Institut Terre et Environnement de Strasbourg (ITES), Université de Strasbourg/EOST/ENGEES, CNRS UMR 7063, F-67084 Strasbourg, France.
State Key Joint Laboratory of Environmental Simulation and Pollution Control, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
J Environ Sci (China). 2024 Dec;146:298-303. doi: 10.1016/j.jes.2024.02.005. Epub 2024 Feb 23.
Antibiotics, their transformation products, and the translocation of antibiotic-resistant genes in the environment pose significant health risks to humans, animals, and ecosystems, aligning with the One Health concept. Constructed wetlands hold substantial yet underutilized potential for treating wastewater from agricultural, domestic sewage, or contaminated effluents from wastewater treatment plants, with the goal of eliminating antibiotics. However, the comprehensive understanding of the distribution, persistence, and dissipation processes of antibiotics within constructed wetlands remains largely unexplored. In this context, we provide an overview of the current application of stable isotope analysis at natural abundance to antibiotics. We explore the opportunities of an advanced multiple stable isotope approach, where isotope concepts could be effectively applied to examine the fate of antibiotics in wetlands. The development of a conceptual framework to study antibiotics in wetlands using multi-element stable isotopes introduces a new paradigm, offering enhanced insights into the identification and quantification of natural attenuation of antibiotics within wetland systems. This perspective has the potential to inspire the general public, governmental bodies, and the broader research community, fostering an emphasis on the utilization of stable isotope analysis for studying antibiotics and other emerging micropollutants in wetland systems.
抗生素、其转化产物以及抗生素耐药基因在环境中的转移对人类、动物和生态系统的健康构成重大威胁,符合“同一健康”概念。人工湿地具有处理农业废水、家庭污水或污水处理厂污染废水的巨大但尚未充分利用的潜力,旨在消除抗生素。然而,对于抗生素在人工湿地中的分布、持久性和消散过程的全面理解仍在很大程度上未被探索。在这种情况下,我们提供了对稳定同位素分析在自然丰度下应用于抗生素的概述。我们探讨了先进的多稳定同位素方法的机会,其中同位素概念可以有效地应用于研究湿地中抗生素的命运。使用多元素稳定同位素研究湿地中抗生素的概念框架的发展引入了一个新的范例,为识别和量化湿地系统中抗生素的自然衰减提供了增强的见解。这种观点有可能激发公众、政府机构和更广泛的研究界,强调利用稳定同位素分析研究湿地系统中的抗生素和其他新兴的微污染物。