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环境中的外源化合物:消除生物持久性问题的当前及未来策略

Xenobiotics in the environment: present and future strategies to obviate the problem of biological persistence.

作者信息

Rieger Paul Gerhard, Meier Helmut Martin, Gerle Michael, Vogt Uwe, Groth Torsten, Knackmuss Hans Joachim

机构信息

Institut für Mikrobiologie der Universität Stuttgart, Allmandring 31, D-70569 Stuttgart, Germany.

出版信息

J Biotechnol. 2002 Mar 14;94(1):101-23. doi: 10.1016/s0168-1656(01)00422-9.

Abstract

Sustainable chemistry aims at an improved efficiency of using natural resources which are used to meet human needs for chemical products. Chemists in science and industry, have become aware of the importance to design environmentally benign chemicals. One aspect is the biological persistence and the present paper reviews work in this field focussing on the degradation of xenobiotics in the environment. Different structural reasons for chemical and biological persistence are described and strategies to use single bacterial isolates or microbial communities for the elimination of xenobiotic pollutants in the environment are summarized. Perspectives and limitations to evolve and use this catabolic potential are critically discussed with respect to the complexity of mixtures of xenobiotics often found in practice. An interdisciplinary approach for the prospective design of environmentally benign substances is presented and examples for new commodity chemicals that better fit the naturally existing catabolic potential are included.

摘要

可持续化学旨在提高自然资源的利用效率,这些资源用于满足人类对化学产品的需求。科学界和工业界的化学家已经意识到设计环境友好型化学品的重要性。其中一个方面是生物持久性,本文综述了该领域的研究工作,重点关注环境中异生物素的降解。描述了化学和生物持久性的不同结构原因,并总结了利用单一细菌分离株或微生物群落消除环境中异生物素污染物的策略。针对实际中经常发现的异生物素混合物的复杂性,批判性地讨论了开发和利用这种分解代谢潜力的前景和局限性。提出了一种前瞻性设计环境友好型物质的跨学科方法,并列举了更符合自然存在的分解代谢潜力的新型商品化学品实例。

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