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Temperature-controlled Raman microscopy to study the phase behavior of synthetic PEGylated lipids and nanovesicles

机译:温控拉曼显微镜研究合成的聚乙二醇化脂质和纳米囊泡的相行为

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The study of phase transitions in lipids is important to understand various phenomena such as conformational order, trans-membrane diffusion, vesicle formation and fusion as well as drug-and protein-membrane interactions. Several techniques, including Raman spectroscopy, have previously been employed to investigate the phase behaviour of lipids. In this work, temperature-controlled Raman microscopy has been used to detect and analyze the phase transitions in two newly developed synthetic PEGylated lipids trademarked as QuSomes~(TM) and its nanovesicles in phosphate buffered saline (PBS) suspension. The amphiphiles considered in this study differ in their hydrophobic chain length and contain different units of polyethylene glycol (PEG) hydrophilic head groups. Raman spectra of these new artificial lipids and its nanovesicles have been recorded in the spectral range of 500-3100 cm~(-1) by using a temperature-controlled sample holder attached to a Raman microscope. The gel to liquid-crystalline phase transitions of the sample lipids, composed of pure l,2-dimyristoyl-rac-glycerol-3-dodecaethylene glycol (GDM-12) and l,2-distearoyl-rac-glycerol-3-triicosaethylene glycol (GDS-23), have been detected by examining the changes in Raman spectra of the lipids caused by temperature variation. In the liquid phase both of the studied lipids spontaneously form liposomes (nanovesicles) upon hydration. In this study, we have demonstrated the efficacy of the temperature-controlled Raman microscope system to reveal the main phase transition temperature (T_m) profiles of our sample lipids and its nanovesicles in PBS suspension. The phase changes are detected by plotting peak intensity ratios in the C-H stretching region (~I_(2935/I_(2883)) versus temperature. These ratios correlate with lateral or inter-chain interactions as well as intra-molecular interactions. In particular, we have found that phase transitions occur at a temperature of approximately 5.2 °C and 21.2 °C for pure GDM-12 and GDS-23, respectively. However, the phase transition temperature becomes significantly higher for lipid nanovesicles formed in aqueous suspensions. Such information about these PEG coated lipids might find applications in various studies including the development of lipid based novel substances and drug delivery systems.
机译:脂质中相变的研究对于理解各种现象非常重要,例如构象顺序,跨膜扩散,囊泡形成和融合以及药物和蛋白质膜相互作用。先前已采用包括拉曼光谱在内的多种技术来研究脂质的相行为。在这项工作中,温度受控的拉曼显微镜已被用于检测和分析两种新开发的,商标为QuSomesTM的合成PEG化脂质及其纳米囊在磷酸盐缓冲液(PBS)悬浮液中的相变。本研究中考虑的两亲物的疏水链长度不同,并且包含不同单元的聚乙二醇(PEG)亲水性头基。这些新的人造脂质及其纳米囊泡的拉曼光谱已通过使用连接到拉曼显微镜的温度控制样品架在500-3100 cm〜(-1)的光谱范围内记录。由纯l,2-二肉豆蔻酰基-rac-甘油-3-十二烷基乙二醇(GDM-12)和l,2-二硬脂酰基-rac-甘油-3-三聚乙二醇组成的样品脂质的凝胶-液晶相变(GDS-23),已通过检查由温度变化引起的脂质的拉曼光谱变化来检测。在液相中,两种研究的脂质在水合后自发形成脂质体(小囊泡)。在这项研究中,我们证明了温控拉曼显微镜系统揭示PBS悬浮液中样品脂质及其纳米囊泡的主要相变温度(T_m)谱的功效。通过绘制CH拉伸区域的峰强度比(〜I_(2935 / I_(2883))与温度的关系来检测相变,这些比值与横向或链间相互作用以及分子内相互作用相关。我们发现纯GDM-12和GDS-23分别在约5.2°C和21.2°C的温度下发生相变,但是,在水悬浮液中形成的脂质纳米囊泡的相变温度变得更高。关于这些PEG包被的脂质的研究可能在各种研究中得到应用,包括基于脂质的新物质和药物递送系统的开发。

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