Department of Chemical and Pharmaceutical Sciences, University of Trieste, via L. Giorgieri 1, 34127 Trieste, Italy.
School of Chemical Sciences, Dublin City University (DCU), Dublin, Ireland.
Int J Mol Sci. 2020 Sep 16;21(18):6804. doi: 10.3390/ijms21186804.
Catanionic vesicles are emerging interesting structures for bioapplications. They self-generate by a pairing of oppositely charged ionic surfactants that assemble into hollow structures. Specifically, the anionic-cationic surfactant pair assumes a double-tailed zwitterionic behavior. In this work, the multilamellar-to-unilamellar thermal transition of several mixed aqueous systems, with a slight excess of the anionic one, were investigated. Interestingly, it was found that the anionic counterion underwent a dissociation as a consequence of a temperature increase, leading to the mentioned thermal transition. The present work proposed the spectroscopic techniques, specifically multinuclear NMR and PGSTE (pulsed gradient stimulated echo), as a key tool to study such systems, with high accuracy and effectiveness, while requiring a small amount of the sample. The results presented herein evidence encouraging perspectives, forecasting the application of the studied vesicular nanoreservoirs, for e.g., drug delivery.
混合双离子囊泡是一类新兴的具有生物应用潜力的结构。它们通过带相反电荷的离子型表面活性剂自组装形成中空结构。具体来说,阴离子-阳离子表面活性剂对呈现出双尾两性离子的行为。在这项工作中,研究了几种混合水相体系的多层到单层热转变,其中阴离子略有过量。有趣的是,发现随着温度的升高,阴离子反离子发生解离,导致了上述热转变。本工作提出了光谱技术,特别是多核 NMR 和 PGSTE(脉冲梯度激发回波),作为研究此类体系的关键工具,具有高精度和高效率,同时仅需要少量样品。本文所呈现的结果具有令人鼓舞的前景,预测了所研究的囊泡纳米储库在药物输送等方面的应用。