Izawa Atsushi, Yamaura Kazuhiro, Albin Monica J, Jurewicz Mollie, Tanaka Katsunori, Clarkson Michael R, Ueno Takuya, Habicht Antje, Freeman Gordon J, Yagita Hideo, Abdi Reza, Pearson Todd, Greiner Dale L, Sayegh Mohamed H, Najafian Nader
Transplantation Research Center, Renal Division, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.
J Immunol. 2007 Jul 15;179(2):786-96. doi: 10.4049/jimmunol.179.2.786.
Delayed ICOS-B7h signal blockade promotes significant prolongation of cardiac allograft survival in wild-type but not in CD8-deficient C57BL/6 recipients of fully MHC-mismatched BALB/c heart allografts, suggesting the possible generation of CD8(+) regulatory T cells in vivo. We now show that the administration of a blocking anti-ICOS mAb results in the generation of regulatory CD8(+) T cells. These cells can transfer protection and prolong the survival of donor-specific BALB/c, but not third party C3H, heart grafts in CD8-deficient C57BL/6 recipients. This is unique to ICOS-B7h blockade, because B7 blockade by CTLA4-Ig prolongs graft survival in CD8-deficient mice and does not result in the generation of regulatory CD8(+) T cells. Those cells localize to the graft, produce both IFN-gamma and IL-4 after allostimulation in vitro, prohibit the expansion of alloreactive CD4(+) T cells, and appear to mediate a Th2 switch of recipient CD4(+) T cells after adoptive transfer in vivo. Finally, these cells are not confined to the CD28-negative population but express programmed death 1, a molecule required for their regulatory function in vivo. CD8(+)PD1(+) T cells suppress alloreactive CD4(+) T cells but do not inhibit the functions by alloreactive CD8(+) T cells in vitro. These results describe a novel allospecific regulatory CD8(+)PD1(+) T cell induced by ICOS-B7h blockade in vivo.
延迟的ICOS - B7h信号阻断可显著延长完全MHC不匹配的BALB/c心脏移植野生型C57BL/6受体的心脏移植存活时间,但在CD8缺陷的C57BL/6受体中则不然,这表明体内可能产生了CD8(+)调节性T细胞。我们现在表明,给予阻断性抗ICOS单克隆抗体可导致调节性CD8(+) T细胞的产生。这些细胞可以转移保护作用并延长供体特异性BALB/c心脏移植物的存活时间,但不能延长第三方C3H心脏移植物在CD8缺陷的C57BL/6受体中的存活时间。这是ICOS - B7h阻断所特有的,因为CTLA4 - Ig阻断B7可延长CD8缺陷小鼠的移植物存活时间,且不会导致调节性CD8(+) T细胞的产生。这些细胞定位于移植物,在体外同种异体刺激后产生IFN -γ和IL - 4,抑制同种反应性CD4(+) T细胞的扩增,并且在体内过继转移后似乎介导受体CD4(+) T细胞向Th2转换。最后,这些细胞不限于CD28阴性群体,而是表达程序性死亡1,这是它们在体内发挥调节功能所需的分子。CD8(+)PD1(+) T细胞在体外抑制同种反应性CD4(+) T细胞,但不抑制同种反应性CD8(+) T细胞的功能。这些结果描述了一种由体内ICOS - B7h阻断诱导产生的新型同种特异性调节性CD8(+)PD1(+) T细胞。