Saleem S, Konieczny B T, Lowry R P, Baddoura F K, Lakkis F G
Renal Division, Emory University School of Medicine and Veterans Affairs Medical Center, Atlanta, Georgia 30033, USA.
Transplantation. 1996 Dec 27;62(12):1908-11. doi: 10.1097/00007890-199612270-00039.
It is generally assumed that IFNgamma plays a central role in acute allograft rejection. To test this hypothesis, we transplanted fully allogeneic (MHC class I and II incompatible) C3H/HeJ (H2k) murine hearts to IFNgamma-/- (IFNgamma gene-knockout) and IFNgamma+/+ BALB/c (H2d) mice. The phenotype of IFNgamma-/- mice was confirmed by demonstrating absent IFNgamma protein production by Con A stimulated IFNgamma-/- splenocytes. Both IFNgamma-/- and IFNgamma+/+ strains rejected transplanted hearts acutely: graft survival (mean +/- SD) was 5.2+/-0.4 and 6.0+/-0.0 days, respectively. Histologic examination revealed similar patterns of acute cellular rejection in both mouse groups. IFNgamma mRNA was present in hearts rejected by IFNgamma+/+ mice but was absent in those rejected by IFNgamma-/- mice. IL-2, IL-4, IL-10, and TNFalpha mRNA expression, on the other hand, was similar in grafts rejected by either strain. We also observed that hapten-induced delayed-type hypersensitivity (DTH) response was significantly reduced but not absent in IFNgamma-/- mice. Our results demonstrate that IFNgamma is not required for acute cellular rejection of fully allogeneic murine hearts. We propose that non-DTH mechanisms of allograft destruction could be enhanced in the absence of IFNgamma and thus lead to robust acute rejection.
一般认为,γ干扰素在急性同种异体移植排斥反应中起核心作用。为验证这一假设,我们将完全同种异体(MHC I类和II类不相容)的C3H/HeJ(H2k)小鼠心脏移植到γ干扰素基因敲除(IFNγ-/-)和野生型(IFNγ+/+)的BALB/c(H2d)小鼠体内。通过检测伴刀豆球蛋白A刺激的IFNγ-/-脾细胞不产生IFNγ蛋白,证实了IFNγ-/-小鼠的表型。IFNγ-/-和IFNγ+/+小鼠均急性排斥移植的心脏:移植心脏存活时间(均值±标准差)分别为5.2±0.4天和6.0±0.0天。组织学检查显示,两组小鼠急性细胞排斥反应模式相似。IFNγ+/+小鼠排斥的心脏中存在IFNγ mRNA,而IFNγ-/-小鼠排斥的心脏中则没有。另一方面,白细胞介素-2(IL-2)、白细胞介素-4(IL-4)、白细胞介素-10(IL-10)和肿瘤坏死因子α(TNFα)mRNA表达在两种品系排斥的移植物中相似。我们还观察到,半抗原诱导的迟发型超敏反应(DTH)在IFNγ-/-小鼠中显著降低但并未完全缺失。我们的结果表明,完全同种异体小鼠心脏的急性细胞排斥反应并不需要γ干扰素。我们提出,在没有γ干扰素的情况下,同种异体移植破坏的非DTH机制可能会增强,从而导致强烈的急性排斥反应。