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White rot fungi and advanced combined biotechnology with nanomaterials: promising tools for endocrine-disrupting compounds biotransformation

机译:白腐真菌和高级联合生物技术与纳米材料:内分泌破坏化合物生物转化的有希望的工具

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Endocrine-disrupting compounds (EDCs) can interfere with endocrine systems and bio-accumulate through the food chain and even decrease biodiversity in contaminated areas. This review discusses a critical overview of recent research progress in the biotransformation of EDCs (including polychlorinated biphenyl and nonylphenol, and suspected EDCs such as heavy metals and sulfonamide antibiotics) by white rot fungi (WRF) based on techniques with an emphasis on summarizing and analyzing fungal molecular, metabolic and genetic mechanisms. Not only intracellular metabolism which seems to perform essential roles in the ability of WRF to transform EDCs, but also advanced applications are deeply discussed. This review mainly reveals the removal pathway of heavy metal and antibiotic pollutants because the single pollution almost did not exist in a real environment while the combined pollution has become more serious and close to people's life. The trends in WRF technology and its related advanced applications which use the combined technology, including biocatalysis of WRF and adsorption of nanomaterials, to degrade EDCs have also been introduced. Furthermore, challenges and future research needs EDCs biotransformation by WRF are also discussed. This research, referring to metabolic mechanisms and the combined technology of WRF with nanomaterials, undoubtedly contributes to the applications of biotechnology. This review will be of great benefit to an understanding of the trends in biotechnology for the removal of EDCs.
机译:破坏内分泌破坏化合物(EDC)可以干扰内分泌系统和通过食物链积累生物积累,甚至减少受污染区域的生物多样性。本综述讨论了基于强调总结和分析的技术,通过白色腐毒真菌(WRF)对EDCS(包括多氯联苯和壬基酚,疑似EDC)的生物转化(包括多氯联苯和壬基酚,诸如重金属和磺酰胺抗生素)的近期研究进展的关键概述真菌分子,代谢和遗传机制。不仅似乎在WRF转换EDC的能力中表现了必要角色的细胞内代谢,而且还深入讨论了先进的应用。本综述主要揭示了重金属和抗生素污染物的去除途径,因为在一个真实环境中几乎不存在于实际环境中,而合并的污染变得更加严重,并且靠近人们的生活。还介绍了WRF技术的趋势及其使用组合技术的相关先进应用,包括WRF的生物分析和纳米材料的吸附,降解EDC。此外,还讨论了WRF的挑战和未来的研究需求EDCS生物转化。本研究指的是代谢机制和纳米材料的WRF的组合技术,无疑有助于生物技术的应用。本综述对于了解消除EDC的生物技术趋势将有很大的好处。

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