数字农科院2.0

Infection of mouse bone marrow-derived immature dendritic cells with classical swine fever virus C-strain promotes cells maturation and lymphocyte proliferation

文献类型: 外文期刊

作者: Zheng, Fu-Ying;Qiu, Chang-Qing;Jia, Huai-Jie;Chen, Guo-Hua;Zeng, Shuang;He, Xiao-Bing;Fang, Yong-Xiang;Lin, Guo-Zhen;Jing, Zhi-Zhong

作者机构:

关键词: Classical swine fever virus C-strain;Classical swine fever virus GSLZ strain;Cytokine;Dendritic cells;Maturation;Stimulation index

期刊名称: RESEARCH IN VETERINARY SCIENCE

ISSN: 0034-5288

年卷期: 2013 年 95 卷 3 期

页码:

收录情况: SCI

摘要: In this study, the interactions of classical swine fever virus (CSFV) C-strain and the virulent GSLZ strain with mouse bone marrow-derived immature dendritic cells (BM-imDCs) were investigated for the first time. Both the C-strain and the virulent GSLZ strain could effectively infect and replicate in mouse BM-imDCs. C-strain-infected BM-imDCs showed a greatly enhanced degree of maturation, and could effectively promote the expansion and proliferation of allogeneic naive T cells. The C-strain induced a stronger Th1 response. Infection with the virulent GSLZ strain had no obvious influence on cell maturation or lymphocyte proliferation, and failed to induce any obvious immune response. The results of this study provided initial information for research of the immunologic mechanisms of CSFV using mouse DCs as the model cells. Crown Copyright (C) 2013 Published by Elsevier Ltd. All rights reserved.

分类号:

  • 相关文献

[1]Newcastle disease virus-like particles induce DC maturation through TLR4/NF-kappa B pathway and facilitate DC migration by CCR7-CCL19/CCL21 axis. Qian, Jing,Xu, Xiaohong,Ding, Jiaxin,Yin, Renfu,Xue, Cong,Cong, Yanlong,Ding, Zhuang,Sun, Yixue,Wang, Jianzhong,Wang, Chunfeng,Ding, Chan,Yu, Shengqing,Liu, Xiufan,Hu, Shunlin.

[2]Construction of Swine-Specific CpG Motif Enriched Plasmid and the Study of Its Immunostimulatory Effects Both In Vitro and In Vivo. Guo, Xiaoyu,Jia, Hong,Yuan, Weifeng,Hou, Shaohua,Zhu, Hongfei,Guo, Xiaoyu,Manuel Sanchez-Vizcaino, Jose,Guo, Xiaoyu,Manuel Sanchez-Vizcaino, Jose,Zhang, Quan,Sun, Yao,Zhu, Gang. 2012

[3]Infectious Bursal Disease Virus Subverts Autophagic Vacuoles To Promote Viral Maturation and Release. Wang, Yongqiang,Duan, Yulu,Han, Chunyan,Yao, Shuai,Qi, Xiaole,Gao, Yulong,Zhang, Lizhou,Gao, Li,Gao, Honglei,Shen, Nan,Wang, Jingfei,Wang, Xiaomei,Maier, Helena J.,Britton, Paul,Chen, Lei.

[4]Volatile compounds evolution of three table grapes with different flavour during and after maturation. Yang, Chunxiang,Li, Shaohua,Yang, Chunxiang,Wang, Yiju,Wu, Benhong,Fang, Jinbao.

[5]Dendritic cell targeted vaccines: Recent progresses and challenges. Chen, Pengfei,Liu, Xinsheng,Sun, Yuefeng,Zhou, Peng,Wang, Yonglu,Zhang, Yongguang.

[6]Approaches to improved targeting of DNA vaccines. Wang, Gang,Pan, Li,Zhang, Yongguang.

[7]Dendritic Cell Harmonised Immunity To P.oultry Pathogens; A Review. Rehman, ZU, Umar, S, Meng, C, Ullah, Z, Riaz, F, Rehman, SU, Ding, C. 2017

[8]Anti-Tumoral Effect and Action Mechanism of Exosomes Derived From Toxoplasma gondii-Infected Dendritic Cells in Mice Colorectal Cancer. Zhu, Shilan,Lu, Jinmiao,Lin, Zhibing,Abuzeid, Asmaa M. I.,Chen, Xiaoyu,Zhuang, Tingting,Gong, Haiyan,Mi, Rongsheng,Huang, Yan,Chen, Zhaoguo,Li, Guoqing. 2022

[9]Preparation and identification of monoclonal antibodies against porcine CD103. Zhang, Tao,Yu, Haoyuan,Aryal, Manita,Yang, Jing,Li, Maolin,Li, Shuxian,Zhang, Na,Shi, Han,Li, Baoyu,Liu, Guangliang,Fu, Yuguang. 2022

[10]Glutathione-S-Transferase Of Trichinella Spiralis Regulates Maturation And Function Of Dendritic Cells. Jin, XM, Yang, Y, Liu, XL, Shi, HN, Cai, XP, Luo, XN, Liu, MY, Bai, X. 2019

[11]Molecular Mechanism of VSV-Vectored ASFV Vaccine Activating Immune Response in DCs. Yunyun Ma,Junjun Shao,Wei Liu,Shandian Gao,Guangqing Zhou,Xuefeng Qi,Huiyun Chang. 2025

[12]Cmss1 limits FMDV infection by enhancing antigen presentation and CD8+ T cell responses. Wang, Yang,Zhang, Lihong,Deng, Jieru,Zheng, Linlin,Chen, Zhihua,Zhang, Zhao,Zhang, Han,Pei, Jingjing,Zheng, Haixue. 2025

[13]Macrophage immunomodulatory activity of polysaccharides isolated from Glycyrrhiza uralensis fish. Cheng, Anwei,Jin, Zhengyu,Xu, Xueming,Wan, Fachun,Wang, Jiaqi. 2008

[14]Expression of equine interleukin-18 by baculovirus expression system and its biologic activity. Wu, DL,Murakami, K,Liu, NH,Konishi, M,Muneta, Y,Inumaru, S,Kokuho, T,Sentsui, H. 2004

[15]Primary Babesia rodhaini infection followed by recovery confers protective immunity against B. rodhaini reinfection and Babesia microti challenge infection in mice. Wang, Guanbo,Efstratiou, Artemis,Moumouni, Paul Franck Adjou,Liu, Mingming,Jirapattharasate, Charoonluk,Guo, Huanping,Gao, Yang,Suzuki, Hiroshi,Igarashi, Ikuo,Xuan, Xuenan,Cao, Shinuo,Zhou, Mo.

[16]Establishment of real-time TaqMan-fluorescence quantitative RT-PCR assay for detection and quantitation of ten kinds of porcine inflammation markers mRNA. Lin, Wencheng,Qiu, Zheng,Liu, Qinfang,Cui, Shangjin,Wang, Zhongtian.

[17]Levamisole enhances immunity in ducklings vaccinated against Riemerella anatipestifer. Zhang, Yuewei,Zeng, Xiangfan,Wu, Wenxue,Chen, Huiling,Wang, Peng,Li, Jinxiang.

[18]Immunogenic response induced by wzm and wzt gene deletion mutants from Brucella abortus S19. Wang, Xiu-Ran,Yan, Guang-Mou,Zhang, Rui,Wang, Xing-Long,Wang, Xiu-Ran,Zhang, Rui,Lang, Xu-Long,Li, Xiao-Yan,Chen, Si,Qian, Jing,Wang, Xing-Long,Wang, Xiu-Ran,Qian, Jing,Yang, Yan-Ling.

[19]Eimeria tenella heat shock protein 70 enhances protection of recombinant microneme protein MIC2 subunit antigen vaccination against E. tenella challenge. Zhang, Lei,Ma, Liping,Liu, Renqiang,Zhang, Yunfei,Zhang, Shouping,Hu, Chunmei,Song, Meng,Wang, Ming,Cai, Jianping. 2012

[20]Therapeutic efficacy of Hypericum perforatum L. extract for mice infected with an influenza A virus. Pu Xiuying,Li Yan,Liang Jianping,Shang Ruofeng,Wang Xuehong,Liang Jianping,Zhou Liye. 2012

作者其他论文 更多>>