Centre for Environmental Health and Engineering (CEHE), Department of Civil and Environmental Engineering, University of Surrey, Guildford GU2 7XH, United Kingdom.
The James Hutton Institute, Craigiebuckler, Aberdeen AB15 8QH, United Kingdom.
J Hazard Mater. 2023 Mar 15;446:130628. doi: 10.1016/j.jhazmat.2022.130628. Epub 2022 Dec 19.
The urgent need to reduce the environmental burden of antibiotic resistance genes (ARGs) has become even more apparent as concerted efforts are made globally to tackle the dissemination of antimicrobial resistance. Concerning levels of ARGs abound in sewage sludge and animal manure, and their inadequate attenuation during conventional anaerobic digestion (AD) compromises the safety of the digestate, a nutrient-rich by-product of AD commonly recycled to agricultural land for improvement of soil quality. Exogenous ARGs introduced into the natural environment via the land application of digestate can be transferred from innocuous environmental bacteria to clinically relevant bacteria by horizontal gene transfer (HGT) and may eventually reach humans through food, water, and air. This review, therefore, discusses the prospects of using carbon- and iron-based conductive materials (CMs) as additives to mitigate the proliferation of ARGs during the AD of sewage sludge and animal manure. The review spotlights the core mechanisms underpinning the influence of CMs on the resistome profile, the steps to maximize ARG attenuation using CMs, and the current knowledge gaps. Data and information gathered indicate that CMs can profoundly reduce the abundance of ARGs in the digestate by easing selective pressure on ARGs, altering microbial community structure, and diminishing HGT.
减少抗生素耐药基因(ARGs)环境负担的紧迫性日益凸显,全球正在协同努力应对抗微生物耐药性的传播。污水污泥和动物粪便中存在大量的 ARGs,而传统的厌氧消化(AD)过程中对其的衰减不足会危及到消化物的安全性,消化物是 AD 的一种营养丰富的副产物,通常被循环利用到农业用地,以改善土壤质量。通过土地应用消化物将外源 ARGs 引入自然环境,可通过水平基因转移(HGT)从无害的环境细菌转移到临床相关细菌,最终可能通过食物、水和空气到达人类。因此,本文讨论了在污水污泥和动物粪便的 AD 过程中使用碳和铁基导电材料(CMs)作为添加剂来减轻 ARGs 增殖的前景。本文重点介绍了 CMs 影响抗性组特征的核心机制、使用 CMs 最大限度减少 ARG 衰减的步骤以及当前的知识空白。收集的数据和信息表明,CMs 可以通过减轻 ARGs 的选择压力、改变微生物群落结构和减少 HGT,从而显著降低消化物中 ARGs 的丰度。