Literature DB >> 12010483

Comparative efficacy of the Schistosoma mansoni nucleic acid vaccine, Sm23, following microseeding or gene gun delivery.

Akram A Da'dara1, Patrick J Skelly, Mufaddal Fatakdawala, Scott Visovatti, Elof Eriksson, Donald A Harn.   

Abstract

Sm23 is an integral membrane protein expressed widely in the human parasitic worm Schistosoma mansoni. Sm23 has already been shown to elicit protective immune responses following immunization with peptides or DNA constructs. In this study, we evaluated the immunogenicity and the protective efficacy of the Sm23 DNA vaccine using two different intradermal DNA delivery methods: microseeding and gene gun. Using both techniques, all mice immunized with the Sm23-pcDNA construct generated Sm23-specific immunoglobulin (Ig)G antibody, while mice immunized with the control plasmid, pcDNA, did not. Antibody isotypes analysis revealed that microseeding elicited mainly IgG2a and IgG2b antibodies, with relatively low levels of IgG1 and IgG3. The relative IgG1/IgG2a ratio was 0.03, indicative of a Th1 type immune response. In contrast, gene gun immunization resulted in significantly higher levels of IgG1 and IgG3. The relative IgG1/IgG2a ratio in this case was 11, indicative of a Th2 type immune response. No significant difference in the levels of IgG2b was observed. Coimmunization with plasmid DNA encoding either interleukin (IL)-12 or IL-4 by microseeding did not affect the levels of IgG1, while the levels of IgG2a and IgG2b were reduced. On the other hand, the levels of IgG3 were significantly increased by IL-4, but unchanged by IL-12. Importantly, in all experiments, the Sm23-pcDNA vaccine provided statistically significant levels of protection against challenge infection. Microseeding immunizations resulted in higher levels of protection (31-34% protection) than gene gun immunization (18% protection). This suggests that the Th1 type immune response elicited by microseeding immunization was responsible for the higher protection levels. However, the protective effect of the vaccine was not affected by coadministering plasmids encoding either IL-12 or IL-4 using the microseeding technique.

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Year:  2002        PMID: 12010483     DOI: 10.1046/j.1365-3024.2002.00453.x

Source DB:  PubMed          Journal:  Parasite Immunol        ISSN: 0141-9838            Impact factor:   2.280


  12 in total

1.  Induction of protective immunity against Schistosoma mansoni via DNA priming and boosting with the large subunit of calpain (Sm-p80): adjuvant effects of granulocyte-macrophage colony-stimulating factor and interleukin-4.

Authors:  Afzal A Siddiqui; Troy Phillips; Hugues Charest; Ron B Podesta; Martha L Quinlin; Justin R Pinkston; Jenny D Lloyd; Michelle Paz; Rachael M Villalovos; Janet Pompa
Journal:  Infect Immun       Date:  2003-07       Impact factor: 3.441

2.  Construction and expression of DNA vaccine pIRES-Sj97-Sj14-Sj26 and its immunogenicity in mice.

Authors:  Shuojie Liu; Jizhong Cheng; Chengwu Tang
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2007-12

3.  DNA-based vaccines protect against zoonotic schistosomiasis in water buffalo.

Authors:  Akram A Da'dara; Yuesheng S Li; Tie Xiong; Jie Zhou; Gail M Williams; Donald P McManus; Zheng Feng; Xin L Yu; Darren J Gray; Donald A Harn
Journal:  Vaccine       Date:  2008-05-19       Impact factor: 3.641

Review 4.  Experimental vaccines in animal models for schistosomiasis.

Authors:  Afzal A Siddiqui; Gul Ahmad; Raymond T Damian; Ronald C Kennedy
Journal:  Parasitol Res       Date:  2008-02-08       Impact factor: 2.289

5.  Molecular characterization of a tetraspanin from the human liver fluke, Opisthorchis viverrini.

Authors:  Supawadee Piratae; Smarn Tesana; Malcolm K Jones; Paul J Brindley; Alex Loukas; Erica Lovas; Veerachai Eursitthichai; Banchob Sripa; Sirikanda Thanasuwan; Thewarach Laha
Journal:  PLoS Negl Trop Dis       Date:  2012-12-06

6.  Mapping the binding between the tetraspanin molecule (Sjc23) of Schistosoma japonicum and human non-immune IgG.

Authors:  Chuang Wu; Pengfei Cai; Qiaocheng Chang; Lili Hao; Shuai Peng; Xiaojing Sun; Huijun Lu; Jigang Yin; Ning Jiang; Qijun Chen
Journal:  PLoS One       Date:  2011-04-20       Impact factor: 3.240

Review 7.  Computational vaccinology: an important strategy to discover new potential S. mansoni vaccine candidates.

Authors:  Carina S Pinheiro; Vicente P Martins; Natan R G Assis; Bárbara C P Figueiredo; Suellen B Morais; Vasco Azevedo; Sergio C Oliveira
Journal:  J Biomed Biotechnol       Date:  2011-10-15

Review 8.  Interaction Between the Neglected Tropical Disease Human Schistosomiasis and HCV Infection in Egypt: a Puzzling Relationship.

Authors:  Mahmoud M Bahgat
Journal:  J Clin Transl Hepatol       Date:  2014-06-15

9.  Gene gun bombardment with DNA-coated golden particles enhanced the protective effect of a DNA vaccine based on thioredoxin glutathione reductase of Schistosoma japonicum.

Authors:  Yan Cao; Bin Zhao; Yanhui Han; Juan Zhang; Xuezhen Li; Chunhui Qiu; Xiujuan Wu; Yang Hong; Dezhou Ai; Jiaojiao Lin; Zhiqiang Fu
Journal:  Biomed Res Int       Date:  2012-12-31       Impact factor: 3.411

10.  Cysteine peptidases as schistosomiasis vaccines with inbuilt adjuvanticity.

Authors:  Rashika El Ridi; Hatem Tallima; Sahar Selim; Sheila Donnelly; Sophie Cotton; Bibiana Gonzales Santana; John P Dalton
Journal:  PLoS One       Date:  2014-01-21       Impact factor: 3.240

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