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Interactions of ibuprofen with hybrid lipid bilayers probed by complementary surface-enhanced vibrational spectroscopies

机译:布洛芬与杂化脂质双层的相互作用通过互补表面增强振动光谱法探测

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摘要

The incorporation of small molecules into lipid bilayers is a process of biological importance and clinical relevance that can change the material properties of cell membranes and cause deleterious side effects for certain drugs. Here we report the direct observation, using surface enhanced Raman and IR spectroscopies (SERS, SEIRA), of the insertion of ibuprofen molecules into hybrid lipid bilayers. The alkanethiol-phospholipid hybrid bilayers were formed onto gold nanoshells by self-assembly, where the underlying nanoshell substrates provided the necessary enhancements for SERS and SEIRA. The spectroscopic data reveal specific interactions between ibuprofen and phospholipid moieties and indicate that the overall hydrophobicity of ibuprofen plays an important role in its intercalation in these membrane mimics.
机译:将小分子掺入脂质双分子层是生物学重要性和临床相关性的过程,其可改变细胞膜的材料特性并引起某些药物的有害副作用。在这里,我们报告使用表面增强拉曼光谱和红外光谱(SERS,SEIRA)对布洛芬分子插入杂化脂质双层中的直接观察。烷硫醇-磷脂杂化双层通过自组装形成在金纳米壳上,其中下面的纳米壳底物为SERS和SEIRA提供了必要的增强。光谱数据揭示了布洛芬和磷脂部分之间的特定相互作用,并表明布洛芬的总体疏水性在其插入这些膜模拟物中扮演重要角色。

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