Article
Cyclodextrin-based facial amphiphiles: Assessing the impact of the hydrophilic-lipophilic balance in the self-assembly, DNA complexation and gene delivery capabilities
Author/s | Pflueger, Iris
Charrat, Coralie Ortiz Mellet, Carmen ![]() ![]() ![]() ![]() ![]() ![]() ![]() García Fernández, José Manuel Di Giorgio, Christophe Benito, Juan M. |
Date | 2016 |
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Abstract | Exhaustive structure–efficacy relationship studies on nonviral gene delivery systems are often hampered by the ill-defined or polydisperse nature of the formulations. Facial amphiphiles based on rigid cage-type molecular ... Exhaustive structure–efficacy relationship studies on nonviral gene delivery systems are often hampered by the ill-defined or polydisperse nature of the formulations. Facial amphiphiles based on rigid cage-type molecular scaffolds offer unique possibilities towards these studies. Taking advantage of regioselective functionalization schemes, we have synthesized a library of cationic cyclodextrin (CD) derivatives combining a range of hydrophilic and lipophilic domains. We have scrutinized how the hydrophilic–lipophilic balance (HLB) around the CD scaffold determines their self-assembly capabilities and the DNA binding and release abilities of the corresponding CD[thin space (1/6-em)]:[thin space (1/6-em)]DNA nanocomplexes (CDplexes). These features have been ultimately correlated with their capabilities to deliver a reporter luciferase-encoding pDNA into COS-7 cells. The ensemble of results demonstrates that fine tuning of the HLB is critical to induce compaction of DNA by the CD-based facial amphiphiles into transfection-productive CDplexes. |
Funding agencies | Ministerio de Economía y Competitividad (MINECO). España Junta de Andalucía |
Citation | Pflueger, I., Charrat, C., Ortiz Mellet, C., García Fernández, J.M., Di Giorgio, C. y Benito, J.M. (2016). Cyclodextrin-based facial amphiphiles: Assessing the impact of the hydrophilic-lipophilic balance in the self-assembly, DNA complexation and gene delivery capabilities. Organic and Biomolecular Chemistry, 14, 10037-10049. |
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