γδT cells regulate the development of hapten-specific CD8+ effector T cells in contact hypersensitivity responses

被引:27
|
作者
Guan, HB [1 ]
Zu, GR [1 ]
Slater, M [1 ]
Elmets, C [1 ]
Xu, H [1 ]
机构
[1] Univ Alabama, Dept Dermatol, Birmingham, AL 35294 USA
关键词
cellular activation; delayed-type hypersensitivity; skin; T lymphocytes;
D O I
10.1046/j.1523-1747.2002.01830.x
中图分类号
R75 [皮肤病学与性病学];
学科分类号
100206 ;
摘要
It has been reported that gammadeltaT cells are required for transfer of contact hypersensitivity responses by hapten-primed T cells. The mechanism by which they do so, however, remains to be elucidated. To specifically investigate the role of gammadeltaT cells in the development of contact hypersensitivity, this study employed Tdelta gene knockout mice that are deficient in gammadeltaT cells but are normal in the development of alphabetaT cells. The result indicates that contact hypersensitivity responses were significantly greater in gammadeltaT cell deficient mice than in wild-type mice. Similar results were obtained when wild-type mice were depleted of gammadeltaT cells with antibody treatment before hapten sensitization. Depletion of CD4(+) T cells did not affect the increased contact hypersensitivity response in gammadeltaT cell deficient mice, suggesting that the effect of gammadeltaT cells is on CD8(+) T cells and does not require CD4(+) T cells. Further experiments demonstrated that primed CD8(+) T cells from the deficient mice exhibited significantly higher CTL activity. The cytokine profile of CD4(+) T cells was not significantly altered. Transfer of primed lymph node cells from hapten-primed gammadeltaT cell deficient mice elicited a similar level of contact hypersensitivity in naive wild-type and the deficient recipient mice, indicating that gammadeltaT cells have little effect on the elicitation of primed T cells and contact hypersensitivity responses. We conclude that gammadeltaT cells downregulate contact hypersensitivity responses to hapten sensitization by limiting the development of hapten-specific CD8(+) effector T cells during sensitization and that this effect is independent of CD4(+) T cells.
引用
收藏
页码:137 / 142
页数:6
相关论文
共 50 条
  • [31] CD8+ T cells responding to influenza infection reach and persist at higher numbers than CD4+ T cells independently of precursor frequency
    Powell, TJ
    Brown, DM
    Hollenbaugh, JA
    Charbonneau, T
    Kemp, RA
    Swain, SL
    Dutton, RW
    CLINICAL IMMUNOLOGY, 2004, 113 (01) : 89 - 100
  • [32] Praziquantel Facilitates IFN-γ-Producing CD8+ T Cells (Tc1) and IL-17-Producing CD8+ T Cells (Tc17) Responses to DNA Vaccination in Mice
    Zou, Qiang
    Yao, Xin
    Feng, Jin
    Yin, Zhinan
    Flavell, Richard
    Hu, Yanxin
    Zheng, Guoxing
    Jin, Jin
    Kang, Youmin
    Wu, Bing
    Liang, Xiaoxuan
    Feng, Congcong
    Liu, Hu
    Li, Weiyi
    Wang, Xianzheng
    Wen, Yumei
    Wang, Bin
    PLOS ONE, 2011, 6 (10):
  • [33] Direct evidence to support the role of antigen-specific CD8+ T cells in melanoma-associated vitiligo
    Le Gal, FA
    Avril, MF
    Bosq, J
    Lefebvre, P
    Deschemin, JC
    Andrieu, M
    Dore, MX
    Guillet, JG
    JOURNAL OF INVESTIGATIVE DERMATOLOGY, 2001, 117 (06) : 1464 - 1470
  • [34] MicroRNA-155 inhibits the proliferation of CD8+ T cells via upregulating regulatory T cells in vitiligo
    Lv, Mingfen
    Li, Zhengjun
    Liu, Jingjing
    Lin, Fan
    Zhang, Qianwen
    Li, Zhiming
    Wang, Yi
    Wang, Keyu
    Xu, Yunsheng
    MOLECULAR MEDICINE REPORTS, 2019, 20 (04) : 3617 - 3624
  • [35] Interferon-γ-dependent inhibition of late allergic airway responses and eosinophilia by CD8+γδ T cells
    Isogai, Susumu
    Athiviraham, Aravind
    Fraser, Russell S.
    Taha, Rame
    Hamid, Qutayba
    Martin, James G.
    IMMUNOLOGY, 2007, 122 (02) : 230 - 238
  • [36] Differentiation of human alloreactive CD4+ and CD8+ T cells in vitro
    Nikolaeva, N
    Uss, E
    van Leeuwen, EMM
    van Lier, RAW
    ten Berge, IJM
    TRANSPLANTATION, 2004, 78 (06) : 815 - 824
  • [37] B cells imprint adoptively transferred CD8+ T cells with enhanced tumor immunity
    Smith, Aubrey S.
    Knochelmann, Hannah M.
    Wyatt, Megan M.
    Rivera, Guillermo O. Rangel
    Rivera-Reyes, Amalia M.
    Dwyer, Connor J.
    Ware, Michael B.
    Cole, Anna C.
    Neskey, David M.
    Rubinstein, Mark P.
    Liu, Bei
    Thaxton, Jessica E.
    Bartee, Eric
    Paulos, Chrystal M.
    JOURNAL FOR IMMUNOTHERAPY OF CANCER, 2022, 10 (01)
  • [38] Differences in the distribution of CD4+ and CD8+ T cells in emphysematous lungs
    Aoshiba, K
    Koinuma, M
    Yokohori, N
    Nagai, A
    RESPIRATION, 2004, 71 (02) : 184 - 190
  • [39] Role of CD4+ and CD8+ T cells in regulating the chronic development of liver injury induced by delayed-type hypersensitivity to picryl chloride
    Xu, Q
    Wu, FH
    Jiang, JY
    Lu, JF
    Chen, XC
    Zhang, BL
    INTERNATIONAL ARCHIVES OF ALLERGY AND IMMUNOLOGY, 1998, 116 (02) : 154 - 161
  • [40] α-NAC-Specific Autoreactive CD8+ T Cells in Atopic Dermatitis Are of an Effector Memory Type and Secrete IL-4 and IFN-γ
    Roesner, Lennart M.
    Heratizadeh, Annice
    Wieschowski, Susanne
    Mittermann, Irene
    Valenta, Rudolf
    Eiz-Vesper, Britta
    Hennig, Christian
    Hansen, Gesine
    Falk, Christine S.
    Werfel, Thomas
    JOURNAL OF IMMUNOLOGY, 2016, 196 (08) : 3245 - 3252