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生物表面活性剂对金属纳米颗粒的稳定作用研究进展——当前趋势综述

Advances in stabilization of metallic nanoparticle with biosurfactants- a review on current trends.

作者信息

C Femina Carolin, T Kamalesh

机构信息

Department of Biotechnology, Saveetha School of Engineering, SIMATS, Chennai, 602105, India.

Department of Physics, B. S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, 600 048, India.

出版信息

Heliyon. 2024 Apr 19;10(9):e29773. doi: 10.1016/j.heliyon.2024.e29773. eCollection 2024 May 15.

Abstract

Recently, research based on new biomaterials for stabilizing metallic nanoparticles has increased due to their greater environmental friendliness and lower health risk. Their stability is often a critical factor influencing their performance and shelf life. Nowadays, the use of biosurfactants is gaining interest due to their sustainable advantages. Biosurfactants are used for various commercial and industrial applications such as food processing, therapeutic applications, agriculture, etc. Biosurfactants create stable coatings surrounding nanoparticles to stop agglomeration and provide long-term stability. The present review study describes a collection of important scientific works on stabilization and capping of metallic nanoparticles as biosurfactants. This review also provides a comprehensive overview of the intrinsic properties and environmental aspects of metal nanoparticles coated with biosurfactants. In addition, future methods and potential solutions for biosurfactant-mediated stabilization in nanoparticle synthesis are also highlighted. The objective of this study is to ensure that the stabilized nanoparticles exhibit biocompatible properties, making them suitable for applications in medicine and biotechnology.

摘要

近年来,基于新型生物材料来稳定金属纳米颗粒的研究有所增加,因为它们具有更高的环境友好性和更低的健康风险。它们的稳定性往往是影响其性能和保质期的关键因素。如今,生物表面活性剂因其可持续的优势而受到关注。生物表面活性剂被用于各种商业和工业应用,如食品加工、治疗应用、农业等。生物表面活性剂在纳米颗粒周围形成稳定的涂层,以阻止团聚并提供长期稳定性。本综述研究描述了一系列关于将生物表面活性剂用于金属纳米颗粒的稳定化和封端的重要科学著作。本综述还全面概述了涂有生物表面活性剂的金属纳米颗粒的内在性质和环境方面。此外,还强调了纳米颗粒合成中生物表面活性剂介导的稳定化的未来方法和潜在解决方案。本研究的目的是确保稳定的纳米颗粒具有生物相容性,使其适用于医学和生物技术领域的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1469/11064090/6bf411418f62/gr1.jpg

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