类潜在治疗应用的重要来源。本文旨在探讨极端代谢物的潜力及其对耐紫外线极端微生物的治疗意义。同时也讨论了利用极端微生物进行治疗开发面临的主要挑战。

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