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Hormetic dose responses induced by antibiotics in bacteria: A phantom menace to be thoroughly evaluated to address the environmental risk and tackle the antibiotic resistance phenomenon

机译:细菌中抗生素诱导的刺激剂量反应:彻底评价幻影威胁,以解决环境风险并解决抗生素抵抗现象

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摘要

The environmental contamination of antibiotics caused by their over or inappropriate use is a major issue for environmental and human health since it can adversely impact the ecosystems and promote the antimicrobial resistance. Indeed, considering that in the environmental matrices these drugs are present at low levels, the possibility that bacteria exhibit a hormetic response to increase their resilience when exposed to antibiotic sub-inhibitory concentrations might represent a serious threat. Information reported in this review showed that exposure to different types of antibiotics, either administered individually or in mixtures, is capable of exerting hormetic effects on bacteria at environmentally relevant concentrations. These responses have been reported regardless of the type of bacterium or antibiotic, thus suggesting that hormesis would be a generalized adaptive mechanism implemented by bacteria to strengthen their resistance to antibiotics. Hormetic effects included growth, bioluminescence and motility of bacteria, their ability to produce biofilm, but also the frequency of mutation and plasmid conjugative transfer. The evaluation of quantitative features of antibiotic-induced hormesis showed that these responses have both maximum stimulation and dose width characteristics similar to those already reported in the literature for other stressors. Notably, mixtures comprising individual antibiotic inducing stimulatory responses might have distinct combined effects based on antagonistic, synergistic or additive interactions between components. Regarding the molecular mechanisms of action underlying the aforementioned effects, we put forward the hypothesis that the adoption of adaptive/defensive responses would be driven by the ability of antibiotic low doses to modulate the transcriptional activity of bacteria. Overall, our findings suggest that hormesis plays a pivotal role in affecting the bacterial behavior in order to acquire a survival advantage. Therefore, a proactive and effective risk assessment should necessarily take due account of the hormesis concept to adequately evaluate the risks to ecosystems and human health posed by antibiotic environmental contamination.
机译:由其过度或不恰当造成的抗生素的环境污染是环境和人类健康的主要问题,因为它可能对生态系统产生不利影响并促进抗微生物抗性。实际上,考虑到在环境矩阵中,这些药物的存在低水平,细菌可能表现出在暴露于抗生素次抑制浓度的情况下增加它们的弹性可能代表严重威胁。本综述中报告的信息表明,单独或混合物施用不同类型的抗生素的暴露能够在环境相关浓度下对细菌产生刺激作用。据报道,无论细菌或抗生素的类型如何,据报道了这些反应,从而表明它们是由细菌实施的广义适应机制,以加强其对抗生素的抗性。刺激作用包括细菌的生长,生物发光和动力,它们的生产生物膜的能力,还具有突变频率和质粒缀合的转移。抗生素诱导的混血性的定量特征评价显示,这些反应具有与其他压力源的文献中已经报道的那些相似的最大刺激和剂量宽度特性。值得注意的是,包含单独的抗生素诱导刺激反应的混合物可能具有基于组分之间的拮抗,协同或添加剂相互作用的不同组合效应。关于上述作用的行动的分子机制,我们提出了通过抗生素低剂量调节细菌的转录活性的能力驱动自适应/防御反应的假设。总体而言,我们的研究结果表明,血液化在影响细菌行为时发挥枢转作用,以便获得生存优势。因此,主动和有效的风险评估应该必须根据激发概念来适当叙述,以充分评估抗生素环境污染的生态系统和人类健康的风险。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|149255.1-149255.17|共17页
  • 作者单位

    Department of Public Health Section of Occupational Medicine University of Naples Federico Ⅱ Naples 80131 Italy;

    Department of Public Health Section of Occupational Medicine University of Naples Federico Ⅱ Naples 80131 Italy;

    Key Laboratory of Agrometeorology of Jiangsu Province Department of Ecology School of Applied Meteorology Nanjing University of Information Science & Technology (NUIST) Nanjing 210044 China;

    Department of Public Health Section of Occupational Medicine University of Naples Federico Ⅱ Naples 80131 Italy;

    Department of Public Health Section of Occupational Medicine University of Naples Federico Ⅱ Naples 80131 Italy;

    Department of Public Health Section of Occupational Medicine University of Naples Federico Ⅱ Naples 80131 Italy;

    Department of Public Health Section of Occupational Medicine University of Naples Federico Ⅱ Naples 80131 Italy;

    Department of Environmental Health Sciences Morrill 1 N344 University of Massachusetts Amherst MA 01003 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hormesis; Subinhibitory concentrations; Antimicrobial resistance; Plasmid conjugative transfer; Mixture toxicology;

    机译:血液化;水下势浓度;抗微生物抗性;质粒缀合转移;混合物毒理学;

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