Cargando…

Pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cDNA and siRNA

BACKGROUND: Haplosclerid marine sponges produce pore forming polyalkylpyridinium salts (poly-APS), which can be used to deliver macromolecules into cells. The aim of this study was to investigate the delivery of DNA, siRNA and lucifer yellow into cells mediated by poly-APS and its potential mechanis...

Descripción completa

Detalles Bibliográficos
Autores principales: McLaggan, Debra, Adjimatera, Noppadon, Sepčić, Kristina, Jaspars, Marcel, MacEwan, David J, Blagbrough, Ian S, Scott, Roderick H
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1361793/
https://www.ncbi.nlm.nih.gov/pubmed/16412248
http://dx.doi.org/10.1186/1472-6750-6-6
_version_ 1782126727212826624
author McLaggan, Debra
Adjimatera, Noppadon
Sepčić, Kristina
Jaspars, Marcel
MacEwan, David J
Blagbrough, Ian S
Scott, Roderick H
author_facet McLaggan, Debra
Adjimatera, Noppadon
Sepčić, Kristina
Jaspars, Marcel
MacEwan, David J
Blagbrough, Ian S
Scott, Roderick H
author_sort McLaggan, Debra
collection PubMed
description BACKGROUND: Haplosclerid marine sponges produce pore forming polyalkylpyridinium salts (poly-APS), which can be used to deliver macromolecules into cells. The aim of this study was to investigate the delivery of DNA, siRNA and lucifer yellow into cells mediated by poly-APS and its potential mechanisms as compared with other lipofection systems (lipofectamine and N(4),N(9)-dioleoylspermine (LipoGen)). DNA condensation was evaluated and HEK 293 and HtTA HeLa cells were used to investigate pore formation and intracellular delivery of cDNA, siRNA and lucifer yellow. RESULTS: Poly-APS and LipoGen were both found to be highly efficient DNA condensing agents. Fura-2 calcium imaging was used to measure calcium transients indicative of cell membrane pore forming activity. Calcium transients were evoked by poly-APS but not LipoGen and lipofectamine. The increases in intracellular calcium produced by poly-APS showed temperature sensitivity with greater responses being observed at 12°C compared to 21°C. Similarly, delivery of lucifer yellow into cells with poly-APS was enhanced at lower temperatures. Transfection with cDNA encoding for the expression enhanced green fluorescent protein was also evaluated at 12°C with poly-APS, lipofectamine and LipoGen. Intracellular delivery of siRNA was achieved with knockdown in beta-actin expression when lipofectamine and LipoGen were used as transfection reagents. However, intracellular delivery of siRNA was not achieved with poly-APS. CONCLUSION: Poly-APS mediated pore formation is critical to its activity as a transfection reagent, but lipofection systems utilise distinct mechanisms to enable delivery of DNA and siRNA into cells.
format Text
id pubmed-1361793
institution National Center for Biotechnology Information
language English
publishDate 2006
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-13617932006-02-09 Pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cDNA and siRNA McLaggan, Debra Adjimatera, Noppadon Sepčić, Kristina Jaspars, Marcel MacEwan, David J Blagbrough, Ian S Scott, Roderick H BMC Biotechnol Research Article BACKGROUND: Haplosclerid marine sponges produce pore forming polyalkylpyridinium salts (poly-APS), which can be used to deliver macromolecules into cells. The aim of this study was to investigate the delivery of DNA, siRNA and lucifer yellow into cells mediated by poly-APS and its potential mechanisms as compared with other lipofection systems (lipofectamine and N(4),N(9)-dioleoylspermine (LipoGen)). DNA condensation was evaluated and HEK 293 and HtTA HeLa cells were used to investigate pore formation and intracellular delivery of cDNA, siRNA and lucifer yellow. RESULTS: Poly-APS and LipoGen were both found to be highly efficient DNA condensing agents. Fura-2 calcium imaging was used to measure calcium transients indicative of cell membrane pore forming activity. Calcium transients were evoked by poly-APS but not LipoGen and lipofectamine. The increases in intracellular calcium produced by poly-APS showed temperature sensitivity with greater responses being observed at 12°C compared to 21°C. Similarly, delivery of lucifer yellow into cells with poly-APS was enhanced at lower temperatures. Transfection with cDNA encoding for the expression enhanced green fluorescent protein was also evaluated at 12°C with poly-APS, lipofectamine and LipoGen. Intracellular delivery of siRNA was achieved with knockdown in beta-actin expression when lipofectamine and LipoGen were used as transfection reagents. However, intracellular delivery of siRNA was not achieved with poly-APS. CONCLUSION: Poly-APS mediated pore formation is critical to its activity as a transfection reagent, but lipofection systems utilise distinct mechanisms to enable delivery of DNA and siRNA into cells. BioMed Central 2006-01-16 /pmc/articles/PMC1361793/ /pubmed/16412248 http://dx.doi.org/10.1186/1472-6750-6-6 Text en Copyright © 2006 McLaggan et al; licensee BioMed Central Ltd.
spellingShingle Research Article
McLaggan, Debra
Adjimatera, Noppadon
Sepčić, Kristina
Jaspars, Marcel
MacEwan, David J
Blagbrough, Ian S
Scott, Roderick H
Pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cDNA and siRNA
title Pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cDNA and siRNA
title_full Pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cDNA and siRNA
title_fullStr Pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cDNA and siRNA
title_full_unstemmed Pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cDNA and siRNA
title_short Pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cDNA and siRNA
title_sort pore forming polyalkylpyridinium salts from marine sponges versus synthetic lipofection systems: distinct tools for intracellular delivery of cdna and sirna
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1361793/
https://www.ncbi.nlm.nih.gov/pubmed/16412248
http://dx.doi.org/10.1186/1472-6750-6-6
work_keys_str_mv AT mclaggandebra poreformingpolyalkylpyridiniumsaltsfrommarinespongesversussyntheticlipofectionsystemsdistincttoolsforintracellulardeliveryofcdnaandsirna
AT adjimateranoppadon poreformingpolyalkylpyridiniumsaltsfrommarinespongesversussyntheticlipofectionsystemsdistincttoolsforintracellulardeliveryofcdnaandsirna
AT sepcickristina poreformingpolyalkylpyridiniumsaltsfrommarinespongesversussyntheticlipofectionsystemsdistincttoolsforintracellulardeliveryofcdnaandsirna
AT jasparsmarcel poreformingpolyalkylpyridiniumsaltsfrommarinespongesversussyntheticlipofectionsystemsdistincttoolsforintracellulardeliveryofcdnaandsirna
AT macewandavidj poreformingpolyalkylpyridiniumsaltsfrommarinespongesversussyntheticlipofectionsystemsdistincttoolsforintracellulardeliveryofcdnaandsirna
AT blagbroughians poreformingpolyalkylpyridiniumsaltsfrommarinespongesversussyntheticlipofectionsystemsdistincttoolsforintracellulardeliveryofcdnaandsirna
AT scottroderickh poreformingpolyalkylpyridiniumsaltsfrommarinespongesversussyntheticlipofectionsystemsdistincttoolsforintracellulardeliveryofcdnaandsirna