Liposomal co-entrapment of CD40mAb induces enhanced IgG responses against bacterial polysaccharide and protein.

Antibody against CD40 is effective in enhancing immune responses to vaccines when chemically conjugated to the vaccine antigen. Unfortunately the requirement for chemical conjugation presents some difficulties in vaccine production and quality control which are compounded when multivalent vaccines a...

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Main Authors: Caterina Hatzifoti, Andrew Bacon, Helen Marriott, Peter Laing, Andrew W Heath
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-06-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2387064?pdf=render
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spelling doaj-5e67f24610c24722b08763b3e2899fd22020-11-25T00:24:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032008-06-0136e236810.1371/journal.pone.0002368Liposomal co-entrapment of CD40mAb induces enhanced IgG responses against bacterial polysaccharide and protein.Caterina HatzifotiAndrew BaconHelen MarriottPeter LaingAndrew W HeathAntibody against CD40 is effective in enhancing immune responses to vaccines when chemically conjugated to the vaccine antigen. Unfortunately the requirement for chemical conjugation presents some difficulties in vaccine production and quality control which are compounded when multivalent vaccines are required. We explore here an alternative to chemical conjugation, involving the co-encapsulation of CD40 antibody and antigens in liposomal vehicles.Anti-mouse CD40 mAb or isotype control mAb were co-entrapped individually in cationic liposomal vehicles with pneumococcal polysaccharides or diphtheria and tetanus toxoids. Retention of CD40 binding activity upon liposomal entrapment was assessed by ELISA and flow cytometry. After subcutaneous immunization of BALB/c female mice, anti-polysaccharide and DT/TT responses were measured by ELISA. Simple co-encapsulation of CD40 antibody allowed for the retention of CD40 binding on the liposome surface, and also produced vaccines with enhanced imunogenicity. Antibody responses against both co-entrapped protein in the form of tetanus toxoid, and Streptococcus pneumoniae capsular polysaccharide, were enhanced by co-encapsulation with CD40 antibody. Surprisingly, liposomal encapsulation also appeared to decrease the toxicity of high doses of CD40 antibody as assessed by the degree of splenomegaly induced.Liposomal co-encapsulation with CD40 antibody may represent a practical means of producing more immunogenic multivalent vaccines and inducing IgG responses against polysaccharides without the need for conjugation.http://europepmc.org/articles/PMC2387064?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Caterina Hatzifoti
Andrew Bacon
Helen Marriott
Peter Laing
Andrew W Heath
spellingShingle Caterina Hatzifoti
Andrew Bacon
Helen Marriott
Peter Laing
Andrew W Heath
Liposomal co-entrapment of CD40mAb induces enhanced IgG responses against bacterial polysaccharide and protein.
PLoS ONE
author_facet Caterina Hatzifoti
Andrew Bacon
Helen Marriott
Peter Laing
Andrew W Heath
author_sort Caterina Hatzifoti
title Liposomal co-entrapment of CD40mAb induces enhanced IgG responses against bacterial polysaccharide and protein.
title_short Liposomal co-entrapment of CD40mAb induces enhanced IgG responses against bacterial polysaccharide and protein.
title_full Liposomal co-entrapment of CD40mAb induces enhanced IgG responses against bacterial polysaccharide and protein.
title_fullStr Liposomal co-entrapment of CD40mAb induces enhanced IgG responses against bacterial polysaccharide and protein.
title_full_unstemmed Liposomal co-entrapment of CD40mAb induces enhanced IgG responses against bacterial polysaccharide and protein.
title_sort liposomal co-entrapment of cd40mab induces enhanced igg responses against bacterial polysaccharide and protein.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2008-06-01
description Antibody against CD40 is effective in enhancing immune responses to vaccines when chemically conjugated to the vaccine antigen. Unfortunately the requirement for chemical conjugation presents some difficulties in vaccine production and quality control which are compounded when multivalent vaccines are required. We explore here an alternative to chemical conjugation, involving the co-encapsulation of CD40 antibody and antigens in liposomal vehicles.Anti-mouse CD40 mAb or isotype control mAb were co-entrapped individually in cationic liposomal vehicles with pneumococcal polysaccharides or diphtheria and tetanus toxoids. Retention of CD40 binding activity upon liposomal entrapment was assessed by ELISA and flow cytometry. After subcutaneous immunization of BALB/c female mice, anti-polysaccharide and DT/TT responses were measured by ELISA. Simple co-encapsulation of CD40 antibody allowed for the retention of CD40 binding on the liposome surface, and also produced vaccines with enhanced imunogenicity. Antibody responses against both co-entrapped protein in the form of tetanus toxoid, and Streptococcus pneumoniae capsular polysaccharide, were enhanced by co-encapsulation with CD40 antibody. Surprisingly, liposomal encapsulation also appeared to decrease the toxicity of high doses of CD40 antibody as assessed by the degree of splenomegaly induced.Liposomal co-encapsulation with CD40 antibody may represent a practical means of producing more immunogenic multivalent vaccines and inducing IgG responses against polysaccharides without the need for conjugation.
url http://europepmc.org/articles/PMC2387064?pdf=render
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