RGD-decorated cholesterol stabilized polyplexes for targeted siRNA delivery to glioblastoma cells

Publication date

2019-06-15

Authors

Lou, BoISNI 0000000492910633
Connor, Kate
Sweeney, Kieron
Miller, Ian S.
O’Farrell, Alice
Ruiz-Hernandez, EduardoISNI 0000000507301583
Murray, David M.
Duffy, Garry P.
Wolfe, Alan
Mastrobattista, EnricoORCID 0000-0002-6745-2015ISNI 000000035187179X

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Article
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Abstract

The development of an effective and safe treatment for glioblastoma (GBM) represents a significant challenge in oncology today. Downregulation of key mediators of cell signal transduction by RNA interference is considered a promising treatment strategy but requires efficient, intracellular delivery of siRNA into GBM tumor cells. Here, we describe novel polymeric siRNA nanocarriers functionalized with cRGD peptide that mediates targeted and efficient reporter gene silencing in U87R invasive human GBM cells. The polymer was synthesized via RAFT copolymerization of N-(2-hydroxypropyl)-methacrylamide (HPMA) and N-acryloxysuccinimide (NAS), followed by post-polymerization modification with cholesterol for stabilization, cationic amines for siRNA complexation, and azides for copper-free click chemistry. The novel resultant cationic polymer harboring a terminal cholesterol group, self-assembled with siRNA to yield nanosized polyplexes (~ 40 nm) with good colloidal stability at physiological ionic strength. Post-modification of the preformed polyplexes with PEG-cRGD end-functionalized with bicyclo[6.1.0]nonyne (BCN) group resulted in enhanced cell uptake and increased luciferase gene silencing in U87R cells, compared to polyplexes lacking cRGD-targeting groups.

Keywords

Cancer targeting, Cholesterol modification, cRGD peptide, Glioblastoma, siRNA delivery, Pharmaceutical Science, SDG 3 - Good Health and Well-being

Citation

Lou, B, Connor, K, Sweeney, K, Miller, I S, O’Farrell, A, Ruiz-Hernandez, E, Murray, D M, Duffy, G P, Wolfe, A, Mastrobattista, E, Byrne, A T & Hennink, W E 2019, 'RGD-decorated cholesterol stabilized polyplexes for targeted siRNA delivery to glioblastoma cells', Drug Delivery and Translational Research, vol. 9, no. 3, pp. 679-693. https://doi.org/10.1007/s13346-019-00637-y