An in situ gelling liquid crystalline system based on monoglycerides and polyethylenimine for local delivery of siRNAs

Publication date

2015-07-10

Authors

Borgheti-Cardoso, Lívia Neves
Depieri, Lívia Vieira
Kooijmans, SAAORCID 0000-0002-8893-9578
Diniz, Henrique
Calzzani, Ricardo Alexandre Junqueira
De Carvalho Vicentini, Fabiana Testa Moura
van der Meel, RoyISNI 0000000419514423
De Abreu Fantini, Márcia Carvalho
Iyomasa, Mamie Mizusaki
Schiffelers, RaymondORCID 0000-0002-1012-9815ISNI 0000000045237985

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Document Type

Article
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Abstract

The development of delivery systems able to complex and release siRNA into the cytosol is essential for therapeutic use of siRNA. Among the delivery systems, local delivery has advantages over systemic administration. In this study, we developed and characterized non-viral carriers to deliver siRNA locally, based on polyethylenimine (PEI) as gene carrier, and a self-assembling drug delivery system that forms a gel in situ. Liquid crystalline formulations composed of monoglycerides (MO), PEI, propylene glycol (PG) and 0.1 M Tris buffer pH 6.5 were developed and characterized by polarized light microscopy, Small Angle X-ray Scattering (SAXS), for their ability to form inverted type liquid crystalline phases (LC<inf>2</inf>) in contact with excess water, water absorption capacity, ability to complex with siRNA and siRNA release. In addition, gel formation in vivo was determined by subcutaneous injection of the formulations in mice. In water excess, precursor fluid formulations rapidly transformed into a viscous liquid crystalline phase. The presence of PEI influences the liquid crystalline structure of the LC<inf>2</inf> formed and was crucial for complexing siRNA. The siRNA was released from the crystalline phase complexed with PEI. The release rate was dependent on the rate of water uptake. The formulation containing MO/PEI/PG/Tris buffer at 7.85:0.65:76.5:15 (w/w/w/w) complexed with 10 μM of siRNA, characterized as a mixture of cubic phase (diamond-type) and inverted hexagonal phase (after contact with excess water), showed sustained release for 7 days in vitro. In mice, in situ gel formation occurred after subcutaneous injection of the formulations, and the gels were degraded in 30 days. Initially a mild inflammatory process occurred in the tissue surrounding the gel; but after 14 days the tissue appeared normal. Taken together, this work demonstrates the rational development of an in situ gelling formulation for local release of siRNA.

Keywords

Liquid crystal, Local release, Non-viral gene delivery, Self-assembly, siRNA, Taverne, Pharmaceutical Science

Citation

Borgheti-Cardoso, L N, Depieri, L V, Kooijmans, S, Diniz, H, Calzzani, R A J, De Carvalho Vicentini, F T M, van der Meel, R, De Abreu Fantini, M C, Iyomasa, M M, Schiffelers, R & Bentley, M V L B 2015, 'An in situ gelling liquid crystalline system based on monoglycerides and polyethylenimine for local delivery of siRNAs', European Journal of Pharmaceutical Sciences, vol. 74, pp. 103-117. https://doi.org/10.1016/j.ejps.2015.04.017