厌氧消化中的抗生素耐药基因:未解决的挑战和潜在的解决方案。

IF 9.7 1区 环境科学与生态学 Q1 AGRICULTURAL ENGINEERING
Chunxiao Wang, Xiaole Yin, Xiaoqing Xu, Dou Wang, Yubo Wang, Tong Zhang
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引用次数: 0

摘要

抗菌素耐药性(AMR)威胁公共卫生,需要紧急努力减轻抗生素耐药基因(ARGs)的全球影响。厌氧消化(AD)以挥发性固体还原和能量生成而闻名,也是去除ARGs的可行方法。本文综述了目前对AD过程中ARGs和抗生素耐药菌(ARB)的认识,强调了其检测和量化方面尚未解决的挑战。提出和讨论的问题包括:目前的ARGs检测方法是否满足定性和定量控制要求?我们如何对arg进行风险评估?当ARGs与其他新出现的污染物共同暴露时会发生什么?内部标准的应用如何增强AD抵抗组研究的可靠性?未来可能加强消除ARG的研究方向是什么?调查这些问题将有助于形成更有效的管理战略,利用AD有效控制ARG。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antibiotic resistance genes in anaerobic digestion: Unresolved challenges and potential solutions.

Antimicrobial resistance (AMR) threatens public health, necessitating urgent efforts to mitigate the global impact of antibiotic resistance genes (ARGs). Anaerobic digestion (AD), known for volatile solid reduction and energy generation, also presents a feasible approach for the removal of ARGs. This review encapsulates the existing understanding of ARGs and antibiotic-resistant bacteria (ARB) during the AD process, highlighting unresolved challenges pertaining to their detection and quantification. The questions raised and discussed include: Do current ARGs detection methods meet qualitative and quantitative requirements? How can we conduct risk assessments of ARGs? What happens to ARGs when they come into co-exposure with other emerging pollutants? How can the application of internal standards bolster the reliability of the AD resistome study? What are the potential future research directions that could enhance ARG elimination? Investigating these subjects will assist in shaping more efficient management strategies that employ AD for effective ARG control.

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来源期刊
Bioresource Technology
Bioresource Technology 工程技术-能源与燃料
CiteScore
20.80
自引率
19.30%
发文量
2013
审稿时长
12 days
期刊介绍: Bioresource Technology publishes original articles, review articles, case studies, and short communications covering the fundamentals, applications, and management of bioresource technology. The journal seeks to advance and disseminate knowledge across various areas related to biomass, biological waste treatment, bioenergy, biotransformations, bioresource systems analysis, and associated conversion or production technologies. Topics include: • Biofuels: liquid and gaseous biofuels production, modeling and economics • Bioprocesses and bioproducts: biocatalysis and fermentations • Biomass and feedstocks utilization: bioconversion of agro-industrial residues • Environmental protection: biological waste treatment • Thermochemical conversion of biomass: combustion, pyrolysis, gasification, catalysis.
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