Please use this identifier to cite or link to this item: http://digitalrepository.fccollege.edu.pk/handle/123456789/1239
Title: Lipodendriplexes: A promising nanocarrier for enhanced gene delivery with minimal cytotoxicity
Authors: Tariq, Imran
Pinnapireddy, , Shashank Reddy
Duse, Lili
Ali, Muhammad Yasir
Ali, Sajid
Amin, Muhammad Umair
Goergen, Nathalie
Jedelská, Jarmila
Schäfer, Jens
Bakowsky, Udo
Keywords: Biocompa
Liposomes
PAMAM
Dendriplexes
Transfection
Gene therapy
Issue Date: Feb-2019
Publisher: ELSEVIER
Citation: Imran Tariq, Shashank Reddy Pinnapireddy, Lili Duse, Muhammad Yasir Ali, Sajid Ali, Muhammad Umair Amin, Nathalie Goergen, Jarmila Jedelská, Jens Schäfer, Udo Bakowsky, Lipodendriplexes: A promising nanocarrier for enhanced gene delivery with minimal cytotoxicity, European Journal of Pharmaceutics and Biopharmaceutics, Volume 135, 2019, Pages 72-82, ISSN 0939-6411, https://doi.org/10.1016/j.ejpb.2018.12.013.
Series/Report no.: European Journal of Pharmaceutics and Biopharmaceutics Volume 135, February 2019, Pages 72-82;
Abstract: Non-viral vectors are a safe, efficient and non-toxic alternative to viral vectors for gene therapy against many diseases ranging from genetic disorders to cancers. Polyamidoamine (PAMAM), a positively charged dendrimer has a tendency to complex with nucleic acids (to form dendriplexes) like plasmid DNA (pDNA) and small in terfering RNA (siRNA) and can shield them from enzymatic degradation, thereby facilitating endocytosis and endosomal release. In this study, we developed an advanced variant of the dendriplexes by encapsulating them within liposomes to enhance their gene delivery efficiency. This liposome encapsulated dendriplex system can further reduce unwanted cytotoxicity and enhance cellular uptake of nucleic acids. A broad range of lipid combinations were used to optimize the lipodendriplexes in terms of their physicochemical characteristics in cluding size, shape and zeta potential. The optimized lipodendriplexes were tested for pDNA transfection, in vitro cell viability, cellular uptake, siRNA mediated knockdown, hemocompatibility, metastatic progression and in ovo in chorioallantoic membrane model (CAM). The optimized system has shown significant improvement in pDNA transfection (p < 0.01) with higher GFP expression and gene silencing and has shown improved cell viability (p < 0.05) compared to the parent dendriplex system. The hemocompatibility and CAM analysis, revealed an efficient yet biocompatible gene delivery system in the form of lipodendriplexes.
Description: https://www.sciencedirect.com/science/article/abs/pii/S093964111831124X
URI: http://localhost:8080/xmlui/handle/123456789/1239
Appears in Collections:Pharmacy Department



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