Protective efficacy evaluation induced by recombinant protein LHD-Sj23-GST of Schistosoma japonicum emulsified with three different adjuvants

文献类型: 外文期刊

第一作者: Zhu, Z.

作者: Zhu, Z.;Fu, Z.;Zhang, M.;Han, Y.;Hong, Y.;Li, D.;Zhao, Z.;Shi, Y.;Lin, J.;Zhu, Z.;Han, Y.;Hong, Y.;Li, X.

作者机构:

关键词: adjuvant;protective immunity;recombinant LHDSj23-GST;Schistosomiasis japonica

期刊名称:PARASITE IMMUNOLOGY ( 影响因子:2.28; 五年影响因子:3.195 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: As a complement to chemotherapy and other control approaches, the development of an effective vaccine is necessary to combat Schistosomiasis japonica that remains a serious public health problem in China. In the present study, mice were vaccinated with purified recombinant protein LHD-Sj23-GST (large hydrophilic domain of 23 kDa antigen of S.similar to japonicum fused with Sj26GST) emulsified with Freunds adjuvant (FA), Montanide ISA 206 and Montanide ISA 70M and challenged with cercariae, the protective efficacy induced by the recombinant protein was evaluated, and the LHD-Sj23-GST-specific IgG and its subtypes were determined. The result revealed that a significant worm burden reduction (58.8%, 26.3% and 54.3%; P < 0.05) was obtained in mice vaccinated with LHD-Sj23-GST emulsified with three different adjuvants compared to those mice treated with respective adjuvant only. ELISA test suggested that the high-level production of LHD-Sj23-GST-specific IgG1, IgG2a and IgG3 antibodies may participate in protecting against schistosome infection.

分类号: R5

  • 相关文献

[1]An inactivated gE-deleted pseudorabies vaccine provides complete clinical protection and reduces virus shedding against challenge by a Chinese pseudorabies variant. Wang, Jichun,Guo, Rongli,Qiao, Yongfeng,Xu, Mengwei,Wang, Zhisheng,Liu, Yamei,Gu, Yiqi,Liu, Chang,Hou, Jibo,Gu, Yiqi,Liu, Chang,Wang, Jichun,Guo, Rongli,Qiao, Yongfeng,Xu, Mengwei,Wang, Zhisheng,Liu, Yamei,Hou, Jibo. 2016

[2]CTA1: Purified and display onto gram-positive enhancer matrix (GEM) particles as mucosal adjuvant. Zhang, Yuanpeng,Yu, Xiaoming,Hou, Liting,Chen, Jin,Li, Pengcheng,Qiao, Xuwen,Zheng, Qisheng,Hou, Jibo,Zhang, Yuanpeng,Yu, Xiaoming,Hou, Liting,Chen, Jin,Li, Pengcheng,Qiao, Xuwen,Zheng, Qisheng,Hou, Jibo,Zhang, Yuanpeng,Yu, Xiaoming,Hou, Liting,Chen, Jin,Li, Pengcheng,Qiao, Xuwen,Zheng, Qisheng,Hou, Jibo. 2018

[3]Effects of different cytokines on immune responses of rainbow trout in a virus DNA vaccination model. Cao, Yongsheng,Xu, Liming,Li, Shaowu,Wang, Di,Zhao, Jingzhuang,Liu, Hongbai,Lu, Tongyan,Cao, Yongsheng,Zhang, Qiya,Feng, Jian. 2017

[4]Adjuvant Effect of Quillaja saponaria Saponin (QSS) on Protective Efficacy and IgM Generation in Turbot (Scophthalmus maximus) upon Immersion Vaccination. Wang, Yujuan,Wang, Xiuhua,Huang, Jie,Wang, Xiuhua,Huang, Jie,Li, Jun,Li, Jun,Li, Jun. 2016

[5]Lycium barbarum polysaccharides as an adjuvant for recombinant vaccine through enhancement of humoral immunity by activating Tfh cells. Su, Chun-xia,Feng-Wang,Zheng, Jie,Ling-Huang,Wang, Ning-ping,Duan, Xiang-guo,Duan, Xiang-guo,Duan, Xiang-guo,Liang, Li-jun,Fu, Xue-Yan,Yan, Ya-mei. 2014

[6]Enhancement of immune responses to Newcastle disease vaccine by a supplement of extract of Momordica cochinchinensis (Lour.) Spreng. seeds. Xiao, C.,Hu, S.,Xiao, C.,Bao, G.. 2009

[7]Salidroside liposome formulation enhances the activity of dendritic cells and immune responses. Zhao, Xiaojuan,Tao, Yang,Huang, Yee,Wang, Deyun,Hu, Yuanliang,Liu, Jiaguo,Wu, Yi,Yu, Yun,Liu, Cui,Zhao, Xiaojuan,Lu, Yu. 2013

[8]Characterization of droplet impact and deposit formation on leaf surfaces. Dong, Xiang,Yang, Xuejun,Zhu, Heping.

[9]Graphene Oxides Decorated with Carnosine as an Adjuvant To Modulate Innate Immune and Improve Adaptive Immunity in Vivo. Meng, Chunchun,Li, Chuanfeng,Chen, Zongyan,Qiu, Xusheng,Ding, Chan,Liu, Guangqing,Zhi, Xiao,Li, Chao,Chen, Di,Cui, Daxiang,Ding, Chan,Liu, Guangqing,Ma, Lijun,Lu, Hongmin.

[10]Improved neutralising antibody response against foot-and-mouth-disease virus in mice inoculated with a multi-epitope peptide vaccine using polyinosinic and poly-cytidylic acid as an adjuvant. Cao, Yimei,Lu, Zengjun,Li, Pinghua,Sun, Pu,Fu, Yuanfang,Bai, Xingwen,Bao, Huifang,Chen, Yingli,Li, Dong,Liu, Zaixin. 2012

[11]SjHSP70, a recombinant Schistosoma japonicum heat shock protein 70, is immunostimulatory and induces protective immunity against cercarial challenge in mice. Duan, Ming Ming,Xu, Rui Min,Yuan, Chun Xiu,Li, Yun Yan,Liu, Qun,Cheng, Guo Feng,Lin, Jiao-Jiao,Feng, Xin Gang,Li, Yun Yan,Liu, Qun,Lin, Jiao-Jiao.

[12]Recent advances in developing vaccines against Toxoplasma gondii: an update. Zhang, Nian-Zhang,Wang, Meng,Xu, Ying,Zhu, Xing-Quan,Xu, Ying,Petersen, Eskild. 2015

[13]Marburg virus-like particles by co-expression of glycoprotein and matrix protein in insect cells induces immune responses in mice. Gai, Weiwei,Zhang, Weijiao,Qiu, Boning,Gai, Weiwei,Wang, Hualei,Zhao, Yongkun,Wang, Qi,Zhang, Weijiao,Feng, Na,Qiu, Boning,Chi, Hang,Li, Nan,Wang, Tiecheng,Gao, Yuwei,Yang, Songtao,Xia, Xianzhu,Zheng, Xuexing,Wang, Chong,Wang, Qi,Wong, Gary,Shan, Junjie,Shan, Junjie,Yang, Songtao,Xia, Xianzhu. 2017

[14]Immunoenhancement with flagellin as an adjuvant to whole-killed rabies vaccine in mice. Xiao, Xing-xing,Zhang, Yun,Liu, Ji-xing,Wei, Qiao-lin,Yin, Xiang-ping.

[15]Effect of different adjuvant formulations on the immunogenicity and protective effect of a live Mycoplasma hyopneumoniae vaccine after intramuscular inoculation. Wang, Chunlai,Xie, Fang,Xiong, Qiyan,Wei, Yanna,Xie, Haidong,Feng, Zhixin,Gan, Yuan,Liu, Maojun,Bai, Fangfang,Shao, Guoqing.

[16]Adjuvant effects of interleukin-18 in DNA vaccination against infectious bursal disease virus in chickens. Li, Kai,Gao, Honglei,Gao, Li,Qi, Xiaole,Gao, Yulong,Qin, Liting,Wang, Yongqiang,Wang, Xiaomei. 2013

[17]Antigen-Sparing and Enhanced Efficacy of Multivalent Vaccines Adjuvanted with Immunopotentiators in Chickens. Wu, Peipei,Lu, Jihu,Feng, Lei,Zhang, Xuehua,Mei, Mei,Hou, Jibo,Tang, Yinghua,Wu, Peipei,Lu, Jihu,Feng, Lei,Zhang, Xuehua,Mei, Mei,Hou, Jibo,Tang, Yinghua,Wu, Peipei,Lu, Jihu,Feng, Lei,Zhang, Xuehua,Mei, Mei,Hou, Jibo,Liu, Xiufan,Tang, Yinghua,Wu, Hongzhuan,Liu, Xiufan. 2017

[18]Short communication. Enhancement of the immune responses to vaccination against foot-and-mouth disease in mice by oral administration of Quillaja saponaria-A and extracts of Cochinchina momordica seed. Xiao, C. W.,Bao, G.,Rajput, Z. I.,Hu, S. H.,Rajput, Z. I.,Soomro, N. A.. 2013

[19]Protective efficacy of a live attenuated Mycoplasma hyopneumoniae vaccine with an ISCOM-matrix adjuvant in pigs. Xiong, Qiyan,Wei, Yanna,Feng, Zhixin,Gan, Yuan,Liu, Zhanjun,Liu, Maojun,Bai, Fangfang,Shao, Guoqing.

[20]The swine CD81 enhances E2-based DNA vaccination against classical swine fever. Li, Wenliang,Zhou, Bin,Liu, Xia,Yang, Leilei,Zhang, Wenwen,Jiang, Jieyuan,Zhou, Bin.

作者其他论文 更多>>
  • Phosphorylation promoted the glycolytic rate in postmortem meat by tightening the structure of glycogen phosphorylase

    作者:Bai, Y.;Li, X.;Ren, C.;Zheng, X.;Hou, C.;Chen, L.;Zhang, D.

    关键词:glycogen phosphorylase; protein phosphorylation; activity; protein structure simulation

  • EFFECTS OF SOIL SALT CONCENTRATION ON nirS AND nosZ GENES DIVERSITY OF PADDY SOIL DENITRIFYING BACTERIA

    作者:Ding, Y.;He, J.;Li, D.;Liu, G.;Liao, J.;Ma, Y.;Zhou, H.;Wu, Q.

    关键词:Denitrifying bacteria; Functional denitrification gene; Salt concentration; Diversity; Soil

  • Expression and self-assembly of virus-like particles from porcine parvovirus and its application in antibody detection

    作者:Li, Y.;Yue, W.;Li, X.;Chen, Y.;Gao, Y.;Li, Y.;Yue, W.;Li, X.;Chen, Y.;Gao, Y.;Wang, Q.

    关键词:porcine parvovirus; virus -like particles; indirect ELISA

  • Plant size, latitude, and phylogeny explain within-population variability in herbivory

    作者:Robinson, M. L.;Cinto Mejia, E.;Cope, O. L.;Dole, H. E.;Kalwajtys, M.;Lyon, N. J.;Zehr, L. N.;Wetzel, W. C.;Robinson, M. L.;Hahn, P. G.;Calixto, E. S.;Inouye, B. D.;Underwood, N.;Whitehead, S. R.;Florjancic, G. A.;Abbott, K. C.;Bruna, E. M.;Bruna, E. M.;Cacho, N. I.;Dyer, L. A.;Forister, M. L.;Pringle, E. G.;Salcido, D. M.;Yim, S.;Abdala-Roberts, L.;Quijano, T.;Allen, W. J.;Maia, L. F.;Andrade, J. F.;Santos, B. A.;Angulo, D. F.;Anjos, D.;Anstett, D. N.;Wetzel, W. C.;Anstett, D. N.;Martin, B. S.;Bagchi, R.;LaScaleia, M. C.;Bagchi, S.;Barbosa, M.;Cornelissen, T.;Fernandes, G. W.;Maia, R. A.;Pereira, C. C.;Barrett, S.;Baskett, C. A.;Ben-Simchon, E.;Segre, H.;Shelef, O.;Ben-Simchon, E.;Segre, H.;Bloodworth, K. J.;Koerner, S. E.;Komatsu, K. J.;Bronstein, J. L.;Luizzi, V. J.;Buckley, Y. M.;Finn, A.;Puy, J.;Burghardt, K. T.;McGurrin, K.;Bustos-Segura, C.;Grof-Tisza, P.;Rasmann, S.;Carvalho, R. L.;Castagneyrol, B.;Chiuffo, M. C.;Cinoglu, D.;Greig, K. A.;Mijango-Ramos, Z.;Morrison, C. R.;Cock, M. C.;Cogni, R.;Cope, O. L.;Cortez, D. R.;Smith, D. S.;Crowder, D. W.;Dallstream, C.;Dattilo, W.;Davis, J. K.;Poveda, K.;Schroeder, H.;Dimarco, R. D.;Dimarco, R. D.;Egbon, I. N.;Ejomah, A.;Uyi, O.;Eisenring, M.;Gossner, M. M.;Elderd, B. D.;Kluse, J.;Endara, M. -J.;Eubanks, M. D.;Helms, A. M.;Everingham, S. E.;Mannall, T. L.;Everingham, S. E.;Mills, C. H.;Moles, A. T.;Farah, K. N.;Fox, Q. N.;Penczykowski, R. M.;Farias, R. P.;Fernandes, A. P.;Fernandes, G. W.;Ferrante, M.;Lamelas-Lopez, L.;Ferrante, M.;Frago, E.;Franca, F. M.;Maia, L. F.;Franca, F. M.;Getman-Pickering, Z.;Gianoli, E.;Gooden, B.;Gossner, M. M.;Gripenberg, S.;Jackson, E. E.;Groenteman, R.;Haack, N.;Hahn, L.;Haq, S. M.;Hennecke, J.;Hennecke, J.;Rosche, C.;Hermann, S. L.;Kersch-Becker, M. F.;Tooker, J. F.;Holeski, L. M.;Holeski, L. M.;Holm, S.;Valtonen, A.;Holm, S.;Hutchinson, M. C.;Kagiya, S.;Utsumi, S.;Kalske, A.;Karban, R.;Rosenheim, L. Y.;Rosenheim, J. A.;Kariyat, R.;Keasar, T.;Kharouba, H. M.;Kim, T. N.;Kimuyu, D. M.;Komatsu, K. J.;Krishnan, S.;Krishnan, S.;Laihonen, M.;Lecomte, N.;Lecomte, N.;Lehn, C. R.;Li, X.;Lindroth, R. L.;LoPresti, E. F.;Losada, M.;Sobral, M.;Louthan, A. M.;Lynch, S. C.;Lynn, J. S.;Vandvik, V.;Lynn, J. S.;Martin, B. S.;Pan, V. S.;Zarnetske, P. L.;Wetzel, W. C.;Massad, T. J.;McCall, A. C.;Merwin, A. C.;Moore, C. M.;Moreira, X.;Moshobane, M. C.;Moshobane, M. C.;Muola, A.;Nakadai, R.;Nakajima, K.;Nakajima, K.;Novais, S.;Ogbebor, C. O.;Ohsaki, H.;Yamawo, A.;Pan, V. S.;Zarnetske, P. L.;Wetzel, W. C.;Pardikes, N. A.;Pareja, M.;Parthasarathy, N.;Paynter, Q.;Pearse, I. S.;Pepi, A. A.;Phartyal, S. S.;Piper, F. I.;Piper, F. I.;Piper, F. I.;Puy, J.;Quintero, C.;Sasal, Y.;Rosche, C.;Runyon, J. B.;Sadeh, A.;Segre, H.;Sakata, Y.;Salgado-Luarte, C.;Sapir, Y.;Sato, Y.;Sawant, M.;Schumann, I.;Segoli, M.;Shinohara, N.;Singh, R. P.;Stotz, G. C.;Tack, A. J. M.;van Dijk, L. J. A.;Tayal, M.;Torrico-Bazoberry, D.;Tougeron, K.;Tougeron, K.;Trowbridge, A. M.;Uyi, O.;Vaca-Uribe, J. L.;van Dijk, L. J. A.;Villellas, J.;Waller, L. P.;Weber, M. G.;Yamawo, A.;Zhong, Z.;Zhong, Z.;Wetzel, W. C.;Wetzel, W. C.

    关键词:

  • Identification and fine mapping of a new bacterial blight resistance gene, Xa43(t), in Zhangpu wild rice (Oryza rufipogon)

    作者:Huang, F.;He, N.;Yu, M.;Yang, D.;Li, D.

    关键词:Bacterial blight (BB) resistance; chromosome segment substitution line (CSSL); fine mapping; Rice; ZhangPu wild rice

  • Pathogenic infection characteristics and risk factors for bovine respiratory disease complex based on the detection of lung pathogens in dead cattle in Northeast China

    作者:Zhou, Y.;Dai, G.;Li, X.;Xiang, Y.;Jiang, S.;Zhang, Z.;Zhu, Z.;Fan, C.;Zhou, Y.;Zhou, Y.;Shao, Z.;Ren, Y.;Zhang, G.

    关键词:bovine respiratory disease complex; necropsy; pathogen detection; epidemiological investigation

  • Endophytic fungi in green manure crops; friends or foe?

    作者:Abeywickram, P. D.;Qian, N.;Zhang, W.;Guo, K.;Zhao, W.;Abeywickram, P. D.;Qian, N.;Zhang, W.;Guo, K.;Zhao, W.;Abeywickram, P. D.;Li, Y.;Zhang, W.;Yan, J.;Li, X.;Abeywickram, P. D.;Jayawardena, R. S.;Abeywickram, P. D.;Jayawardena, R. S.;Hyde, K. D.;Zhang, L.;Zhang, G.;Guo, Z.;Peng, Y.

    关键词:7 new taxa; Checklist; Culture dependent; Cover crops; High-throughput; sequencing; Taxonomy