Mucosal Adjuvanticity of a Shigella Invasin Complex with DNA-Based Vaccines

被引:17
|
作者
Kaminski, Robert W. [1 ]
Turbyfill, K. Ross [1 ]
Chao, C. [2 ]
Ching, W. M. [2 ]
Oaks, Edwin V. [1 ]
机构
[1] Walter Reed Army Inst Res, Div Bacterial & Rickettsial Dis, Silver Spring, MD 20910 USA
[2] USN, Rickettsial Dis Res Program, Med Res Ctr, Silver Spring, MD 20910 USA
关键词
IMMUNODEFICIENCY-VIRUS TYPE-1; EPITHELIAL-CELLS; MOLECULAR-CLONING; RICKETTSIA-TSUTSUGAMUSHI; MONOCLONAL-ANTIBODIES; CATIONIC LIPOSOMES; ESCHERICHIA-COLI; IMMUNE-RESPONSES; PROTEIN ANTIGEN; IPA INVASINS;
D O I
10.1128/CVI.00435-08
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Protection against many infectious diseases may require the induction of cell-mediated and mucosal immunity. Immunization with plasmid DNA-based vaccines has successfully induced cell-mediated immune responses in small animals but is less potent in humans. Therefore, several methods are under investigation to augment DNA vaccine immunogenicity. In the current study, a mucosal adjuvant consisting of an invasin protein-lipopolysaccharide complex (Invaplex) isolated from Shigella spp. was evaluated as an adjuvant for DNA-based vaccines. Coadministration of plasmid DNA encoding the Orientia tsutsugamushi r56Karp protein with Invaplex resulted in enhanced cellular and humoral responses in intranasally immunized mice compared to immunization with DNA without adjuvant. Mucosal immunoglobulin A, directed to plasmid-encoded antigen, was detected in lung and intestinal compartments after Invaplex-DNA immunization followed by a protein booster. Moreover, immunization with Invaplex elicited Shigella-specific immune responses, highlighting its potential use in a combination vaccine strategy. The capacity of Invaplex to enhance the immunogenicity of plasmid-encoded genes suggested that Invaplex promoted the uptake and expression of the delivered genes. To better understand the native biological activities of Invaplex related to its adjuvanticity, interactions between Invaplex and mammalian cells were characterized. Invaplex rapidly bound to and was internalized by non-phagocytic, eukaryotic cells in an endocytic process dependent on actin polymerization and independent of microtubule formation. Invaplex also mediated transfection with several plasmid DNA constructs, which could be inhibited with monoclonal antibodies specific for IpaB and IpaC or Invaplex-specific polyclonal sera. The cellular binding and transport capabilities of Invaplex likely contribute to the adjuvanticity and immunogenicity of Invaplex.
引用
收藏
页码:574 / 586
页数:13
相关论文
共 50 条
  • [21] DNA-based influenza vaccines as immunoprophylactic agents toward universality
    Zhang, Han
    El Zowalaty, Mohamed E.
    FUTURE MICROBIOLOGY, 2016, 11 (01) : 153 - 164
  • [22] Mucosal immunization with DNA vaccines
    McCluskie, MJ
    Davis, HL
    MICROBES AND INFECTION, 1999, 1 (09) : 685 - 698
  • [23] Mucosal immunization with DNA vaccines
    Hobson, P
    Barnfield, C
    Barnes, A
    Klavinskis, LS
    METHODS, 2003, 31 (03) : 217 - 224
  • [24] Improving DNA-Based therapeutics and vaccines by adapting intragenic CpG content
    Leikam, Doris
    Notka, Frank
    Wagner, Ralf
    HUMAN GENE THERAPY, 2007, 18 (10) : 1021 - 1021
  • [25] DNA-based vaccines for multiple sclerosis: Current status and future directions
    Fissolo, Nicolas
    Montalban, Xavier
    Comabella, Manuel
    CLINICAL IMMUNOLOGY, 2012, 142 (01) : 76 - 83
  • [26] DNA-based vaccines protect against zoonotic schistosomiasis in water buffalo
    Da'Dara, Akram A.
    Li, Yuesheng S.
    Xiong, Tie
    Zhou, Jie
    Williams, Gail M.
    McManus, Donald R.
    Feng, Zheng
    Yu, Xin L.
    Gray, Darren J.
    Harn, Donald A.
    VACCINE, 2008, 26 (29-30) : 3617 - 3625
  • [27] DNA-based influenza vaccines: Evaluating their potential to provide universal protection
    Choo, Andrew Y.
    Broderick, Kate E.
    Kim, J. Joseph
    Sardesai, Niranjan Y.
    IDRUGS, 2010, 13 (10) : 707 - 712
  • [28] Attenuated Salmonella and Shigella as carriers for DNA vaccines
    Xu, F
    Ulmer, JB
    JOURNAL OF DRUG TARGETING, 2004, 11 (8-10) : 481 - 488
  • [29] Virus-like particle and DNA-based candidate AIDS vaccines
    Yao, QZ
    Bu, ZG
    Vzorov, A
    Yang, CL
    Compans, RW
    VACCINE, 2003, 21 (7-8) : 638 - 643
  • [30] Electroporation for the Delivery of DNA-based Vaccines and Immunotherapeutics: Current Clinical Developments
    Bodles-Brakhop, Angela M.
    Heller, Richard
    Draghia-Akli, Ruxandra
    MOLECULAR THERAPY, 2009, 17 (04) : 585 - 592