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Low toxicity and high immunogenicity of an inactivated vaccine candidate against COVID-19 in different animal models

The ongoing COVID-19 pandemic is causing huge impact on health, life, and global economy, which is characterized by rapid spreading of SARS-CoV-2, high number of confirmed cases and a fatality/case rate worldwide reported by WHO. The most effective intervention measure will be to develop safe and ef...

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Autores principales: Wang, Ze-Jun, Zhang, Hua-Jun, Lu, Jia, Xu, Kang-Wei, Peng, Cheng, Guo, Jing, Gao, Xiao-Xiao, Wan, Xin, Wang, Wen-Hui, Shan, Chao, Zhang, Su-Cai, Wu, Jie, Yang, An-Na, Zhu, Yan, Xiao, Ao, Zhang, Lei, Fu, Lie, Si, Hao-Rui, Cai, Qian, Yang, Xing-Lou, You, Lei, Zhou, Yan-Ping, Liu, Jing, Pang, De-Qing, Jin, Wei-Ping, Zhang, Xiao-Yu, Meng, Sheng-Li, Sun, Yun-Xia, Desselberger, Ulrich, Wang, Jun-Zhi, Li, Xin-Guo, Duan, Kai, Li, Chang-Gui, Xu, Miao, Shi, Zheng-Li, Yuan, Zhi-Ming, Yang, Xiao-Ming, Shen, Shuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7733911/
https://www.ncbi.nlm.nih.gov/pubmed/33241728
http://dx.doi.org/10.1080/22221751.2020.1852059
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author Wang, Ze-Jun
Zhang, Hua-Jun
Lu, Jia
Xu, Kang-Wei
Peng, Cheng
Guo, Jing
Gao, Xiao-Xiao
Wan, Xin
Wang, Wen-Hui
Shan, Chao
Zhang, Su-Cai
Wu, Jie
Yang, An-Na
Zhu, Yan
Xiao, Ao
Zhang, Lei
Fu, Lie
Si, Hao-Rui
Cai, Qian
Yang, Xing-Lou
You, Lei
Zhou, Yan-Ping
Liu, Jing
Pang, De-Qing
Jin, Wei-Ping
Zhang, Xiao-Yu
Meng, Sheng-Li
Sun, Yun-Xia
Desselberger, Ulrich
Wang, Jun-Zhi
Li, Xin-Guo
Duan, Kai
Li, Chang-Gui
Xu, Miao
Shi, Zheng-Li
Yuan, Zhi-Ming
Yang, Xiao-Ming
Shen, Shuo
author_facet Wang, Ze-Jun
Zhang, Hua-Jun
Lu, Jia
Xu, Kang-Wei
Peng, Cheng
Guo, Jing
Gao, Xiao-Xiao
Wan, Xin
Wang, Wen-Hui
Shan, Chao
Zhang, Su-Cai
Wu, Jie
Yang, An-Na
Zhu, Yan
Xiao, Ao
Zhang, Lei
Fu, Lie
Si, Hao-Rui
Cai, Qian
Yang, Xing-Lou
You, Lei
Zhou, Yan-Ping
Liu, Jing
Pang, De-Qing
Jin, Wei-Ping
Zhang, Xiao-Yu
Meng, Sheng-Li
Sun, Yun-Xia
Desselberger, Ulrich
Wang, Jun-Zhi
Li, Xin-Guo
Duan, Kai
Li, Chang-Gui
Xu, Miao
Shi, Zheng-Li
Yuan, Zhi-Ming
Yang, Xiao-Ming
Shen, Shuo
author_sort Wang, Ze-Jun
collection PubMed
description The ongoing COVID-19 pandemic is causing huge impact on health, life, and global economy, which is characterized by rapid spreading of SARS-CoV-2, high number of confirmed cases and a fatality/case rate worldwide reported by WHO. The most effective intervention measure will be to develop safe and effective vaccines to protect the population from the disease and limit the spread of the virus. An inactivated, whole virus vaccine candidate of SARS-CoV-2 has been developed by Wuhan Institute of Biological Products and Wuhan Institute of Virology. The low toxicity, immunogenicity, and immune persistence were investigated in preclinical studies using seven different species of animals. The results showed that the vaccine candidate was well tolerated and stimulated high levels of specific IgG and neutralizing antibodies. Low or no toxicity in three species of animals was also demonstrated in preclinical study of the vaccine candidate. Biochemical analysis of structural proteins and purity analysis were performed. The inactivated, whole virion vaccine was characterized with safe double-inactivation, no use of DNases and high purity. Dosages, boosting times, adjuvants, and immunization schedules were shown to be important for stimulating a strong humoral immune response in animals tested. Preliminary observation in ongoing phase I and II clinical trials of the vaccine candidate in Wuzhi County, Henan Province, showed that the vaccine is well tolerant. The results were characterized by very low proportion and low degree of side effects, high levels of neutralizing antibodies, and seroconversion. These results consistent with the results obtained from preclinical data on the safety.
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spelling pubmed-77339112020-12-18 Low toxicity and high immunogenicity of an inactivated vaccine candidate against COVID-19 in different animal models Wang, Ze-Jun Zhang, Hua-Jun Lu, Jia Xu, Kang-Wei Peng, Cheng Guo, Jing Gao, Xiao-Xiao Wan, Xin Wang, Wen-Hui Shan, Chao Zhang, Su-Cai Wu, Jie Yang, An-Na Zhu, Yan Xiao, Ao Zhang, Lei Fu, Lie Si, Hao-Rui Cai, Qian Yang, Xing-Lou You, Lei Zhou, Yan-Ping Liu, Jing Pang, De-Qing Jin, Wei-Ping Zhang, Xiao-Yu Meng, Sheng-Li Sun, Yun-Xia Desselberger, Ulrich Wang, Jun-Zhi Li, Xin-Guo Duan, Kai Li, Chang-Gui Xu, Miao Shi, Zheng-Li Yuan, Zhi-Ming Yang, Xiao-Ming Shen, Shuo Emerg Microbes Infect Research Article The ongoing COVID-19 pandemic is causing huge impact on health, life, and global economy, which is characterized by rapid spreading of SARS-CoV-2, high number of confirmed cases and a fatality/case rate worldwide reported by WHO. The most effective intervention measure will be to develop safe and effective vaccines to protect the population from the disease and limit the spread of the virus. An inactivated, whole virus vaccine candidate of SARS-CoV-2 has been developed by Wuhan Institute of Biological Products and Wuhan Institute of Virology. The low toxicity, immunogenicity, and immune persistence were investigated in preclinical studies using seven different species of animals. The results showed that the vaccine candidate was well tolerated and stimulated high levels of specific IgG and neutralizing antibodies. Low or no toxicity in three species of animals was also demonstrated in preclinical study of the vaccine candidate. Biochemical analysis of structural proteins and purity analysis were performed. The inactivated, whole virion vaccine was characterized with safe double-inactivation, no use of DNases and high purity. Dosages, boosting times, adjuvants, and immunization schedules were shown to be important for stimulating a strong humoral immune response in animals tested. Preliminary observation in ongoing phase I and II clinical trials of the vaccine candidate in Wuzhi County, Henan Province, showed that the vaccine is well tolerant. The results were characterized by very low proportion and low degree of side effects, high levels of neutralizing antibodies, and seroconversion. These results consistent with the results obtained from preclinical data on the safety. Taylor & Francis 2020-12-10 /pmc/articles/PMC7733911/ /pubmed/33241728 http://dx.doi.org/10.1080/22221751.2020.1852059 Text en © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group, on behalf of Shanghai Shangyixun Cultural Communication Co., Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Ze-Jun
Zhang, Hua-Jun
Lu, Jia
Xu, Kang-Wei
Peng, Cheng
Guo, Jing
Gao, Xiao-Xiao
Wan, Xin
Wang, Wen-Hui
Shan, Chao
Zhang, Su-Cai
Wu, Jie
Yang, An-Na
Zhu, Yan
Xiao, Ao
Zhang, Lei
Fu, Lie
Si, Hao-Rui
Cai, Qian
Yang, Xing-Lou
You, Lei
Zhou, Yan-Ping
Liu, Jing
Pang, De-Qing
Jin, Wei-Ping
Zhang, Xiao-Yu
Meng, Sheng-Li
Sun, Yun-Xia
Desselberger, Ulrich
Wang, Jun-Zhi
Li, Xin-Guo
Duan, Kai
Li, Chang-Gui
Xu, Miao
Shi, Zheng-Li
Yuan, Zhi-Ming
Yang, Xiao-Ming
Shen, Shuo
Low toxicity and high immunogenicity of an inactivated vaccine candidate against COVID-19 in different animal models
title Low toxicity and high immunogenicity of an inactivated vaccine candidate against COVID-19 in different animal models
title_full Low toxicity and high immunogenicity of an inactivated vaccine candidate against COVID-19 in different animal models
title_fullStr Low toxicity and high immunogenicity of an inactivated vaccine candidate against COVID-19 in different animal models
title_full_unstemmed Low toxicity and high immunogenicity of an inactivated vaccine candidate against COVID-19 in different animal models
title_short Low toxicity and high immunogenicity of an inactivated vaccine candidate against COVID-19 in different animal models
title_sort low toxicity and high immunogenicity of an inactivated vaccine candidate against covid-19 in different animal models
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7733911/
https://www.ncbi.nlm.nih.gov/pubmed/33241728
http://dx.doi.org/10.1080/22221751.2020.1852059
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