Biochemical strategies for the detection and detoxification of toxic chemicals in the environment.

Ferdinando Febbraio
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引用次数: 15

Abstract

Addressing the problems related to the widespread presence of an increasing number of chemicals released into the environment by human activities represents one of the most important challenges of this century. In the last few years, to replace the high cost, in terms of time and money, of conventional technologies, the scientific community has directed considerable research towards the development both of new detection systems for the measurement of the contamination levels of chemicals in people's body fluids and tissue, as well as in the environment, and of new remediation strategies for the removal of such chemicals from the environment, as a means of the prevention of human diseases. New emerging biosensors for the analysis of environmental chemicals have been proposed, including VHH antibodies, that combine the antibody performance with the affinity for small molecules, genetically engineered microorganisms, aptamers and new highly stable enzymes. However, the advances in the field of chemicals monitoring are still far from producing a continuous real-time and on-line system for their detection. Better results have been obtained in the development of strategies which use organisms (microorganisms, plants and animals) or metabolic pathway-based approaches (single enzymes or more complex enzymatic solutions) for the fixation, degradation and detoxification of chemicals in the environment. Systems for enzymatic detoxification and degradation of toxic agents in wastewater from chemical and manufacturing industries, such as ligninolytic enzymes for the treatment of wastewater from the textile industry, have been proposed. Considering the high value of these research studies, in terms of the protection of human health and of the ecosystem, science must play a major role in guiding policy changes in this field.

环境中有毒化学物质的检测和解毒的生化策略。
解决与人类活动向环境中释放的越来越多的化学品的广泛存在有关的问题是本世纪最重要的挑战之一。在过去几年中,为了取代传统技术在时间和金钱方面的高成本,科学界进行了大量研究,以开发用于测量人体体液和组织以及环境中的化学品污染程度的新检测系统,以及开发从环境中清除此类化学品的新补救战略,作为预防人类疾病的一种手段。新出现的用于分析环境化学物质的生物传感器已经被提出,包括VHH抗体,它结合了抗体性能与对小分子、基因工程微生物、适体和新型高稳定酶的亲和力。然而,化学品监测领域的进展还远远不能产生连续的实时在线检测系统。在开发利用生物体(微生物、植物和动物)或基于代谢途径的方法(单一酶或更复杂的酶溶液)来固定、降解和解毒环境中的化学品的策略方面取得了较好的结果。已经提出了用于化学和制造业废水中有毒物质的酶解毒和降解系统,例如用于处理纺织工业废水的木质素分解酶。考虑到这些研究在保护人类健康和生态系统方面的高价值,科学必须在指导这一领域的政策变化方面发挥重要作用。
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