4.5 Article

Coupled regulation of interleukin-12 receptor beta-1 of CD8+central memory and CCR7-negative memory T cells in an early alloimmunity in liver transplant recipients

期刊

CLINICAL AND EXPERIMENTAL IMMUNOLOGY
卷 160, 期 3, 页码 420-430

出版社

WILEY-BLACKWELL
DOI: 10.1111/j.1365-2249.2010.04117.x

关键词

CD8 T cells; cytokine; interleukin; chemokine; cytotoxicity; liver transplantation; memory cells

资金

  1. Ministry of Education, Science and Culture of Japan [13204041, 13307038]
  2. Grants-in-Aid for Scientific Research [13204041, 13307038] Funding Source: KAKEN

向作者/读者索取更多资源

P>This study investigated how CD8+ T cell subsets respond to allo- and infectious immunity after living donor liver transplantation (LDLT). Early alloimmunity: 56 recipients were classified into three types according to the post-transplant course; type I demonstrated uneventful post-transplant course, type II developed severe sepsis leading to multiple organ dysfunction syndrome or retransplantation and type III with acute rejection. In 23 type I recipients, the interleukin (IL)-12 receptor beta-1 (R beta 1)+ cells of central memory T cells (Il-12R beta 1+ T(CM)) were increased above the pretransplant level. In 16 type II recipients, IL-12R beta 1+ T(CM) was decreased markedly below the pretransplant level on postoperative day (POD) 5. In 17 type III recipients, IL-12R beta 1+ T(CM) was decreased for a more prolonged period until POD 10. Along with down-regulation of IL-12R beta 1+ T(CM), the IL-12R beta 1+ cells of CCR7-negative subsets (CNS) as well as perforin, interferon (IFN)-gamma and tumour necrosis factor (TNF)-alpha decreased gradually, resulting in the down-regulation of effectors and cytotoxicity. The down-regulation of IL-12R beta 1+ T(CM) was suggested to be due to the recruitment of alloantigen-primed T cells into the graft, and then their entry into the secondary lymphoid organ, resulting in graft destruction. Infectious immunity: immunocompetent memory T cells with the capacity to enhance effectors and cytotoxicity were generated in response to post-transplant infection along with both up-regulation of the IL-12R beta 1+ T(CM) and an increase in the CNS showing the highest level of IL-12R beta 1+ cells. In conclusion, this work demonstrated that the IL-12R beta 1+ cells of T(CM) and CNS are regulated in a tightly coupled manner and that expression levels of IL-12R beta 1+ T(CM) play a crucial role in controlling allo- and infectious immunity.

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