Cargando…

Evaluation of Protective Immune Responses Induced in BALB/c Mice and Goats by the Neospora caninum Surface SRS Proteins and Interleukin-18

SIMPLE SUMMARY: Neospora caninum is an apicomplexan parasite with worldwide distribution, infecting cattle, goats and other kinds of warm-blooded animals. However, specific medicines for the prevention or treatment of Neospora caninum are still limited. This study is aimed at selecting a potential i...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Pu, Wang, Xiaocen, Wang, Weirong, Gong, Pengtao, Zhang, Nan, Zhang, Renzhe, Zeng, Huan, Sun, Qian, Li, Wanqing, Li, Xin, Cheng, Shuqin, Zhang, Xu, Huang, Xinyi, Gao, Chenyang, Zheng, Yadong, Li, Jianhua, Zhang, Xichen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658137/
https://www.ncbi.nlm.nih.gov/pubmed/36359077
http://dx.doi.org/10.3390/ani12212952
_version_ 1784829875965657088
author Wang, Pu
Wang, Xiaocen
Wang, Weirong
Gong, Pengtao
Zhang, Nan
Zhang, Renzhe
Zeng, Huan
Sun, Qian
Li, Wanqing
Li, Xin
Cheng, Shuqin
Zhang, Xu
Huang, Xinyi
Gao, Chenyang
Zheng, Yadong
Li, Jianhua
Zhang, Xichen
author_facet Wang, Pu
Wang, Xiaocen
Wang, Weirong
Gong, Pengtao
Zhang, Nan
Zhang, Renzhe
Zeng, Huan
Sun, Qian
Li, Wanqing
Li, Xin
Cheng, Shuqin
Zhang, Xu
Huang, Xinyi
Gao, Chenyang
Zheng, Yadong
Li, Jianhua
Zhang, Xichen
author_sort Wang, Pu
collection PubMed
description SIMPLE SUMMARY: Neospora caninum is an apicomplexan parasite with worldwide distribution, infecting cattle, goats and other kinds of warm-blooded animals. However, specific medicines for the prevention or treatment of Neospora caninum are still limited. This study is aimed at selecting a potential immunoprotective antigen of N. caninum and evaluating the adjuvant function of interleukin (IL)-18 in mice or goats; NcSRS2, NcSRS17 and NcSRS52 from the SRS superfamily were considered to be targets. The results reveal that the recombinant proteins NcSRS2, NcSRS17 and NcSRS52 can all induce humoral and cellular immune responses, and NcSRS17 showed itself to be a promising new antigen candidate. IL-18 had a certain immunoenhancing effect in both experimental animal mice and intermediate host goats and could be used as an adjuvant. ABSTRACT: Neosporosis is caused by Neospora caninum (N. caninum), which mainly infects cattle and goats and severely threatens the animal industry. In this study, the inhibitory effects of polyclonal antiserum anti-NcSRS17, NcSRS2 and NcSRS52 were explored. Cytokines in mice or goat serum were detected after immunization. After infection, the survival of mice was recorded. The pathological changes and parasite loads were observed and detected in tissues. The results showed that anti-NcSRS2, NcSRS17 and NcSRS52 antibodies all inhibit the invasion and proliferation of N. caninum. The IFN-γ level in the NcSRS17 group was higher than that in the NcSRS2 and NcSRS52 groups, and higher in the NcSRS2-mIL-18 group than in the NcSRS2 group. The survival rates of mice were 16% in the positive control group, 67% in the SRS52 group, 83% in the SRS2 and mIL-18 groups and 100% in the SRS17 and SRS2-mIL-18 groups. Goats immunized with NcSRS17-gIL-18 developed high levels of IL-4, IL-12 and IFN-γ compared with those immunized with NcSRS-17. Parasite loads in the brains of animals in the NcSRS17 and NcSRS17-gIL-18 groups were significantly reduced, and were significantly lower in the NcSRS17-gIL-18 group (p ≤ 0.01). This study indicates that SRS17 may be an antigen candidate for vaccine development against neosporosis, and IL-18 can enhance the immune protective efficiency of antigen candidates.
format Online
Article
Text
id pubmed-9658137
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96581372022-11-15 Evaluation of Protective Immune Responses Induced in BALB/c Mice and Goats by the Neospora caninum Surface SRS Proteins and Interleukin-18 Wang, Pu Wang, Xiaocen Wang, Weirong Gong, Pengtao Zhang, Nan Zhang, Renzhe Zeng, Huan Sun, Qian Li, Wanqing Li, Xin Cheng, Shuqin Zhang, Xu Huang, Xinyi Gao, Chenyang Zheng, Yadong Li, Jianhua Zhang, Xichen Animals (Basel) Article SIMPLE SUMMARY: Neospora caninum is an apicomplexan parasite with worldwide distribution, infecting cattle, goats and other kinds of warm-blooded animals. However, specific medicines for the prevention or treatment of Neospora caninum are still limited. This study is aimed at selecting a potential immunoprotective antigen of N. caninum and evaluating the adjuvant function of interleukin (IL)-18 in mice or goats; NcSRS2, NcSRS17 and NcSRS52 from the SRS superfamily were considered to be targets. The results reveal that the recombinant proteins NcSRS2, NcSRS17 and NcSRS52 can all induce humoral and cellular immune responses, and NcSRS17 showed itself to be a promising new antigen candidate. IL-18 had a certain immunoenhancing effect in both experimental animal mice and intermediate host goats and could be used as an adjuvant. ABSTRACT: Neosporosis is caused by Neospora caninum (N. caninum), which mainly infects cattle and goats and severely threatens the animal industry. In this study, the inhibitory effects of polyclonal antiserum anti-NcSRS17, NcSRS2 and NcSRS52 were explored. Cytokines in mice or goat serum were detected after immunization. After infection, the survival of mice was recorded. The pathological changes and parasite loads were observed and detected in tissues. The results showed that anti-NcSRS2, NcSRS17 and NcSRS52 antibodies all inhibit the invasion and proliferation of N. caninum. The IFN-γ level in the NcSRS17 group was higher than that in the NcSRS2 and NcSRS52 groups, and higher in the NcSRS2-mIL-18 group than in the NcSRS2 group. The survival rates of mice were 16% in the positive control group, 67% in the SRS52 group, 83% in the SRS2 and mIL-18 groups and 100% in the SRS17 and SRS2-mIL-18 groups. Goats immunized with NcSRS17-gIL-18 developed high levels of IL-4, IL-12 and IFN-γ compared with those immunized with NcSRS-17. Parasite loads in the brains of animals in the NcSRS17 and NcSRS17-gIL-18 groups were significantly reduced, and were significantly lower in the NcSRS17-gIL-18 group (p ≤ 0.01). This study indicates that SRS17 may be an antigen candidate for vaccine development against neosporosis, and IL-18 can enhance the immune protective efficiency of antigen candidates. MDPI 2022-10-27 /pmc/articles/PMC9658137/ /pubmed/36359077 http://dx.doi.org/10.3390/ani12212952 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Pu
Wang, Xiaocen
Wang, Weirong
Gong, Pengtao
Zhang, Nan
Zhang, Renzhe
Zeng, Huan
Sun, Qian
Li, Wanqing
Li, Xin
Cheng, Shuqin
Zhang, Xu
Huang, Xinyi
Gao, Chenyang
Zheng, Yadong
Li, Jianhua
Zhang, Xichen
Evaluation of Protective Immune Responses Induced in BALB/c Mice and Goats by the Neospora caninum Surface SRS Proteins and Interleukin-18
title Evaluation of Protective Immune Responses Induced in BALB/c Mice and Goats by the Neospora caninum Surface SRS Proteins and Interleukin-18
title_full Evaluation of Protective Immune Responses Induced in BALB/c Mice and Goats by the Neospora caninum Surface SRS Proteins and Interleukin-18
title_fullStr Evaluation of Protective Immune Responses Induced in BALB/c Mice and Goats by the Neospora caninum Surface SRS Proteins and Interleukin-18
title_full_unstemmed Evaluation of Protective Immune Responses Induced in BALB/c Mice and Goats by the Neospora caninum Surface SRS Proteins and Interleukin-18
title_short Evaluation of Protective Immune Responses Induced in BALB/c Mice and Goats by the Neospora caninum Surface SRS Proteins and Interleukin-18
title_sort evaluation of protective immune responses induced in balb/c mice and goats by the neospora caninum surface srs proteins and interleukin-18
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658137/
https://www.ncbi.nlm.nih.gov/pubmed/36359077
http://dx.doi.org/10.3390/ani12212952
work_keys_str_mv AT wangpu evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT wangxiaocen evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT wangweirong evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT gongpengtao evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT zhangnan evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT zhangrenzhe evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT zenghuan evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT sunqian evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT liwanqing evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT lixin evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT chengshuqin evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT zhangxu evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT huangxinyi evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT gaochenyang evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT zhengyadong evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT lijianhua evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18
AT zhangxichen evaluationofprotectiveimmuneresponsesinducedinbalbcmiceandgoatsbytheneosporacaninumsurfacesrsproteinsandinterleukin18