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纳米粒子综述:从分类到应用和毒性。

A Comprehensive Review of Nanoparticles: From Classification to Application and Toxicity.

机构信息

Department of Molecular Biology and Genetics, Çanakkale Onsekiz Mart University, Çanakkale 17000, Türkiye.

Department of Food Biotechnology, Medical University of Bialystok, 15-089 Bialystok, Poland.

出版信息

Molecules. 2024 Jul 25;29(15):3482. doi: 10.3390/molecules29153482.

Abstract

Nanoparticles are structures that possess unique properties with high surface area-to-volume ratio. Their small size, up to 100 nm, and potential for surface modifications have enabled their use in a wide range of applications. Various factors influence the properties and applications of NPs, including the synthesis method and physical attributes such as size and shape. Additionally, the materials used in the synthesis of NPs are primary determinants of their application. Based on the chosen material, NPs are generally classified into three categories: organic, inorganic, and carbon-based. These categories include a variety of materials, such as proteins, polymers, metal ions, lipids and derivatives, magnetic minerals, and so on. Each material possesses unique attributes that influence the activity and application of the NPs. Consequently, certain NPs are typically used in particular areas because they possess higher efficiency along with tenable toxicity. Therefore, the classification and the base material in the NP synthesis hold significant importance in both NP research and application. In this paper, we discuss these classifications, exemplify most of the major materials, and categorize them according to their preferred area of application. This review provides an overall review of the materials, including their application, and toxicity.

摘要

纳米粒子是具有高表面积与体积比的特殊性质的结构。其小尺寸(可达 100nm)和潜在的表面修饰能力,使它们能够在广泛的应用中使用。各种因素影响 NPs 的性质和应用,包括合成方法和物理属性,如大小和形状。此外,用于合成 NPs 的材料是其应用的主要决定因素。基于所选材料,NPs 通常分为三类:有机、无机和碳基。这些类别包括各种材料,如蛋白质、聚合物、金属离子、脂质及其衍生物、磁性矿物质等。每种材料都具有独特的属性,影响 NPs 的活性和应用。因此,某些 NPs 通常用于特定领域,因为它们具有更高的效率和可承受的毒性。因此,在 NP 研究和应用中,NP 的分类和合成基础材料具有重要意义。本文讨论了这些分类,举例说明了大部分主要材料,并根据其首选应用领域对它们进行了分类。本综述全面介绍了这些材料,包括它们的应用和毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58f4/11314082/aa0661a55a36/molecules-29-03482-g003.jpg

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