Impact of selective CD28 blockade on virus-specific immunity to a murine Epstein-Barr virus homolog

被引:2
作者
Crepeau, Rebecca L. [1 ]
Elengickal, Joseph A. [1 ]
La Muraglia, Glenn M. [1 ]
Ford, Mandy L. [1 ]
机构
[1] Emory Univ, Sch Med, Dept Surg, Emory Transplant Ctr, Atlanta, GA 30322 USA
关键词
animal models; murine; basic (laboratory) research; science; cellular biology; Epstein-Barr Virus; immunosuppressant-fusion proteins and monoclonal antibodies; belatacept; costimulation molecule specific; lymphocyte biology; differentiation; maturation; T cell biology; DOMAIN ANTIBODY ANTAGONIST; T-CELLS; BELATACEPT; EFFICACY; DISEASE; CTLA-4; COSTIMULATION; ACTIVATION; RESPONSES; SAFETY;
D O I
10.1111/ajt.15321
中图分类号
R61 [外科手术学];
学科分类号
摘要
CTLA-4Ig (belatacept) blocks the CD80/CD86 ligands for both CD28 and CTLA-4; thus, in addition to the intended effect of blocking CD28-mediated costimulation, belatacept also has the unintended effect of blocking CTLA-4-mediated coinhibition. Recently, anti-CD28 domain antibodies (dAb) that selectively target CD28 while leaving CTLA-4 intact were shown to more effectively inhibit alloimmune responses and prolong graft survival. However, the impact of selective CD28 blockade on protective immunity has not been extensively investigated. Here, we sought to compare the impact of CTLA-4Ig vs anti-CD28dAb on CD8(+) T cell immunity to a transplant-relevant pathogen, a murine homolog of Epstein-Barr virus. Mice were infected with murine gammaherpesvirus-68 (MHV) and treated with vehicle, CTLA-4Ig, or anti-CD28dAb. Although anti-CD28dAb resulted in a decrease in virus-specific CD8(+) T cell numbers as compared to CTLA-4Ig, cytolytic function and the expression of markers of high-quality effectors were not different from CTLA-4Ig treated animals. Importantly, MHV-68 viral load was not different between the treatment groups. These results suggest that preserved CTLA-4 coinhibition limits MHV-specific CD8(+) T cell accumulation, but the population that remains retains cytolytic function and migratory capacity and is not inferior in its ability to control viral burden relative to T cell responses in CTLA-4Ig-treated animals.
引用
收藏
页码:2199 / 2209
页数:11
相关论文
共 50 条
  • [21] Murine Models of Epstein-Barr Virus-Associated Lymphomagenesis
    Ahmed, Elshafa Hassan
    Baiocchi, Robert A.
    ILAR JOURNAL, 2016, 57 (01) : 55 - 62
  • [22] Epstein Barr virus-specific immune responses in multiple sclerosis
    Luenemann, Jan
    MULTIPLE SCLEROSIS, 2009, 15 (11): : 1387 - 1388
  • [23] AFRICAN BURKITTS-LYMPHOMA - A PLANT, EUPHORBIA-TIRUCALLI, REDUCES EPSTEIN-BARR VIRUS-SPECIFIC CELLULAR-IMMUNITY
    IMAI, S
    SUGIURA, M
    MIZUNO, F
    OHIGASHI, H
    KOSHIMIZU, K
    CHIBA, S
    OSATO, T
    ANTICANCER RESEARCH, 1994, 14 (3A) : 933 - 936
  • [24] Adoptive transfer of autologous Epstein-Barr virus-specific cytotoxic T cells for nasopharyngeal carcinoma
    Chua, D
    Huang, J
    Zheng, BJ
    Lau, SY
    Luk, W
    Kwong, DLW
    Sham, JST
    Moss, D
    Yuen, KY
    Im, SWK
    Ng, MH
    INTERNATIONAL JOURNAL OF CANCER, 2001, 94 (01) : 73 - 80
  • [25] Comparison of Three Automated Immunoassay Methods for the Determination of Epstein-Barr Virus-Specific Immunoglobulin M
    Berth, Mario
    Bosmans, Eugene
    CLINICAL AND VACCINE IMMUNOLOGY, 2010, 17 (04) : 559 - 563
  • [26] Impact of Epstein-Barr virus coinfection inMycoplasma pneumoniaepneumonia
    Xu, Yingchun
    Li, Shuxian
    Liu, Jinling
    Zhou, Junfen
    Jin, Fang
    Chen, Xiaoyang
    Wang, Yingshuo
    Jiang, Yuan
    Chen, Zhimin
    MEDICINE, 2020, 99 (16) : E19792
  • [27] Epstein-Barr virus-specific antibody response in cerebrospinal fluid and serum of patients with multiple sclerosis
    Castellazzi, Massimiliano
    Tamborino, Carmine
    Cani, Alice
    Negri, Elena
    Baldi, Eleonora
    Seraceni, Silva
    Tola, Maria Rosaria
    Granieri, Enrico
    Contini, Carlo
    Fainardi, Enrico
    MULTIPLE SCLEROSIS JOURNAL, 2010, 16 (07) : 883 - 887
  • [28] Holoendemic Malaria Exposure Is Associated with Altered Epstein-Barr Virus-Specific CD8+ T-Cell Differentiation
    Chattopadhyay, Pratip K.
    Chelimo, Kiprotich
    Embury, Paula B.
    Mulama, David H.
    Sumba, Peter Odada
    Gostick, Emma
    Ladell, Kristin
    Brodie, Tess M.
    Vulule, John
    Roederer, Mario
    Moormann, Ann M.
    Price, David A.
    JOURNAL OF VIROLOGY, 2013, 87 (03) : 1779 - 1788
  • [29] Evaluation of novel Epstein-Barr virus-derived antigen formulations for monitoring virus-specific T cells in pediatric patients with infectious mononucleosis
    Fischer, Franziska
    Muecke, Johannes
    Werny, Louisa
    Gerrer, Katrin
    Mihatsch, Lorenz
    Zehetmaier, Stefanie
    Riedel, Isa
    Geisperger, Jonas
    Bodenhausen, Maren
    Schulte-Hillen, Lina
    Hoffmann, Dieter
    Protzer, Ulrike
    Mautner, Josef
    Behrends, Uta
    Bauer, Tanja
    Koerber, Nina
    VIROLOGY JOURNAL, 2024, 21 (01)
  • [30] Detailed analysis of Epstein-Barr virus-specific CD4+ and CD8+ T cell responses during infectious mononucleosis
    Scherrenburg, J.
    Piriou, E. R. W. A. N.
    Nanlohy, N. M.
    van Baarle, D.
    CLINICAL AND EXPERIMENTAL IMMUNOLOGY, 2008, 153 (02) : 231 - 239