Expression of MHC class I-related Chain B (MICB) molecules on renal transplant biopsies.

BACKGROUND: MICA and MICB (MHC class I-related chain A and B) are polymorphic genes that encode molecules related to MHC class I and are expressed on epithelial cells in response to stress. Incompatible donor MIC antigens can stimulate antibody production in transplant recipients. This study was de...

Olles dieđut

Bibliográfalaš dieđut
Váldodahkkit: Quiroga, I, Salio, M, Koo, D, Cerundolo, L, Shepherd, D, Cerundolo, V, Fuggle, S
Materiálatiipa: Journal article
Giella:English
Almmustuhtton: 2006
_version_ 1826296441563250688
author Quiroga, I
Salio, M
Koo, D
Cerundolo, L
Shepherd, D
Cerundolo, V
Fuggle, S
author_facet Quiroga, I
Salio, M
Koo, D
Cerundolo, L
Shepherd, D
Cerundolo, V
Fuggle, S
author_sort Quiroga, I
collection OXFORD
description BACKGROUND: MICA and MICB (MHC class I-related chain A and B) are polymorphic genes that encode molecules related to MHC class I and are expressed on epithelial cells in response to stress. Incompatible donor MIC antigens can stimulate antibody production in transplant recipients. This study was designed to determine MICB expression in kidney pretransplant and any subsequent changes in expression following transplantation and to correlate changes with inflammatory markers and clinical events. METHODS: Paired renal biopsies obtained from living donor (n=10) and cadaveric allografts (n=50) before and 7 days posttransplant were stained for MICB, leukocytic infiltration, and HLA class II antigens. RESULTS: Variable tubular MICB expression was evident in donor biopsies [high 6/60 (10%), low/negative 13/60 (22%), intermediate 41/60 (68%)]. Following transplantation, MICB was up-regulated on renal tubules of 17/60 (28%) biopsies and was associated with MHC class II antigen induction (P=0.02) and leukocyte infiltration (P=0.01). Acute tubular necrosis leading to delayed graft function (DGF) and acute rejection (AR) cause cellular stress within the transplanted kidney. We found a strong association between up-regulation of MICB and cellular stress, 15/17 biopsies with up-regulated MICB expression had AR and/or DGF (P=0.003). CONCLUSIONS: This is the first study demonstrating variable levels of MICB expression in kidneys before transplantation and induction of MICB expression following renal transplantation. MICB expression is associated with HLA class II antigen induction, leukocytic infiltration of the graft and cellular stress in the transplanted kidney. Expression of MICB could contribute significantly to the alloimmune response in mismatched donors and recipients.
first_indexed 2024-03-07T04:16:23Z
format Journal article
id oxford-uuid:c98f289c-47c1-4a01-bb1c-1909ae78a43d
institution University of Oxford
language English
last_indexed 2024-03-07T04:16:23Z
publishDate 2006
record_format dspace
spelling oxford-uuid:c98f289c-47c1-4a01-bb1c-1909ae78a43d2022-03-27T07:00:05ZExpression of MHC class I-related Chain B (MICB) molecules on renal transplant biopsies.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:c98f289c-47c1-4a01-bb1c-1909ae78a43dEnglishSymplectic Elements at Oxford2006Quiroga, ISalio, MKoo, DCerundolo, LShepherd, DCerundolo, VFuggle, S BACKGROUND: MICA and MICB (MHC class I-related chain A and B) are polymorphic genes that encode molecules related to MHC class I and are expressed on epithelial cells in response to stress. Incompatible donor MIC antigens can stimulate antibody production in transplant recipients. This study was designed to determine MICB expression in kidney pretransplant and any subsequent changes in expression following transplantation and to correlate changes with inflammatory markers and clinical events. METHODS: Paired renal biopsies obtained from living donor (n=10) and cadaveric allografts (n=50) before and 7 days posttransplant were stained for MICB, leukocytic infiltration, and HLA class II antigens. RESULTS: Variable tubular MICB expression was evident in donor biopsies [high 6/60 (10%), low/negative 13/60 (22%), intermediate 41/60 (68%)]. Following transplantation, MICB was up-regulated on renal tubules of 17/60 (28%) biopsies and was associated with MHC class II antigen induction (P=0.02) and leukocyte infiltration (P=0.01). Acute tubular necrosis leading to delayed graft function (DGF) and acute rejection (AR) cause cellular stress within the transplanted kidney. We found a strong association between up-regulation of MICB and cellular stress, 15/17 biopsies with up-regulated MICB expression had AR and/or DGF (P=0.003). CONCLUSIONS: This is the first study demonstrating variable levels of MICB expression in kidneys before transplantation and induction of MICB expression following renal transplantation. MICB expression is associated with HLA class II antigen induction, leukocytic infiltration of the graft and cellular stress in the transplanted kidney. Expression of MICB could contribute significantly to the alloimmune response in mismatched donors and recipients.
spellingShingle Quiroga, I
Salio, M
Koo, D
Cerundolo, L
Shepherd, D
Cerundolo, V
Fuggle, S
Expression of MHC class I-related Chain B (MICB) molecules on renal transplant biopsies.
title Expression of MHC class I-related Chain B (MICB) molecules on renal transplant biopsies.
title_full Expression of MHC class I-related Chain B (MICB) molecules on renal transplant biopsies.
title_fullStr Expression of MHC class I-related Chain B (MICB) molecules on renal transplant biopsies.
title_full_unstemmed Expression of MHC class I-related Chain B (MICB) molecules on renal transplant biopsies.
title_short Expression of MHC class I-related Chain B (MICB) molecules on renal transplant biopsies.
title_sort expression of mhc class i related chain b micb molecules on renal transplant biopsies
work_keys_str_mv AT quirogai expressionofmhcclassirelatedchainbmicbmoleculesonrenaltransplantbiopsies
AT saliom expressionofmhcclassirelatedchainbmicbmoleculesonrenaltransplantbiopsies
AT kood expressionofmhcclassirelatedchainbmicbmoleculesonrenaltransplantbiopsies
AT cerundolol expressionofmhcclassirelatedchainbmicbmoleculesonrenaltransplantbiopsies
AT shepherdd expressionofmhcclassirelatedchainbmicbmoleculesonrenaltransplantbiopsies
AT cerundolov expressionofmhcclassirelatedchainbmicbmoleculesonrenaltransplantbiopsies
AT fuggles expressionofmhcclassirelatedchainbmicbmoleculesonrenaltransplantbiopsies