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Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer

Low biological activity and inefficient targeted delivery in vivo have hindered RNA interference (RNAi)-based therapy from realising its full clinical potential. To overcome these hurdles, progresses have been made to develop new technologies optimizing oligonucleotides chemistry on one hand and ach...

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Autores principales: Orio, Julie, Bellard, Elisabeth, Baaziz, Houda, Pichon, Chantal, Mouritzen, Peter, Rols, Marie-Pierre, Teissié, Justin, Golzio, Muriel, Chabot, Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Journal of RNAi and Gene Silencing 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3717327/
https://www.ncbi.nlm.nih.gov/pubmed/23946765
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author Orio, Julie
Bellard, Elisabeth
Baaziz, Houda
Pichon, Chantal
Mouritzen, Peter
Rols, Marie-Pierre
Teissié, Justin
Golzio, Muriel
Chabot, Sophie
author_facet Orio, Julie
Bellard, Elisabeth
Baaziz, Houda
Pichon, Chantal
Mouritzen, Peter
Rols, Marie-Pierre
Teissié, Justin
Golzio, Muriel
Chabot, Sophie
author_sort Orio, Julie
collection PubMed
description Low biological activity and inefficient targeted delivery in vivo have hindered RNA interference (RNAi)-based therapy from realising its full clinical potential. To overcome these hurdles, progresses have been made to develop new technologies optimizing oligonucleotides chemistry on one hand and achieving its effective delivery on the other hand. In this report, we achieved, by using the electropulsation technique (EP), efficient cellular delivery of chemically-modified oligonucleotide: The locked nucleic acid (LNA)/DNA oligomer. We used single cell level confocal fluorescence microscopy to follow the spatial and temporal distribution of electrotransferred cyanine 5 (Cy5)-labeled LNA/DNA oligomer. We observed that EP allowed LNA/DNA oligomer cellular uptake providing the oligomer a rapid access to the cytoplasm of HeLa cells. Within a few minutes after electrotransfer, Cy5-LNA/DNA oligomers shuttle from cytoplasm to nucleus whereas in absence of pulses application, Cy5-LNA/DNA oligomers were not detected. We then observed a redistribution of the Cy5 fluorescence that accumulated over time into cytoplasmic organelles. To go further and to identify these compartments, we used the HeLa GFP-Rab7 cell line to visualise late endosomes, and lysosomal or mitochondrial specific markers. Our results showed that the EP technique allowed direct entry into the cytoplasm of the Cy5-LNA/DNA oligomer bypassing the endocytosic pathway. However, in absence of pulses application, Cy5-LNA/DNA oligomer were able to enter cells through the endocytosic pathway. We demonstrated that EP is an efficient technique for LNA-based oligonucleotides delivery offering strong advantages by avoiding the endolysosomal compartmentalization, giving a rapid and free access to the cytoplasm and the nucleus where they can find their targets.
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spelling pubmed-37173272013-08-14 Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer Orio, Julie Bellard, Elisabeth Baaziz, Houda Pichon, Chantal Mouritzen, Peter Rols, Marie-Pierre Teissié, Justin Golzio, Muriel Chabot, Sophie J RNAi Gene Silencing Research Report Low biological activity and inefficient targeted delivery in vivo have hindered RNA interference (RNAi)-based therapy from realising its full clinical potential. To overcome these hurdles, progresses have been made to develop new technologies optimizing oligonucleotides chemistry on one hand and achieving its effective delivery on the other hand. In this report, we achieved, by using the electropulsation technique (EP), efficient cellular delivery of chemically-modified oligonucleotide: The locked nucleic acid (LNA)/DNA oligomer. We used single cell level confocal fluorescence microscopy to follow the spatial and temporal distribution of electrotransferred cyanine 5 (Cy5)-labeled LNA/DNA oligomer. We observed that EP allowed LNA/DNA oligomer cellular uptake providing the oligomer a rapid access to the cytoplasm of HeLa cells. Within a few minutes after electrotransfer, Cy5-LNA/DNA oligomers shuttle from cytoplasm to nucleus whereas in absence of pulses application, Cy5-LNA/DNA oligomers were not detected. We then observed a redistribution of the Cy5 fluorescence that accumulated over time into cytoplasmic organelles. To go further and to identify these compartments, we used the HeLa GFP-Rab7 cell line to visualise late endosomes, and lysosomal or mitochondrial specific markers. Our results showed that the EP technique allowed direct entry into the cytoplasm of the Cy5-LNA/DNA oligomer bypassing the endocytosic pathway. However, in absence of pulses application, Cy5-LNA/DNA oligomer were able to enter cells through the endocytosic pathway. We demonstrated that EP is an efficient technique for LNA-based oligonucleotides delivery offering strong advantages by avoiding the endolysosomal compartmentalization, giving a rapid and free access to the cytoplasm and the nucleus where they can find their targets. Journal of RNAi and Gene Silencing 2013-03-15 /pmc/articles/PMC3717327/ /pubmed/23946765 Text en © Copyright The Author(s) http://creativecommons.org/licenses/by-nc/2.5 Published by Library Publishing Media. This is an open access article, published under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5). This license permits non-commercial use, distribution and reproduction of the article, provided the original work is appropriately acknowledged with correct citation details.
spellingShingle Research Report
Orio, Julie
Bellard, Elisabeth
Baaziz, Houda
Pichon, Chantal
Mouritzen, Peter
Rols, Marie-Pierre
Teissié, Justin
Golzio, Muriel
Chabot, Sophie
Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer
title Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer
title_full Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer
title_fullStr Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer
title_full_unstemmed Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer
title_short Sub-cellular temporal and spatial distribution of electrotransferred LNA/DNA oligomer
title_sort sub-cellular temporal and spatial distribution of electrotransferred lna/dna oligomer
topic Research Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3717327/
https://www.ncbi.nlm.nih.gov/pubmed/23946765
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