硅醇
吸附
溶解度
溶解
化学工程
分子
解吸
药物输送
药品
纳米技术
材料科学
化学
催化作用
有机化学
组合化学
心理学
工程类
精神科
作者
Zhuo Xu,Changliang Zhu,Hongchuan Shen,Yuan Liu,Jiashen Tang,David A. Weitz,Lei Xu
标识
DOI:10.1073/pnas.2423426122
摘要
We develop a technology based on competitive adsorption between drug molecules and water, specifically designed to address the critical issue of poor drug solubility. By specially engineering silica nanosurfaces with ultrahigh densities of silanol, we significantly enhance their affinity for both drug molecules and water, with a notably greater increase in water affinity. Such surfaces can effectively adsorb a variety of drug molecules under dry conditions. Upon exposure to water, these surfaces preferentially bind to water molecules, initiating a competitive adsorption process with the drug molecules. This competitive process turns water molecules from obstacles into catalysts for drug dissolution by actively displacing drug molecules from the surface, causing their rapid desorption and potentially enhancing their solubility by two to three orders of magnitude. The method is general, applicable to a wide array of drugs, stable for long-time storage, cost-effective, and scalable for mass production. Consequently, it has the potential to emerge as a next-generation platform for drug formulation and delivery.
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