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

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Abstract

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.

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Kumar Pramanik, S., Losada-Pérez, P., Reekmans, G., Carleer, R., D’Olieslaeger, M., Vanderzande, D., … Ethirajan, A. (2017). Physicochemical characterizations of functional hybrid liposomal nanocarriers formed using photo-sensitive lipids. Scientific Reports, 7. https://doi.org/10.1038/srep46257

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