Rex M Camil, Debroy Abhrajit, Nirmala M Joyce, Mukherjee Amitava
Centre for Nanobiotechnology, Vellore Institute of Technology Vellore 632014 India
Department of Chemical Engineering, Indian Institute of Technology Madras Chennai 600036 India.
RSC Adv. 2023 Jul 28;13(33):22905-22917. doi: 10.1039/d3ra04054b. eCollection 2023 Jul 26.
The unsustainable manufacturing, utilization and inadequate handling of plastics have led to a surge in global plastic pollution. In recent times, there has been increasing concern about the plausible hazards associated with exposure to micro/nanoplastics (M/NPs). As aquatic systems are considered to be the likely sink for M/NPs, it is crucial to comprehend their environmental behavior. The bioavailability, toxicity and fate of M/NPs in the environment are predominantly dictated by their surface characteristics. In the aquatic environment, M/NPs are prone to be internalized by aquatic organisms. This may facilitate their interaction with a diverse array of biomolecules within the organism, resulting in the formation of a biocorona (BC). The development of BC causes modifications in the physicochemical attributes of the M/NPs including changes to their size, stability, surface charge and other properties. This review details the concept of BC formation and its underlying mechanism. It provides insight on the analytical techniques employed for characterizing BC formation and addresses the associated challenges. Further, the eco-toxicological implications of M/NPs and the role of BC in modifying their potential toxicity on aquatic organisms is specified. The impact of BC formation on the fate and transport of M/NPs is discussed. A concise outlook on the future perspectives is also presented.
塑料的不可持续生产、使用以及处理不当导致全球塑料污染激增。近年来,人们越来越关注接触微塑料/纳米塑料(M/NPs)可能带来的危害。由于水生系统被认为是M/NPs的可能归宿,了解它们在环境中的行为至关重要。M/NPs在环境中的生物可利用性、毒性和归宿主要由其表面特性决定。在水生环境中,M/NPs容易被水生生物内化。这可能促进它们与生物体内各种生物分子的相互作用,从而形成生物冠(BC)。BC的形成会导致M/NPs的物理化学属性发生改变,包括其大小、稳定性、表面电荷和其他性质的变化。本综述详细介绍了BC形成的概念及其潜在机制。它提供了用于表征BC形成的分析技术的见解,并解决了相关挑战。此外,还阐述了M/NPs的生态毒理学影响以及BC在改变其对水生生物潜在毒性方面的作用。讨论了BC形成对M/NPs归宿和迁移的影响。还简要展望了未来的研究前景。