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Viscous Core Liposomes Increase siRNA Encapsulation and Provides Gene Inhibition When Slightly Positively Charged

Since its discovery, evidence that siRNA was able to act as an RNA interference effector, led to its acceptation as a novel medicine. The siRNA approach is very effective, due to its catalytic mechanism, but still the limitations of its cellular delivery should be addressed. One promising form of no...

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Autores principales: Ahmed, Shayan, Salmon, Hugo, Distasio, Nicholas, Do, Hai Doan, Scherman, Daniel, Alhareth, Khair, Tabrizian, Maryam, Mignet, Nathalie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8066317/
https://www.ncbi.nlm.nih.gov/pubmed/33916066
http://dx.doi.org/10.3390/pharmaceutics13040479
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author Ahmed, Shayan
Salmon, Hugo
Distasio, Nicholas
Do, Hai Doan
Scherman, Daniel
Alhareth, Khair
Tabrizian, Maryam
Mignet, Nathalie
author_facet Ahmed, Shayan
Salmon, Hugo
Distasio, Nicholas
Do, Hai Doan
Scherman, Daniel
Alhareth, Khair
Tabrizian, Maryam
Mignet, Nathalie
author_sort Ahmed, Shayan
collection PubMed
description Since its discovery, evidence that siRNA was able to act as an RNA interference effector, led to its acceptation as a novel medicine. The siRNA approach is very effective, due to its catalytic mechanism, but still the limitations of its cellular delivery should be addressed. One promising form of non-viral gene delivery system is liposomes. The variable and versatile nature of the lipids keeps the possibility to upgrade the liposomal structure, which makes them suitable for encapsulation and delivery of drugs. However, to avoid the limitation of fast release for the hydrophilic drug, we previously designed viscous core liposomes. We aimed in this work to evaluate if these viscous core liposomes (NvcLs) could be of interest for siRNA encapsulation. Then, we sought to add a limited amount of positive charges to provide cell interaction and transfection. Cationic lipid dimyristoylaminopropylaminopropyl or the polymer poly(ethylenimine) were incorporated in NvcL to produce positively charged viscous core liposomes (PvcL) by a customized microfluidic device. We found that NvcLs increased the encapsulation efficiency and loading content with regards to the neutral liposome. Both PvcL(PEI) and PvcL(DMAPAP) exhibited transfection and GFP knock-down (≈40%) in both 2D and 3D cell cultures. Finally, the addition of slight positive charges did not induce cell toxicity.
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spelling pubmed-80663172021-04-25 Viscous Core Liposomes Increase siRNA Encapsulation and Provides Gene Inhibition When Slightly Positively Charged Ahmed, Shayan Salmon, Hugo Distasio, Nicholas Do, Hai Doan Scherman, Daniel Alhareth, Khair Tabrizian, Maryam Mignet, Nathalie Pharmaceutics Article Since its discovery, evidence that siRNA was able to act as an RNA interference effector, led to its acceptation as a novel medicine. The siRNA approach is very effective, due to its catalytic mechanism, but still the limitations of its cellular delivery should be addressed. One promising form of non-viral gene delivery system is liposomes. The variable and versatile nature of the lipids keeps the possibility to upgrade the liposomal structure, which makes them suitable for encapsulation and delivery of drugs. However, to avoid the limitation of fast release for the hydrophilic drug, we previously designed viscous core liposomes. We aimed in this work to evaluate if these viscous core liposomes (NvcLs) could be of interest for siRNA encapsulation. Then, we sought to add a limited amount of positive charges to provide cell interaction and transfection. Cationic lipid dimyristoylaminopropylaminopropyl or the polymer poly(ethylenimine) were incorporated in NvcL to produce positively charged viscous core liposomes (PvcL) by a customized microfluidic device. We found that NvcLs increased the encapsulation efficiency and loading content with regards to the neutral liposome. Both PvcL(PEI) and PvcL(DMAPAP) exhibited transfection and GFP knock-down (≈40%) in both 2D and 3D cell cultures. Finally, the addition of slight positive charges did not induce cell toxicity. MDPI 2021-04-01 /pmc/articles/PMC8066317/ /pubmed/33916066 http://dx.doi.org/10.3390/pharmaceutics13040479 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ahmed, Shayan
Salmon, Hugo
Distasio, Nicholas
Do, Hai Doan
Scherman, Daniel
Alhareth, Khair
Tabrizian, Maryam
Mignet, Nathalie
Viscous Core Liposomes Increase siRNA Encapsulation and Provides Gene Inhibition When Slightly Positively Charged
title Viscous Core Liposomes Increase siRNA Encapsulation and Provides Gene Inhibition When Slightly Positively Charged
title_full Viscous Core Liposomes Increase siRNA Encapsulation and Provides Gene Inhibition When Slightly Positively Charged
title_fullStr Viscous Core Liposomes Increase siRNA Encapsulation and Provides Gene Inhibition When Slightly Positively Charged
title_full_unstemmed Viscous Core Liposomes Increase siRNA Encapsulation and Provides Gene Inhibition When Slightly Positively Charged
title_short Viscous Core Liposomes Increase siRNA Encapsulation and Provides Gene Inhibition When Slightly Positively Charged
title_sort viscous core liposomes increase sirna encapsulation and provides gene inhibition when slightly positively charged
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8066317/
https://www.ncbi.nlm.nih.gov/pubmed/33916066
http://dx.doi.org/10.3390/pharmaceutics13040479
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