Cargando…

Evaluation of immunoprotective effects of recombinant protein and DNA vaccine based on Eimeria tenella surface antigen 16 and 22 in vivo

Coccidiosis triggered by Eimeria tenella is accompanied by haemorrhagic caecum and high morbidity. Vaccines are preferable choices to replace chemical drugs against coccidiosis. Surface antigens of apicomplexan parasites can adhere to host cells during the infection process. Therefore, truncated fra...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhao, Pengfei, Wang, Chaofei, Ding, Jun, Zhao, Chengfeng, Xia, Yingjun, Hu, Yanli, Zhang, Li, Zhou, Yanqin, Zhao, Junlong, Fang, Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7943400/
https://www.ncbi.nlm.nih.gov/pubmed/33689009
http://dx.doi.org/10.1007/s00436-021-07105-y
_version_ 1783662483709362176
author Zhao, Pengfei
Wang, Chaofei
Ding, Jun
Zhao, Chengfeng
Xia, Yingjun
Hu, Yanli
Zhang, Li
Zhou, Yanqin
Zhao, Junlong
Fang, Rui
author_facet Zhao, Pengfei
Wang, Chaofei
Ding, Jun
Zhao, Chengfeng
Xia, Yingjun
Hu, Yanli
Zhang, Li
Zhou, Yanqin
Zhao, Junlong
Fang, Rui
author_sort Zhao, Pengfei
collection PubMed
description Coccidiosis triggered by Eimeria tenella is accompanied by haemorrhagic caecum and high morbidity. Vaccines are preferable choices to replace chemical drugs against coccidiosis. Surface antigens of apicomplexan parasites can adhere to host cells during the infection process. Therefore, truncated fragments coding E. tenella surface antigen 16 (EtSAG16) and 22 (EtSAG22) were cloned into pET-28a prokaryotic vector to express recombinant protein 16 (rEtSAG16) and 22 (rEtSAG22), respectively. Likewise, pEGFP-N1-EtSAG16 and pEGFP-N1-EtSAG22 plasmids were constructed using pEGFP-N1 eukaryotic vector. Further, pEGFP-N1-EtSAG4-16-22 multiple gene plasmid carrying EtSAG4, 16 and 22 were designed as cocktail vaccines to study integral immunoprotective effects. Western blot and RT-PCR (reverse transcription) assay were performed to verify expressions of EtSAG16 and 22 genes. Immunoprotective effects of recombinant protein or DNA vaccine were evaluated using different doses (50 or 100 μg) in vivo. All chickens in the vaccination group showed higher cytokine concentration (IFN-γ and IL-17), raised IgY antibody level, increased weight gain, lower caecum lesion score and reduced oocyst shedding compared with infection control groups (p < 0.05). The highest anticoccidial index (ACI) value 173.11 was from the pEGFP-N1-EtSAG4-16-22 plasmid (50 μg) group. In conclusion, EtSAG16 and 22 might be alternative candidate genes for generating vaccines against E. tenella infection.
format Online
Article
Text
id pubmed-7943400
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Springer Berlin Heidelberg
record_format MEDLINE/PubMed
spelling pubmed-79434002021-03-10 Evaluation of immunoprotective effects of recombinant protein and DNA vaccine based on Eimeria tenella surface antigen 16 and 22 in vivo Zhao, Pengfei Wang, Chaofei Ding, Jun Zhao, Chengfeng Xia, Yingjun Hu, Yanli Zhang, Li Zhou, Yanqin Zhao, Junlong Fang, Rui Parasitol Res Protozoology - Original Paper Coccidiosis triggered by Eimeria tenella is accompanied by haemorrhagic caecum and high morbidity. Vaccines are preferable choices to replace chemical drugs against coccidiosis. Surface antigens of apicomplexan parasites can adhere to host cells during the infection process. Therefore, truncated fragments coding E. tenella surface antigen 16 (EtSAG16) and 22 (EtSAG22) were cloned into pET-28a prokaryotic vector to express recombinant protein 16 (rEtSAG16) and 22 (rEtSAG22), respectively. Likewise, pEGFP-N1-EtSAG16 and pEGFP-N1-EtSAG22 plasmids were constructed using pEGFP-N1 eukaryotic vector. Further, pEGFP-N1-EtSAG4-16-22 multiple gene plasmid carrying EtSAG4, 16 and 22 were designed as cocktail vaccines to study integral immunoprotective effects. Western blot and RT-PCR (reverse transcription) assay were performed to verify expressions of EtSAG16 and 22 genes. Immunoprotective effects of recombinant protein or DNA vaccine were evaluated using different doses (50 or 100 μg) in vivo. All chickens in the vaccination group showed higher cytokine concentration (IFN-γ and IL-17), raised IgY antibody level, increased weight gain, lower caecum lesion score and reduced oocyst shedding compared with infection control groups (p < 0.05). The highest anticoccidial index (ACI) value 173.11 was from the pEGFP-N1-EtSAG4-16-22 plasmid (50 μg) group. In conclusion, EtSAG16 and 22 might be alternative candidate genes for generating vaccines against E. tenella infection. Springer Berlin Heidelberg 2021-03-10 2021 /pmc/articles/PMC7943400/ /pubmed/33689009 http://dx.doi.org/10.1007/s00436-021-07105-y Text en © The Author(s), under exclusive licence to Springer-Verlag GmbH, DE part of Springer Nature 2021 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Protozoology - Original Paper
Zhao, Pengfei
Wang, Chaofei
Ding, Jun
Zhao, Chengfeng
Xia, Yingjun
Hu, Yanli
Zhang, Li
Zhou, Yanqin
Zhao, Junlong
Fang, Rui
Evaluation of immunoprotective effects of recombinant protein and DNA vaccine based on Eimeria tenella surface antigen 16 and 22 in vivo
title Evaluation of immunoprotective effects of recombinant protein and DNA vaccine based on Eimeria tenella surface antigen 16 and 22 in vivo
title_full Evaluation of immunoprotective effects of recombinant protein and DNA vaccine based on Eimeria tenella surface antigen 16 and 22 in vivo
title_fullStr Evaluation of immunoprotective effects of recombinant protein and DNA vaccine based on Eimeria tenella surface antigen 16 and 22 in vivo
title_full_unstemmed Evaluation of immunoprotective effects of recombinant protein and DNA vaccine based on Eimeria tenella surface antigen 16 and 22 in vivo
title_short Evaluation of immunoprotective effects of recombinant protein and DNA vaccine based on Eimeria tenella surface antigen 16 and 22 in vivo
title_sort evaluation of immunoprotective effects of recombinant protein and dna vaccine based on eimeria tenella surface antigen 16 and 22 in vivo
topic Protozoology - Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7943400/
https://www.ncbi.nlm.nih.gov/pubmed/33689009
http://dx.doi.org/10.1007/s00436-021-07105-y
work_keys_str_mv AT zhaopengfei evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT wangchaofei evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT dingjun evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT zhaochengfeng evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT xiayingjun evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT huyanli evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT zhangli evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT zhouyanqin evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT zhaojunlong evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo
AT fangrui evaluationofimmunoprotectiveeffectsofrecombinantproteinanddnavaccinebasedoneimeriatenellasurfaceantigen16and22invivo