首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Silica-Based Materials as Drug Adsorbents: First Principle Investigation on the Role of Water Microsolvation on Ibuprofen Adsorption
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Silica-Based Materials as Drug Adsorbents: First Principle Investigation on the Role of Water Microsolvation on Ibuprofen Adsorption

机译:二氧化硅基材料作为药物吸附剂:水微溶剂化对布洛芬吸附作用的第一个原理研究

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摘要

Silica-based materials find applications as excipients and, particularly for those of mesoporous nature, as drug delivery agents for pharmaceutical formulations. Their performance can be crucially affected by water moisture, as it can modify the behavior of these formulations, by limiting their shelf life. Here we describe the role of water microsolvation on the features of ibuprofen adsorbed on a model of amorphous silica surface by means of density functional theory (DFT) simulations. Starting from the results of the simulation of ibuprofen in interaction with a dry hydrophobic amorphous silica surface, a limited number of water molecules has been added to study the configurational landscape of the microsolvated system. Structural and energetics properties, as well as the role of dispersive forces, have been investigated. Our simulations have revealed that the silica surface exhibits a higher affinity for water than for ibuprofen, even if several structures coexist at room temperature, with an active competition of ibuprofen and water for the exposed surface silanols. Dispersive interactions play a key role in this system, as pure DFT fails to correctly describe its potential energy surface. Indeed, van der Waals forces are the leading contribution to adsorption, independently of whether the drug is hydrogen-bonded directly to the surface or via water molecules.
机译:二氧化硅基材料可用作赋形剂,特别是对于中孔性质的赋形剂,可用作药物制剂的药物递送剂。水的水分会严重影响其性能,因为它会通过限制其保质期来改变这些配方的性能。在这里,我们通过密度泛函理论(DFT)模拟来描述水微溶剂化对布洛芬在无定形二氧化硅表面模型上吸附特征的作用。从布洛芬与干燥的疏水性无定形二氧化硅表面相互作用的模拟结果开始,已添加了有限数量的水分子以研究微溶剂化系统的构型。已经研究了结构和能量学性质以及色散力的作用。我们的模拟表明,即使在室温下同时存在几种结构,二氧化硅表面对水的亲和力也高于对布洛芬的亲和力,并且布洛芬和水对暴露的表面硅烷醇具有竞争性。分散的相互作用在该系统中起关键作用,因为纯DFT无法正确描述其势能面。的确,范德华力是吸附的主要作用,而与药物是通过氢键直接结合在表面还是通过水分子无关。

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