The role of helper lipids in the intracellular disposition and transfection efficiency of niosome formulations for gene delivery to retinal pigment epithelial cells

Ojeda, E; Puras, G; Agirre, M; Zarate, J; Grijalvo, S; Eritja, R; Digiacomo, L; Caracciolo, G; Pedraz, JL

HERO ID

4968978

Reference Type

Journal Article

Year

2016

Language

English

PMID

26956159

HERO ID 4968978
In Press No
Year 2016
Title The role of helper lipids in the intracellular disposition and transfection efficiency of niosome formulations for gene delivery to retinal pigment epithelial cells
Authors Ojeda, E; Puras, G; Agirre, M; Zarate, J; Grijalvo, S; Eritja, R; Digiacomo, L; Caracciolo, G; Pedraz, JL
Journal International Journal of Pharmaceutics
Volume 503
Issue 1-2
Page Numbers 115-126
Abstract In this work, we carried out a comparative study of four different niosome formulations based on the same cationic lipid and non-ionic tensoactive. The niosomes prepared by oil-in-water emulsion technique (o/w) only differed in the helper lipid composition: squalene, cholesterol, squalane or no helper lipid. Niosomes and nioplexes elaborated upon the addition of pCMS-EGFP reporter plasmid were characterized in terms of size, zeta potential and polydispersity index. The capacity of the niosomes to condense, release and protect the DNA against enzymatic degradation was evaluated by agarose gel electrophoresis. In vitro experiments were carried out to evaluate transfection efficiency and cell viability in retinal pigment epithelial cells. Moreover, uptake and intracellular trafficking studies were performed to further understand the role of the helper lipids in the transfection process. Interestingly, among all tested formulations, niosomes elaborated with squalene as helper lipid were the most efficient transfecting cells. Such transfection efficiency could be attributed to their higher cellular uptake and the particular entry pathways used, where macropinocytosis pathway and lysosomal release played an important role. Therefore, these results suggest that helper lipid composition is a crucial step to be considered in the design of niosome formulation for retinal gene delivery applications since clearly modulates the cellular uptake, internalization mechanism and consequently, the final transfection efficiency.
Doi 10.1016/j.ijpharm.2016.02.043
Pmid 26956159
Wosid WOS:000372815600012
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English