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The effect of conventional wastewater treatment on the levels of antimicrobial-resistant bacteria in effluent: a meta-analysis of current studies

机译:传统废水处理对废水中抗微生物细菌水平的影响:当前研究的荟萃分析

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Antimicrobial agents in the environment are a cause for concern. Antimicrobial drug residues and their metabolites reach the aquatic and terrestrial environment primarily through wastewater treatment plants (WWTP). In addition to the potential direct negative health and environmental effects, there is potential for the development of antimicrobial-resistant bacteria. Residue levels below the minimum inhibitory concentration for a bacterial species can be important in selection of resistance. There is uncertainty associated with resistance formation during WWTP processing. A meta-analysis study was carried out to analyse the effect of WWTP processing on the levels of antimicrobial-resistant bacteria within bacterial populations. An analysis of publications relating to multiple antimicrobial-resistant (MAR) bacteria (n - 61), single antimicrobial-resistant (SAR) E. coli (n = 81) and quinolone/fluoroquinolone-resistant (FR) bacteria (n = 19) was carried out. The odds-ratio (OR) of MAR (OR = 1.60, p < 0.01), SAR (OR= 1.33,ρ < 0.01) and FR (OR = 1.19, ρ<0.01) bacteria was determined. The results infer that WWTP processing results in an increase in the proportion of resistant bacteria in effluent, even though the overall bacterial population may have reduced (i.e. a reduction in total bacterial numbers but an increase in the percentage of resistant bacteria). The results support the need for further research into the development of antimicrobial-resistant strains and possible selective pressures operating in WWTPs.
机译:环境中的抗菌剂令人担忧。抗菌药物残留及其代谢产物主要通过废水处理厂(WWTP)到达水生和陆地环境。除了潜在的直接负面健康和环境影响外,还有可能发展出抗微生物细菌。残留水平低于细菌最低抑制浓度对于选择抗性可能很重要。在WWTP处理过程中,与电阻形成相关的不确定性。进行了荟萃分析研究,以分析污水处理厂处理对细菌种群中抗药性细菌水平的影响。分析与多种抗微生物(MAR)细菌(n-61),单个抗微生物(SAR)大肠杆菌(n = 81)和对喹诺酮/对氟喹诺酮耐药(FR)细菌(n = 19)有关的出版物进行了。确定了MAR(OR = 1.60,p <0.01),SAR(OR = 1.33,ρ<0.01)和FR(OR = 1.19,ρ<0.01)细菌的比值比(OR)。结果表明,即使总细菌种群可能减少(即总细菌数量减少,但耐药菌百分数增加),污水处理厂的处理仍会导致污水中耐药菌比例的增加。结果支持需要进一步研究开发抗菌素耐药菌株以及污水处理厂中可能存在的选择性压力。

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