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新型方法可改善基于二氧化硅纳米颗粒的药物传递系统的特性表征。

New methods for improved characterization of silica nanoparticle-based drug delivery systems.

机构信息

Northwestern University Atomic and Nanoscale Characterization Experimental (NUANCE) Center, Northwestern University , 2220 Campus Drive, Evanston, Illinois 60208, United States.

出版信息

Langmuir. 2013 Dec 10;29(49):15386-93. doi: 10.1021/la402493q. Epub 2013 Nov 25.

Abstract

The incorporation of silica nanoparticles into drug delivery vehicles, and other nanotech platforms, has experienced rapid and significant growth over the past decade. However, as these nanoparticle-based systems become more and more complex, the methods used to analyze these systems have evolved at a comparatively much slower pace, resulting in the need for researchers to expand their toolbox and devise new strategies to characterize these materials. This article describes how X-ray photoelectron spectroscopy (XPS) and time-of-flight secondary ion mass spectrometry (ToF-SIMS) were recently employed in the analysis of two separate drug delivery systems which contain organic compounds covalently attached to the surfaces of silica nanoparticles. These techniques provided a deluge of qualitative and quantitative information about these drug delivery systems, and have several clear advantages over more common characterization procedures such as Fourier transform infrared spectroscopy (FT-IR) and solid state nuclear magnetic resonance (SSNMR). Thus, XPS and ToF-SIMS should be an integral component of the standard characterization protocol for any nanoparticle-based assemblies-particularly silica-based drug delivery systems-as this field of research continues to develop.

摘要

在过去十年中,将硅纳米粒子纳入药物输送载体和其他纳米技术平台的研究取得了快速而显著的增长。然而,随着这些基于纳米粒子的系统变得越来越复杂,用于分析这些系统的方法的发展速度相对要慢得多,这导致研究人员需要扩展他们的工具包并设计新的策略来表征这些材料。本文描述了 X 射线光电子能谱(XPS)和飞行时间二次离子质谱(ToF-SIMS)如何最近被用于分析两个含有共价附着在硅纳米粒子表面的有机化合物的单独药物输送系统。这些技术提供了关于这些药物输送系统的大量定性和定量信息,并且与更常见的表征程序(如傅里叶变换红外光谱(FT-IR)和固态核磁共振(SSNMR))相比具有几个明显的优势。因此,XPS 和 ToF-SIMS 应该是任何基于纳米粒子的组装体(特别是基于硅的药物输送系统)的标准表征方案的一个组成部分,因为该研究领域仍在不断发展。

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