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利用土著或基因改良微生物菌株进行药物和其他有机污染物的生物修复趋势:综述。

Trends in the Bioremediation of Pharmaceuticals and Other Organic Contaminants Using Native or Genetically Modified Microbial Strains: A Review.

机构信息

Department of Food Science and Nutrition, School of Environment, University of the Aegean, Lemnos, Greece.

Laboratory of Environmental Quality and Geospatial Applications, Department of Marine Sciences, School of Environment, University of the Aegean, Lesvos, Greece.

出版信息

Curr Pharm Biotechnol. 2019;20(10):787-824. doi: 10.2174/1389201020666190527113903.

Abstract

Nowadays, numerous synthetic and semisynthetic chemicals are extensively produced and consequently used worldwide for many different purposes, such as pharmaceuticals, pesticides, hydrocarbons with aromatic rings (known as polycyclic aromatic hydrocarbons, PAHs), multi-substituted biphenyls with halogens (such as polychlorinated biphenyls, PCBs), and many other toxic and persistent chemical species. The presence of the aforementioned xenobiotic substances not only in various environmental matrices (water, air, and soil), but also in biological tissues (organisms) as well as in several compartments of raw or processed food (of fruit, vegetal, and animal origin), has raised global scientific concerns regarding their potential toxicity towards non target organisms including humans. Additionally, the ability of those persistent organic pollutants to be magnified via food consumption (food chain) has become a crucial threat to human health. Microbial degradation is considered an important route influencing the fate of those toxicants in each matrix. The technique of bioremediation, either with microorganisms (native or genetically modified) which are applied directly (in a reactor or in situ), or with cell extracts or purified enzymes preparations, is reported as a low cost and potential detoxification technology for the removal of toxic chemicals. The sources and toxic impacts of target groups of chemicals are briefly presented in the present study, whereas the bioremediation applications for the removal of pharmaceuticals and other organic contaminants using microbial strains are critically reviewed. All the recently published data concerning the genes encoding the relevant enzymes that catalyze the degradation reactions, the mechanisms of reactions and parameters that influence the bioremediation process are discussed. Finally, research needs and future trends in the direction of decontamination are high-lightened.

摘要

如今,大量的合成和半合成化学品被广泛生产,并因此在全球范围内用于许多不同的用途,如药物、农药、具有芳香环的碳氢化合物(称为多环芳烃,PAHs)、带有卤素的多取代联苯(如多氯联苯,PCBs),以及许多其他有毒和持久性的化学物质。上述外来物质不仅存在于各种环境基质(水、空气和土壤)中,而且存在于生物组织(生物体)以及生的或加工的食物(水果、蔬菜和动物来源)的几个隔室中,这引起了全球科学界对其对非目标生物(包括人类)潜在毒性的关注。此外,这些持久性有机污染物通过食物消费(食物链)被放大的能力对人类健康构成了至关重要的威胁。微生物降解被认为是影响这些毒物在每种基质中命运的重要途径。生物修复技术,无论是使用直接应用的(在反应器中或原位)的微生物(天然或基因修饰),还是使用细胞提取物或纯化酶制剂,都被报道为一种低成本且有潜力的解毒技术,用于去除有毒化学品。本研究简要介绍了目标化学物质组的来源和毒性影响,同时还批判性地回顾了使用微生物菌株去除药物和其他有机污染物的生物修复应用。讨论了所有最近发表的关于催化降解反应的相关酶的基因、反应机制以及影响生物修复过程的参数的相关数据。最后,强调了脱污染的研究需求和未来趋势。

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