Department of Biotechnology, Sir J. C. Bose Technical Campus Bhimtal, Kumaun University, Nainital, 263136, Uttarakhand, India.
School of Engineering, The University of British Columbia, Okanagan, Kelowna, BC, Canada.
Appl Biochem Biotechnol. 2023 Oct;195(10):6168-6182. doi: 10.1007/s12010-023-04386-0. Epub 2023 Feb 27.
The growing field of nanotechnology and its many applications have led to the irregular release of nanoparticles (NPs), with unintended effects on the environment and continued contamination of water bodies. Metallic NPs are used more frequently in extreme environmental conditions due to their higher efficiency, which attracts more attention in various applications. Due to improper pre-treatment of biosolids, inefficient wastewater treatment practices, and other unregulated agricultural practices continue to contaminate the environment. In particular, the uncontrolled use of NPs in various industrial applications has led to damage to the microbial flora and caused irreplaceable damage to animals and plants. This study focuses on the effect of different doses, types, and compositions of NP on the ecosystem. The review also mentions the impact of various metallic NPs on microbial ecology, their interactions with microorganisms, ecotoxicity studies, and dosage evaluation of the NPs, mainly focused on the review article. However, further research is still needed to understand the complexity of interactions between NPs and microbes in soil and aquatic ecosystems.
纳米技术领域的不断发展及其众多应用导致了纳米粒子(NPs)的不规则释放,对环境产生了意外影响,并持续污染水体。由于其更高的效率,金属 NPs 在极端环境条件下的使用越来越频繁,因此在各种应用中受到更多关注。由于生物固体的预处理不当、废水处理实践效率低下以及其他不受监管的农业实践,环境继续受到污染。特别是,各种工业应用中 NPs 的不受控制使用导致了微生物菌群的破坏,并对动植物造成了不可替代的损害。本研究重点关注不同剂量、类型和组成的 NP 对生态系统的影响。该综述还提到了各种金属 NPs 对微生物生态学的影响、它们与微生物的相互作用、生态毒性研究以及 NPs 的剂量评估,主要集中在综述文章上。然而,仍需要进一步研究来了解 NPs 和微生物在土壤和水生生态系统中的相互作用的复杂性。