Hongjin Chen, Ur Rahman Saeed, Rehman Asad, Khan Abid Ali, Khalid Muhammad
Department of Biology, College of Science, Mathematics and Technology, Wenzhou-Kean University, Wenzhou, China.
School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.
Curr Res Microb Sci. 2025 Jul 22;9:100447. doi: 10.1016/j.crmicr.2025.100447. eCollection 2025.
Microplastics (MPs) have been reported to be emerging contaminant of different environmental niches like air, soil, and water. When exposed to these environments, MPs interact with already existing antibiotics to create combined pollution that can harm organisms. MPs have garnered significant attention in academic circles due to their ability to adsorb antibiotics. This review article explores different dimensions of MPs, antibiotic resistance genes (ARGs), and the interplay between MPs, antibiotics, and antibiotic-resistant bacteria (ARB), emphasizing their interconnection with soil and water pollution. It also summarizes the mechanisms behind the interaction between antibiotics and MPs, detailing various physical and chemical interactions. Additionally, it outlines the pathways through which MPs and ARGs complexes spread, offering insights for future research and solutions to tackle compound pollution. The article concludes by providing targeted strategies to mitigate the environmental and public health risks posed by MP-associated ARG transmission, highlighting the need for integrated pollution control, advanced monitoring techniques, and stricter regulatory policies.
据报道,微塑料(MPs)已成为空气、土壤和水等不同环境生态位中的新兴污染物。当暴露于这些环境中时,微塑料会与已有的抗生素相互作用,形成可能危害生物体的复合污染。由于微塑料具有吸附抗生素的能力,它们在学术界引起了广泛关注。这篇综述文章探讨了微塑料、抗生素抗性基因(ARGs)以及微塑料、抗生素和抗生素抗性细菌(ARB)之间的相互作用的不同方面,强调了它们与土壤和水污染的相互联系。文章还总结了抗生素与微塑料相互作用背后的机制,详细阐述了各种物理和化学相互作用。此外,文章概述了微塑料和ARGs复合物传播的途径,为未来研究和应对复合污染的解决方案提供了见解。文章最后提供了有针对性的策略,以减轻与微塑料相关的ARG传播所带来的环境和公共健康风险,强调了综合污染控制、先进监测技术和更严格监管政策的必要性。