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通过X射线光电子能谱(XPS)对纳米复合物进行表面分析。

Surface Analysis of Nanocomplexes by X-ray Photoelectron Spectroscopy (XPS).

作者信息

Korin Efrat, Froumin Natalya, Cohen Smadar

机构信息

Avram and Stella Goldstein-Goren Department of Biotechnology Engineering, ‡Department of Materials Engineering, §The Ilse Katz Institute for Nanoscale Science and Technology, and ∥Regenerative Medicine and Stem Cell (RMSC) Research Center, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.

Avram and Stella Goldstein-Goren Department of Biotechnology Engineering, Department of Materials Engineering, §The Ilse Katz Institute for Nanoscale Science and Technology, and ∥Regenerative Medicine and Stem Cell (RMSC) Research Center, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.

出版信息

ACS Biomater Sci Eng. 2017 Jun 12;3(6):882-889. doi: 10.1021/acsbiomaterials.7b00040. Epub 2017 May 7.

Abstract

Self-assembled nanocomplexes composed of individual molecules that spontaneously connect via noncovalent interactions have recently emerged as versatile alternatives to conventional controlled drug delivery systems because of their unique bioinspired properties (responsiveness, dynamics, etc.). Characterization of such nanocomplexes typically includes their size distribution, surface charge, morphology, drug entrapment efficiency, and verification of the coexistence of labeled components within the nanocomplexes using a colocalization study. Less common is the direct examination of the molecular interactions between the different components in the coassembled nanocomplex, especially in nanocomplexes composed of hygroscopic components, because convenient methods are still lacking. Here, we present a detailed experimental protocol for determining the surface composition and the chemical bonds by X-ray photoelectron spectroscopy (XPS) after drying the deposit hygroscopic sample overnight under UHV. We applied this method to investigate the surface chemistry of binary Ca-siRNA nanocomplexes and ternary nanocomplexes of hyaluronan-sulfate (HAS)-Ca-siRNA, deposited on a wafer. Notably, we showed that the protocol can be implemented to study the surface composition and interactions of the deposited nanocomplexes with a traditional XPS instrument, and it requires only a relatively small amount of the nanocomplex suspension.

摘要

由单个分子通过非共价相互作用自发连接而成的自组装纳米复合物,由于其独特的仿生特性(响应性、动力学等),最近已成为传统控释药物递送系统的通用替代品。此类纳米复合物的表征通常包括其尺寸分布、表面电荷、形态、药物包封效率,以及使用共定位研究验证纳米复合物中标记成分的共存情况。对共组装纳米复合物中不同成分之间的分子相互作用进行直接检测则不太常见,尤其是在由吸湿成分组成的纳米复合物中,因为仍然缺乏便捷的方法。在此,我们展示了一种详细的实验方案,即在超高真空下将吸湿样品过夜干燥后,通过X射线光电子能谱(XPS)测定表面组成和化学键。我们应用此方法研究了沉积在晶片上的二元钙-小干扰RNA(siRNA)纳米复合物以及透明质酸硫酸盐(HAS)-钙-siRNA三元纳米复合物的表面化学。值得注意的是,我们表明该方案可用于使用传统XPS仪器研究沉积纳米复合物的表面组成和相互作用,并且仅需要相对少量的纳米复合物悬浮液。

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