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含氟药物的微生物降解:生化途径、对环境的影响及潜在应用

Microbial degradation of fluorinated drugs: biochemical pathways, impacts on the environment and potential applications.

作者信息

Murphy Cormac D

机构信息

UCD School of Biomolecular and Biomedical Science, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

Appl Microbiol Biotechnol. 2016 Mar;100(6):2617-27. doi: 10.1007/s00253-016-7304-3. Epub 2016 Feb 1.

Abstract

Since the discovery over 60 years ago of fluorocortisone's biological properties (9-α-Fluoro derivatives of cortisone and hydrocortisone; Fried J and Sabo EF, J Am Chem Soc 76: 1455-1456, 1954), the number of fluorinated drugs has steadily increased. With the improvement in synthetic methodologies, this trend is likely to continue and will lead to the introduction of new fluorinated substituents into pharmaceutical compounds. Although the biotransformation of organofluorine compounds by microorganisms has been well studied, specific investigations on fluorinated drugs are relatively few, despite the increase in the number and variety of fluorinated drugs that are available. The strength of the carbon-fluorine bond conveys stability to fluorinated drugs; thus, they are likely to be recalcitrant in the environment or may be partially metabolized to a more toxic metabolite. This review examines the research done on microbial biotransformation and biodegradation of fluorinated drugs and highlights the importance of understanding how microorganisms interact with this class of compound from environmental, clinical and biotechnological perspectives.

摘要

自60多年前发现氟可的松的生物学特性(可的松和氢化可的松的9-α-氟衍生物;Fried J和Sabo EF,《美国化学会志》76: 1455 - 1456,1954年)以来,含氟药物的数量一直在稳步增加。随着合成方法的改进,这一趋势可能会持续下去,并将导致在药物化合物中引入新的含氟取代基。尽管微生物对有机氟化合物的生物转化已得到充分研究,但针对含氟药物的具体研究相对较少,尽管可用的含氟药物数量和种类都在增加。碳氟键的强度赋予了含氟药物稳定性;因此,它们在环境中可能具有顽固性,或者可能部分代谢为毒性更强的代谢物。这篇综述考察了关于含氟药物微生物生物转化和生物降解的研究,并从环境、临床和生物技术角度强调了了解微生物如何与这类化合物相互作用的重要性。

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