Mucosal vaccine delivery of antigens tightly bound to an adjuvant particle made from food-grade bacteria

被引:102
作者
van Roosmalen, ML
Kanninga, R
El Khattabi, M
Neef, J
Audouy, S
Bosma, T
Kuipers, A
Post, E
Steen, A
Kok, J
Buist, G
Kuipers, OP
Robillard, G
Leenhouts, K
机构
[1] BiOMaDe Technol Fdn, NL-9747 AG Groningen, Netherlands
[2] Univ Groningen, Dept Genet, Groningen Biomol Sci & Biotechnol Inst, NL-9751 NN Haren, Netherlands
关键词
mucosal vaccine; gram-positive enhancer matrix; Lactococcus lactis; protein anchor; LysM; bacterial particle; surface display;
D O I
10.1016/j.ymeth.2005.09.015
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Mucosal immunization with subunit vaccines requires new types of antigen delivery vehicles and adjuvants for optimal immune responses. We have developed a non-living and non-genetically modified gram-positive bacterial delivery particle (GEM) that has built-in adjuvant activity and a high loading capacity for externally added heterologous antigens that are fused to a high affinity binding domain. This binding domain, the protein anchor (PA), is derived from the Lactococcus lactis AcmA cell-wall hydrolase, and contains three repeats of a LysM-type cell-wall binding motif. Antigens are produced as antigen-PA fusions by recombinant expression systems that secrete the hybrid proteins into the culture growth medium. GEM particles are then used as affinity beads to isolate the antigen-PA fusions from the complex growth media in a one step procedure after removal of the recombinant producer cells. This procedure is also highly suitable for making multivalent vaccines. The resulting vaccines are stable at room temperature, lack recombinant DNA, and mimic pathogens by their bacterial size, surface display of antigens and adjuvant activity of the bacterial components in the GEM particles. The GEM-based vaccines do not require additional adjuvant for eliciting high levels of specific antibodies in mucosal and systemic compartments. (c) 2005 Elsevier Inc. All rights reserved.
引用
收藏
页码:144 / 149
页数:6
相关论文
共 31 条
[1]   The structure of a LysM domain from E-coli membrane-bound lytic murein transglycosylase D (MltD) [J].
Bateman, A ;
Bycroft, M .
JOURNAL OF MOLECULAR BIOLOGY, 2000, 299 (04) :1113-1119
[2]   Novel surface display system for proteins on non-genetically modified gram-positive bacteria [J].
Bosma, T ;
Kanninga, R ;
Neef, J ;
Audouy, SAL ;
van Roosmalen, ML ;
Steen, A ;
Buist, G ;
Kok, J ;
Kuipers, OP ;
Robillard, G ;
Leenhouts, K .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2006, 72 (01) :880-889
[3]   MOLECULAR-CLONING AND NUCLEOTIDE-SEQUENCE OF THE GENE ENCODING THE MAJOR PEPTIDOGLYCAN HYDROLASE OF LACTOCOCCUS-LACTIS, A MURAMIDASE NEEDED FOR CELL-SEPARATION [J].
BUIST, G ;
KOK, J ;
LEENHOUTS, KJ ;
DABROWSKA, M ;
VENEMA, G ;
HAANDRIKMAN, AJ .
JOURNAL OF BACTERIOLOGY, 1995, 177 (06) :1554-1563
[4]  
BUIST G, 1997, THESIS ENSCHEDE
[5]   Nasal vaccines [J].
Davis, SS .
ADVANCED DRUG DELIVERY REVIEWS, 2001, 51 (1-3) :21-42
[6]   Controlled gene expression systems for Lactococcus lactis with the food-grade inducer nisin [J].
deRuyter, PGGA ;
Kuipers, OP ;
deVos, WM .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1996, 62 (10) :3662-3667
[7]   New strategies for combination vaccines based on the extended recombinant bacterial ghost system [J].
Eko, FO ;
Witte, A ;
Huter, V ;
Kuen, B ;
Fürst-Ladani, S ;
Haslberger, A ;
Katinger, A ;
Hensel, A ;
Szostak, MP ;
Resch, S ;
Mader, H ;
Raza, P ;
Brand, E ;
Marchart, J ;
Jechlinger, W ;
Haidinger, W ;
Lubitz, W .
VACCINE, 1999, 17 (13-14) :1643-1649
[8]  
GASSON MJ, 1983, J BACTERIOL, V154, P1
[9]  
Holo H, 1995, Methods Mol Biol, V47, P195
[10]  
JORIS B, 1992, FEMS MICROBIOL LETT, V91, P257