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1.
Chinese Journal of Biotechnology ; (12): 1548-1561, 2023.
Article in Chinese | WPRIM | ID: wpr-981153

ABSTRACT

Foot-and-mouth disease (FMD) is an acute, severe, and highly contagious infectious disease caused by foot-and-mouth disease virus (FMDV), which seriously endangers the development of animal husbandry. The inactivated FMD vaccine is the main product for the prevention and control of FMD, which has been successfully applied to control the pandemic and outbreak of FMD. However, the inactivated FMD vaccine also has problems, such as the instability of antigen, the risk of spread of the virus due to incomplete inactivation during vaccine production, and the high cost of production. Compared with traditional microbial and animal bioreactors, production of antigens in plants through transgenic technology has some advantages including low cost, safety, convenience, and easy storage and transportation. Moreover, since antigens produced from plants can be directly used as edible vaccines, no complex processes of protein extraction and purification are required. But, there are some problems for the production of antigens in plants, which include low expression level and poor controllability. Thus, expressing the antigens of FMDV in plants may be an alternative mean for production of FMD vaccine, which has certain advantages but still need to be continuously optimized. Here we review the main strategies for expressing active proteins in plants, as well as the research progress on the expression of FMDV antigens in plants. We also discuss the current problems and challenges encountered, with the aim to facilitate related research.


Subject(s)
Animals , Foot-and-Mouth Disease Virus/genetics , Foot-and-Mouth Disease/prevention & control , Antigens, Viral/genetics , Viral Vaccines
2.
Journal of Veterinary Science ; : 263-270, 2013.
Article in English | WPRIM | ID: wpr-92905

ABSTRACT

Verocytotoxic Escherichia (E.) coli strains are responsible for swine oedema disease, which is an enterotoxaemia that causes economic losses in the pig industry. The production of a vaccine for oral administration in transgenic seeds could be an efficient system to stimulate local immunity. This study was conducted to transform tobacco plants for the seed-specific expression of antigenic proteins from a porcine verocytotoxic E. coli strain. Parameters related to an immunological response and possible adverse effects on the oral administration of obtained tobacco seeds were evaluated in a mouse model. Tobacco was transformed via Agrobacteium tumefaciens with chimeric constructs containing structural parts of the major subunit FedA of the F18 adhesive fimbriae and VT2e B-subunit genes under control of a seed specific GLOB promoter. We showed that the foreign Vt2e-B and F18 genes were stably accumulated in storage tissue by the immunostaining method. In addition, Balb-C mice receiving transgenic tobacco seeds via the oral route showed a significant increase in IgA-positive plasma cell presence in tunica propria when compared to the control group with no observed adverse effects. Our findings encourage future studies focusing on swine for evaluation of the protective effects of transformed tobacco seeds against E. coli infection.


Subject(s)
Animals , Female , Mice , Administration, Oral , Agrobacterium tumefaciens , Antigens, Bacterial/genetics , Bacterial Vaccines/administration & dosage , Edema Disease of Swine/immunology , Escherichia coli Infections/immunology , Escherichia coli Proteins/genetics , Fimbriae Proteins/genetics , Genetic Engineering , Intestines/immunology , Mice, Inbred BALB C , Models, Animal , Plants, Genetically Modified/genetics , Seeds/genetics , Shiga Toxin 2/genetics , Shiga-Toxigenic Escherichia coli/genetics , Swine , Tobacco/genetics , Virulence Factors/genetics
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