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Main Authors: Sabin, Juan, Vázquez-Vázquez, M.C. (María del Carmen), Prieto, Gerardo, Bordi, Federico, Sarmiento, Felix
Format: Recurso digital
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Published: Zenodo 2012
Online Access:https://doi.org/10.1021/la3019259
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author Sabin, Juan
Vázquez-Vázquez, M.C. (María del Carmen)
Prieto, Gerardo
Bordi, Federico
Sarmiento, Felix
author_facet Sabin, Juan
Vázquez-Vázquez, M.C. (María del Carmen)
Prieto, Gerardo
Bordi, Federico
Sarmiento, Felix
contents <p>The study of the interaction of a cationic polymer as PEI with phospholipids membranes is of special relevance for gene therapy because the PEI is a potential nonviral vector to transfer DNA in living cells. We used light scattering, zeta potential, and electron transmission microscopy to characterize the interaction between DMPG and DOPC liposomes with PEI as a function of the charge molar ratio, pH, temperature, initial size of the liposomes, and headgroup of the lipids. Unexpectedly, a double charge inversion and two different ranges of PEI–liposome concentrations where an aggregation occurs were found, when the proper pH and initial size of the liposomes were chosen. The interaction is analyzed in terms of the interaction potential proposed by Velegol and Thwar for colloidal particles with a nonuniform surface charge distribution. Results show a remarkable dependence of the stability on pH and the initial size of the liposomes, which explains the low reproducibility of the experiments if no special care is taken in preparing the samples. Comparatively small changes in the pH or in the liposomes size lead to a completely different stability behavior.</p>
format Recurso digital
id zenodo_https___doi_org_10_1021_la3019259
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publishDate 2012
publisher Zenodo
record_format zenodo
spellingShingle Double Charge Inversion in Polyethylenimine-Decorated Liposomes
Sabin, Juan
Vázquez-Vázquez, M.C. (María del Carmen)
Prieto, Gerardo
Bordi, Federico
Sarmiento, Felix
<p>The study of the interaction of a cationic polymer as PEI with phospholipids membranes is of special relevance for gene therapy because the PEI is a potential nonviral vector to transfer DNA in living cells. We used light scattering, zeta potential, and electron transmission microscopy to characterize the interaction between DMPG and DOPC liposomes with PEI as a function of the charge molar ratio, pH, temperature, initial size of the liposomes, and headgroup of the lipids. Unexpectedly, a double charge inversion and two different ranges of PEI–liposome concentrations where an aggregation occurs were found, when the proper pH and initial size of the liposomes were chosen. The interaction is analyzed in terms of the interaction potential proposed by Velegol and Thwar for colloidal particles with a nonuniform surface charge distribution. Results show a remarkable dependence of the stability on pH and the initial size of the liposomes, which explains the low reproducibility of the experiments if no special care is taken in preparing the samples. Comparatively small changes in the pH or in the liposomes size lead to a completely different stability behavior.</p>
title Double Charge Inversion in Polyethylenimine-Decorated Liposomes
url https://doi.org/10.1021/la3019259