The synergy between structural stability and DNA-binding controls the antibody production in EPC/DOTAP/DOPE liposomes and DOTAP/DOPE lipoplexes


Autoria(s): TORRE, Lucimara Gaziola de la; ROSADA, Rogerio Silva; TROMBONE, Ana Paula Favaro; FRANTZ, Fabiani Gai; COELHO-CASTELO, Arlete A. M.; SILVA, Celio Lopes; SANTANA, Maria Helena Andrade
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

19/10/2012

19/10/2012

2009

Resumo

We present a comparative study of the physico-chemical properties, in vitro cytotoxicity and in vivo antibody production of surface-complexed DNA in EPC/DOTAP/DOPE (50/25/25% molar) liposomes and DOTAP/DOPE (50/50% molar) lipoplexes. The study aims to correlate the biological behavior and structural properties of the lipid carriers. We used DNA-hsp65, whose naked action as a gene vaccine against tuberculosis has already been demonstrated. Additionally, surface-complexed DNA-hsp65 in EPC/DOTAP/DOPE (50/25/25% molar) liposomes was effective as a single-dose tuberculosis vaccine. The results obtained showed that the EPC inclusion stabilized the DOTAP/DOPE structure, producing higher melting temperature and lower zeta potential despite a close mean hydrodynamic diameter. Resemblances in morphologies were identified in both structures, although a higher fraction of loaded DNA was not electrostatically bound in EPC/DOTAP/DOPE. EPC also induced a striking reduction in cytotoxicity, similar to naked DNA-hsp65. The proper immune response lead to a polarized antibody production of the IgG2a isotype, even for the cytotoxic DOTAP/DOPE. However, the antibody production was detected at 15 and 30 days for DOTAP/DOPE and EPC/DOTAP/DOPE, respectively. Therefore, the in vivo antibody production neither correlates with the in vitro cytotoxicity, nor with the structural stability alone. The synergistic effect of the structural stability and DNA electrostatic binding upon the surface of structures account for the immunological effects. By adjusting the composition to generate proper packing and cationic lipid/DNA interaction, we allow for the optimization of liposome formulations for required immunization or gene therapy. In a specific manner, our results contribute to studies on the tuberculosis therapy and vaccination. (C) 2009 Elsevier B.V. All rights reserved.

Fundacao de Auxilio a Pesquisa de Sao Paulo (FAPESP)

Identificador

COLLOIDS AND SURFACES B-BIOINTERFACES, v.73, n.2, p.175-184, 2009

0927-7765

http://producao.usp.br/handle/BDPI/23774

10.1016/j.colsurfb.2009.05.013

http://dx.doi.org/10.1016/j.colsurfb.2009.05.013

Idioma(s)

eng

Publicador

ELSEVIER SCIENCE BV

Relação

Colloids and Surfaces B-biointerfaces

Direitos

closedAccess

Copyright ELSEVIER SCIENCE BV

Palavras-Chave #Cationic liposomes #DNA delivery #Cytotoxicity #Gene vaccine #DNA-hsp65 #Lipoplexes #INVERTED HEXAGONAL PHASE #MEDIATED GENE-TRANSFER #TRANSFECTION EFFICIENCY #CATIONIC LIPIDS #PHYSICAL-PROPERTIES #PLASMID DNA #COMPLEXES #DELIVERY #TUBERCULOSIS #TOXICITY #Biophysics #Chemistry, Physical #Materials Science, Biomaterials
Tipo

article

original article

publishedVersion