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Near-infrared spectroscopic studies of self-forming lipids and nanovesicles

机译:自形成脂质和纳米囊泡的近红外光谱研究

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Lipids and liposomes have remained an active research topic for several decades due to their significance as membrane model. Several vibrational spectroscopic techniques have been developed and employed to study the properties of lipids and liposomes. In this study, near-infrared (NIR) spectroscopy has been used to analyze a suite of synthesized PEGylated lipids trademarked as QuSomes™. The three amphiphiles used in this study, differ in their apolar hydrophobic chain length and contain various units of polar polyethylene glycol (PEG) head groups. In contrast to conventional phospholipids, this new kind of lipids forms liposomes spontaneously upon hydration, without the supply of external activation energy. Whilst the NIR spectra of QuSomes™ show a common pattern, differences in the spectra are observed which enable the lipids to be distinguished. NIR absorption spectra of these new artificial lipids have been recorded in the spectral range of 4800-9000 cm~(-1) (~2100-1100 nm) by using a new miniaturized spectrometer based on micro-optical-electro-mechanical systems (MOEMS) technology. In particular, we have established specific band structures as "molecular fingerprints" corresponding to overtones and combinations vibrational modes involving mainly C-H and O-H functional groups for sample analysis of QuSomes~™. Moreover, we have demonstrated that the nanovesicles formed by such lipids in polar solvents show high stability and obey Beer's law at low concentration. The results reported in this study may find applications in various field including the development of lipids based drug delivery systems.
机译:由于脂质和脂质体作为膜模型的重要性,几十年来一直是活跃的研究主题。已经开发了几种振动光谱技术并将其用于研究脂质和脂质体的性质。在这项研究中,近红外(NIR)光谱已用于分析一组商标为QuSomes™的合成PEG化脂质。本研究中使用的三种两亲物的非极性疏水链长度不同,并且包含各种单元的极性聚乙二醇(PEG)头基。与常规磷脂相反,这种新型脂质在水合作用时自发形成脂质体,而无需提供外部活化能。尽管QuSomes™的NIR光谱显示出共同的模式,但观察到光谱差异可以区分脂质。通过使用基于微光机电系统的新型小型光谱仪(MOEMS),在4800-9000 cm〜(-1)(〜2100-1100 nm)的光谱范围内记录了这些新的人造脂质的NIR吸收光谱。 )技术。尤其是,我们建立了特定的能带结构作为“分子指纹”,对应于泛音和主要包括C-H和O-H官能团的组合振动模式,用于QuSomes〜™的样品分析。此外,我们已经证明由此类脂质在极性溶剂中形成的纳米囊泡显示出高稳定性,并且在低浓度下服从比尔定律。这项研究报告的结果可能会在各个领域找到应用,包括开发基于脂质的药物递送系统。

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