The Role of IL-12 and IL-23 in the Generation and Maintenance of Memory CD4+ T Cells.

Blood ◽  
2004 ◽  
Vol 104 (11) ◽  
pp. 2664-2664
Author(s):  
Aileen M. Cleary ◽  
David B. Lewis

Abstract Human memory CD4+ T cells can be distinguished from antigenically-naïve CD4+ T cells based on their CD45RAlowCD45R0high and CD45RAhighCD45R0low surface phenotypes, respectively. Memory CD4+ T cells from adult peripheral blood can be further divided based on surface expression of the CCR7 chemokine receptor. Th1 memory CD4+ T cells that are CCR7high (putative central memory cells or Tcm) are expected to be preferentially targeted to peripheral lymph nodes where the ligands for CCR7 are expressed in high amounts. These cells have been reported to lack expression of the CCR3 and CCR5 chemokine receptors, which facilitate entry into inflamed tissues, and produce little or no interferon (IFN)-γ after stimulation via the αβ-TCR/CD3 complex. CD45RAlowCD45R0highCCR7low CD4+ T cells account for virtually all IFN-g production by human CD4 T cells after ab-TCR/CD3 stimulation using monoclonal antibodies, and for this reason were termed effector memory cells (Tem). These findings, as well as the observation of shorter telomere lengths for memory CD4+ T cells that are CCR7low compared to those that CCR7high suggest that the Tcm population may be an intermediate between naïve CD4+ T cells and Tem. It has recently been proposed that the level of signal strength and γc containing cytokines play a role in memory T cell generation. However, little is known whether IL-12 or IL-23 are necessary and for this differentiation and/or maintenance. Our laboratory has previously described a patient with IL-12Rβ1 deficiency, which ablates both IL-12 and IL-23 signaling. This patient had a deficiency in Tem number and function, unexpectedly suggesting that IL-12 and/or IL-23 may play a key role in this process. We therefore hypothesized that signaling through IL-12Rβ1 plays a key role in the latter stages of generation and/or maintenance of human memory CD4+ T cells. Preliminary data thus far show CCR7 expression to be slightly decreased on activated Tcm in response to incubation with IL-2 or IL-12 alone, and to a greater extent with IL-2 and IL-12 incubated together. In addition, spontaneous apoptosis of both Tcm and Tem is decreased upon incubation with IL-12. Taken together, these data suggest that IL-12 may play a role in both generation of Tem and maintenance of both Tcm and Tem.

Blood ◽  
2006 ◽  
Vol 108 (11) ◽  
pp. 449-449 ◽  
Author(s):  
Suparna Dutt ◽  
Diane Tseng ◽  
Tracy I. George ◽  
Joerg Ermann ◽  
Yinping Liu ◽  
...  

Abstract It has been reported that naive CD4+CD62LhiCD44lo T cells induce severe GVHD in a complete MHC mismatched allogeneic model of mouse bone marrow transplantation (BMT), but that effector memory CD4+CD62LloCD44hi T cells obtained from normal donors do not induce GVHD. The lack of GVHD-inducing capacity of effector memory cells from unprimed donors may reflect their lack of previous exposure to host alloantigens. We tested this hypothesis in a complete MHC mismatched allogeneic model of BMT by comparing the ability of effector memory T cells obtained from untreated C57BL/6 donors and donors immunized against host BALB/C alloantigens to induce GVHD. C57BL/6 donors were immunized by injecting 50 x106 host BALB/C spleen cells i.p. and after one week with 10x 106 cells. Both the unprimed and alloantigen primed CD4+ T cells expressed similar levels of lymph node homing chemokine receptor CCR7, and activation markers like CD69 and CD25. We sorted naive (CD62LhiCD44lo) and effector memory (CD62LloCD44hi) CD4+ T cell subsets from C57BL/6 donor mice four weeks after immunization, and compared their alloreactivity to BALB/C in an in vitro MLR. Interestingly effector memory CD4+ T cells from primed mice produced significantly higher levels of IFNγ compared to the effector memory from unprimed donors. We found that CD62LloCD44hi cells from unimmunized donors failed to induce GVHD in 85% of the hosts over 100 days while CD62LloCD44hi cells from immunized donors caused progressive weight loss and death in 100% of hosts (p <0.001). Whereas naive CD4+ T cells from unimmunized donors accumulated rapidly in the lymph nodes and spleen of irradiated hosts, effector memory CD4+ T cells had markedly reduced accumulation in these tissues. Furthermore, at day 6 after transplantation effector memory CD4+ T cells from primed mice, showed hundred fold higher accumulation in the host liver compared to unprimed effector memory donor CD4+ T cells. Long term surviving hosts transplanted with primed effector memory cells showed histopathological features of chronic GVHD in liver characterized by portal tract inflammation and lymphocyte infiltration with bile duct injury. In conclusion, memory CD4+ T cells from donors immunized to host alloantigens are able to induce chronic GVHD , but memory cells from unimmunized donors do not.


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