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Physicochemical characterizations of functional hybrid liposomal nanocarriers formed using photo-sensitive lipids

机译:使用光敏脂质形成的功能性杂化脂质体纳米载体的物理化学特征

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With recent advances in the field of diagnostics and theranostics, liposomal technology has secured a fortified position as a potential nanocarrier. Specifically, radiation/photo-sensitive liposomes containing photo-polymerizable cross-linking lipids are intriguing as they can impart the vesicles with highly interesting properties such as response to stimulus and improved shell stability. In this work, 1,2-bis(10,12-tricosadiynoyl)-sn-glycero-3-phosphoethanolamine (DTPE) is used as a photo-polymerizable lipid to form functional hybrid-liposomes as it can form intermolecular cross-linking through the diacetylenic groups. Hybrid-liposomes were formulated using mixtures of DTPE and saturated lipids of different chain lengths (dipalmitoylphosphatidylcholine (DPPC) and dimirystoilphosphatidylcholine (DMPC)) at different molar ratios. The physico-chemical characteristics of the liposomes has been studied before and after UV irradiation using a combination of techniques: DSC, QCM-D and solid-state NMR. The results signify the importance of a subtle modification in alkyl chain length on the phase behavior of the hybrid-liposomes and on the degree of crosslinking in the shell.
机译:随着诊断诊断和治疗技术领域的进展,脂质体技术已经将强化位置固定为潜在的纳米载体。具体地,含有光聚合的交联脂质的辐射/光敏脂质体是有趣的,因为它们可以赋予具有高度有趣性质的囊泡,例如对刺激的反应和改善的壳稳定性。在这项工作中,使用1,2-BIS(10,12-三胞嘧啶酰亚二酰乙醇胺(DTPE)用作光聚合的脂质,形成功能性杂交 - 脂质体,因为它可以形成分子间交联通过二乙炔基。使用不同链长(Dipalmitoylpholline(DPPC)和二维基磷脂磷酰胆碱(DMPC)的DTPE和饱和脂质的混合物配制杂化 - 脂质体以不同的摩尔比配制。使用技术的组合:DSC,QCM-D和固态NMR之前和之后研究了脂质体的物理化学特性。结果表示烷基链长度对杂交 - 脂质体的相行为和壳中交联度的重要性。

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