Antigen co-encapsulated with adjuvants efficiently drive protective T cell immunity

被引:105
作者
Heit, Antje
Schmitz, Frank
Haas, Tobias
Busch, Dirk H.
Wagner, Hermann
机构
[1] Tech Univ Munich, Inst Med Microbiol Immunol & Hyg, D-81675 Munich, Germany
[2] GSF Munich, Clin Res Grp Antigen Specif Immunotherapy, Munich, Germany
关键词
dendritic cells; T cells; vaccination;
D O I
10.1002/eji.200737169
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Compared to "live" vaccines, the immunogenicity of "subunit" vaccines based on recombinant antigen (Ag) is poor, presumably because exogenous Ag fails to effectively access the endosomal Ag-processing pathways of Ag-presenting cells (APC). To overcome this limitation, we exploited biodegradable poly(lactic-co-glycolic) microspheres (MP) co-entrapping Ag and Toll-like receptor (TLR) 9 or 7 ligands as an endosomal delivery device. In vitro, microspheres were rapidly phagocytosed by APC and translocated into phago-endosomal compartments, followed by degradation of the Ag and concurrent activation of endosomal TLR. As a consequence, full maturation of and cytokine secretion by APC as well as Ag-cross-presentation ensued. In vivo, "loaded" microspheres triggered clonal expansion of primary and secondary Ag-specific CD4 and CD8 T cells. The efficacy of CD8 T cell cross-priming was comparable to that of live vectors. The potency of T cell vaccination was demonstrated by protective and therapeutic interventions using infection- and tumor-model systems. These preclinical "subunit" vaccination data thus recommend MP as a generally applicable and powerful endosomal delivery device of exogenous Ag plus TLR-based adjuvants to vaccinate for protective and therapeutic CD4 and CD8 T cell immunity.
引用
收藏
页码:2063 / 2074
页数:12
相关论文
共 55 条
[31]   Vaccination of melanoma patients with peptide- or tumor lysate-pulsed dendritic cells [J].
Nestle, FO ;
Alijagic, S ;
Gilliet, M ;
Sun, YS ;
Grabbe, S ;
Dummer, R ;
Burg, G ;
Schadendorf, D .
NATURE MEDICINE, 1998, 4 (03) :328-332
[32]   Microparticle-based technologies for vaccines [J].
O'Hagan, Derek T. ;
Singh, Manmohan ;
Ulmer, Jeffrey B. .
METHODS, 2006, 40 (01) :10-19
[33]   Microparticles for the delivery of DNA vaccines [J].
O'Hagan, DT ;
Singh, M ;
Ulmer, JB .
IMMUNOLOGICAL REVIEWS, 2004, 199 (01) :191-200
[34]   Immune responses to Listeria monocytogenes [J].
Pamer, EG .
NATURE REVIEWS IMMUNOLOGY, 2004, 4 (10) :812-823
[35]   Flow analysis of MHC molecules and other membrane proteins in isolated phagosomes [J].
Ramachandra, L ;
Sramkoski, RM ;
Canaday, DH ;
Boom, WH ;
Harding, CV .
JOURNAL OF IMMUNOLOGICAL METHODS, 1998, 213 (01) :53-71
[36]  
RAMON G., 1926, ANN INST PASTEUR, V40, P1
[37]   CLONED CYTO-TOXIC T-CELLS RECOGNIZE AN EPITOPE IN THE CIRCUMSPOROZOITE PROTEIN AND PROTECT AGAINST MALARIA [J].
ROMERO, P ;
MARYANSKI, JL ;
CORRADIN, G ;
NUSSENZWEIG, RS ;
NUSSENZWEIG, V ;
ZAVALA, F .
NATURE, 1989, 341 (6240) :323-326
[38]   Interferon-regulatory-factor 1 controls Toll-like receptor 9-mediated IFN-β production in myeloid dendritic cells [J].
Schmitz, Frank ;
Heit, Antje ;
Guggemoos, Simone ;
Krug, Anne ;
Mages, Joerg ;
Schiemann, Matthias ;
Adler, Heiko ;
Drexler, Ingo ;
Haas, Tobias ;
Lang, Roland ;
Wagner, Hermann .
EUROPEAN JOURNAL OF IMMUNOLOGY, 2007, 37 (02) :315-327
[39]   Enhanced and prolonged cross-presentation following endosomal escape of exogenous antigens encapsulated in biodegradable nanoparticles [J].
Shen, H ;
Ackerman, AL ;
Cody, V ;
Giodini, A ;
Hinson, ER ;
Cresswell, P ;
Edelson, RL ;
Saltzman, WM ;
Hanlon, DJ .
IMMUNOLOGY, 2006, 117 (01) :78-88
[40]  
Sparwasser T, 2000, EUR J IMMUNOL, V30, P3591, DOI 10.1002/1521-4141(200012)30:12<3591::AID-IMMU3591>3.0.CO