The Fas and Fas ligand pathways in liver allograft tolerance

Author:

Pan T L1,Goto S1,Lin Y C1,Lord R2,Chiang K C1,Lai C Y1,Chen Y S1,Eng H L1,Cheng Y F1,Tatsuma T3,Kitano S3,Lin C L1,Chen C L1

Affiliation:

1. Department of Surgery and Liver Transplant Programme, Chang Gung Memorial Hospital, Kaohsiung, Taiwan

2. Department of Cardiology, University of Wales College of Medicine, Cardiff, UK

3. Department of Surgery I, Oita, Japan

Abstract

SUMMARY The Fas and Fas ligand (Fas/FasL) pathways may play a central role in cytotoxicity or immunoregulation in liver transplantation. Here, in an attempt to examine the role of Fas/FasL on drug-free tolerance, we measured mRNA levels of Fas/FasL in livers by reverse transcriptase-polymerase chain reaction (RT-PCR), and also protein levels of Fas/FasL in livers by immunohistochemistry and in serum by dot blot assay. PVG recipients bearing DA livers showed serious rejection between post-operative (POD) days 7 and 14 , but this rejection was naturally overcome without any immunosuppression. Fas gene and protein products were expressed on almost every cell in livers taken from naive rats, and at any time point in both syngeneic and allogeneic orthotopic liver transplantation (OLT) rats. In contrast, FasL mRNA in DA livers was detectable at POD 2, peaked at POD 14, and declined at POD 63 in allogeneic OLT (DA-PVG). Although the FasL gene was detectable in isografts at POD 14, its expression was much lower than in allografts. The time course and localization of FasL expression indicated that the expression of FasL gradually switched from infiltrating cells to hepatocytes when the rejection was naturally overcome and tolerance was induced in this OLT model. Soluble Fas could constitutively be detected at any time point in the serum of the tolerogenic OLT (DA-PVG) rats and was not diminished during the rejection phase. Soluble FasL peaked at POD 14 in allogeneic OLT, while sFasL was significantly lower in the serum of normal and syngeneic OLT rats. These findings suggest that the Fas and FasL pathways, including soluble forms, may contribute to the control of the immune response in this drug-free tolerance OLT model.

Publisher

Oxford University Press (OUP)

Subject

Immunology,Immunology and Allergy

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