Liposomal Formulations of Synthetic MUC1 Peptides: Effects of Encapsulation versus Surface Display of Peptides on Immune Responses
- 30 May 1998
- journal article
- research article
- Published by American Chemical Society (ACS) in Bioconjugate Chemistry
- Vol. 9 (4) , 451-458
- https://doi.org/10.1021/bc970183n
Abstract
Synthetic human MUC1 peptides are important candidates for therapeutic cancer vaccines. To explore whether a human MUC1 peptide BP25 (STAPPAHGVTSAPDTRPAPGSTAPP) can be rendered immunogenic by incorporation in liposomes, the effects of physical association of the peptide with liposomes on immune responses were investigated. Lipid conjugated and nonconjugated MUC1 peptides were incorporated in liposomes with a composition of distearoylphosphatidylcholine/cholesterol/dimyristoylphosphatidylglycerol (3:1:0.25, molar ratio) containing monophosphoryl lipid A (1% w/w of the total lipids). Liposomes were characterized for peptide retention by HPLC and for surface peptide display of MUC1 epitopes by flow cytometry. C57BL/6 mice were immunized with lipopeptide alone, peptide mixed with peptide-free liposomes, and peptide associated with liposomes in entrapped or surface-exposed forms. T cell proliferative responses, cytokine patterns, and antibody isotypes were studied. Results showed that immune responses were profoundly influenced by the liposome formulations. Physically associated, either encapsulated or surface-exposed, peptide liposomes elicited strong antigen-specific T cell responses, but not lipopeptide alone or peptide mixed with peptide-free liposomes. Analysis of the cytokines secreted by the proliferating T cells showed a high level of IFN-γ and undetectable levels of IL-4, indicating a T helper type 1 response. Thus, physical association of the peptide with liposomes was required for T cell proliferative responses, but the mode of association was not critical. On the other hand, the nature of the association significantly affected humoral immune responses. Only the surface-exposed peptide liposomes induced MUC1-specific antibodies. A domination of anti-MUC1 IgG2b over IgG1 (94 versus 6%) was observed. Our results support the hypothesis that different immune pathways are stimulated by different liposome formulations. This study demonstrated that a liposome delivery system could be tailored to induce either a preferential cellular or humoral immune response.Keywords
This publication has 20 references indexed in Scilit:
- Is IgG2a a good Thl marker in mice?Immunology Today, 1998
- NEUTRALIZING ANTIVIRAL B CELL RESPONSESAnnual Review of Immunology, 1997
- Analysis of Immunoglobulin Classes and Subclasses in Response to Infection of Balb/cJ and C57BL/6J Mice with Coxiella burnetiiJournal of Veterinary Medicine, Series B, 1997
- Uptake of microparticle‐adsorbed protein antigen by bone marrow‐derived dendritic cells results in up‐regulation of interleukin‐1α and interleukin‐12 p40/p35 and triggers prolonged, efficient antigen presentationEuropean Journal of Immunology, 1995
- Interleukin‐12 profoundly up‐regulates the synthesis of antigen‐specific complement‐fixing IgG2a, IgG2b and IgG3 antibody subclasses in vivoEuropean Journal of Immunology, 1995
- Liposomal adjuvanticity: Effect of encapsulation and surface-linkage on antibody production and proliferative responseInternational Journal of Immunopharmacology, 1995
- Immunogenicity of synthetic peptides related to the core peptide sequence encoded by the human MUC1 mucin gene: Effect of immunization on the growth of murine mammary adenocarcinoma cells transfected with the human MUC1 geneCancer Immunology, Immunotherapy, 1993
- Peptide Stability in Drug Development: A Comparison of Peptide Reactivity in Different Biological MediaJournal of Pharmaceutical Sciences, 1992
- Immunological adjuvants: a role for liposomesImmunology Today, 1990
- Solid Phase Peptide Synthesis. I. The Synthesis of a TetrapeptideJournal of the American Chemical Society, 1963