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Expression of the cytotoxic T cell mediator granzyme B during liver allograft rejection
S M Krams1, J C Villanueva, M B Quinn
1Transplantation Immunobiology Laboratory, California Pacific Medical Center, San Francisco 94115, USA.
Abstract:
Cytotoxic T lymphocytes (CTL) constitute a major component of the alloreactive response following organ transplantation. The molecular mechanisms of CTL killing remain to be determined but multiple candidate molecules involved in CTL-mediated cytotoxicity have been identified. Granzyme B, a serine protease, participates in perforin-dependent pathways of cytotoxicity and is necessary for induction of DNA fragmentation in target cells. In this study the expression of granzyme B in liver biopsies obtained from liver allograft recipients was determined by semiquantitative reverse transcriptase polymerase chain reaction. Biopsies were classified into four groups--no evidence of rejection, preservation injury, acute rejection, or resolving rejection--according to histopathological criteria. There was a significantly higher frequency of transcripts for granzyme B in the acute rejection group (82.8%) compared to the no rejection (20.0%), resolving rejection (12.5%) and preservation injury (0%) groups. Analysis of granzyme B gene expression in sequential samples from individual patients prior to, and after, treatment for rejection revealed an inverse correlation between granzyme B mRNA and response to treatment. These findings indicate that the cytopathic mediator granzyme B may participate in CTL-mediated cytotoxicity during liver allograft rejection.
Insights
Cytotoxic T lymphocytes (CTL) mediate organ transplant rejection. This study found higher granzyme B expression during acute liver allograft rejection, indicating its role in CTL-mediated cytotoxicity.
Area of Science:
- Immunology
- Transplantation Biology
- Molecular Medicine
Background:
- Cytotoxic T lymphocytes (CTL) are key players in organ transplant rejection.
- Granzyme B is a molecule implicated in CTL-mediated cell killing and DNA fragmentation.
Purpose of the Study:
- To investigate the expression of granzyme B in liver allograft biopsies.
- To determine the correlation between granzyme B expression and liver transplant rejection status and treatment response.
Main Methods:
- Semi-quantitative reverse transcriptase polymerase chain reaction (RT-PCR) was used to measure granzyme B transcripts.
- Liver biopsies from recipients were classified into four groups: no rejection, preservation injury, acute rejection, and resolving rejection.
Main Results:
- Granzyme B transcripts were significantly more frequent in acute rejection (82.8%) compared to no rejection (20.0%), resolving rejection (12.5%), and preservation injury (0%) groups.
- An inverse correlation was observed between granzyme B mRNA levels and treatment response in sequential patient samples.
Conclusions:
- Granzyme B expression is elevated during acute liver allograft rejection.
- Granzyme B may act as a mediator of CTL-induced damage in liver transplant rejection.