A new epitope-based HLA-DPB matching approach for cadaver kidney retransplants
- 15 May 2003
- journal article
- research article
- Published by Wolters Kluwer Health in Transplantation
- Vol. 75 (9) , 1527-1532
- https://doi.org/10.1097/01.tp.0000061759.57702.8a
Abstract
Background. Several years ago a significant impact of matching for HLA-DPB1 alleles on the survival of cadaver kidney retransplants was shown. Here we report the results of a new approach, based on matching for HLA-DPB1 epitopes. Methods. The analysis is based on 1,478 patients who received a cadaver kidney retransplant between 1988 and 1998. DNA methodology (polymerase chain reaction, sequence-specific oligonucleotides) was used to perform HLA-DPB1 typing. Epitope matching was facilitated with the aid of sequence databases and computer calculations. Results. Matching for the HLA-DP epitopes A, B, E, and F, corresponding to the homonymous hypervariable regions of the second exon of the DPB1 gene, seems to have a greater influence on graft survival than matching for the epitopes C and D. Within a group of 529 retransplants with exactly one allelic HLA-DPB1 mismatch, a significantly better graft outcome was observed when less than two epitope mismatches were found, compared with the group with more than three epitope mismatches (at 2 years: 77.8% vs. 65.8%, P =0.0112). Importantly, patients with two DPB1 allele mismatches who had less than or equal to two epitope mismatches exhibited a significantly better graft outcome than recipients who had one HLA-DPB1 allelic mismatch but more than three epitope mismatches (at 2 years: 77.1% vs. 65.8%, P =0.0488). Conclusions. The findings indicate that the impact of HLA-DPB1 matching on the outcome of kidney retransplants is a result of the predominant immunogenicity of certain epitopes of the HLA-DP molecule. Matching for immunogenic HLA-DPB1 epitopes seems to be functionally more relevant than classical matching at the allelic level.Keywords
This publication has 10 references indexed in Scilit:
- HLAMmatchmaker: a molecularly based donor selection algorithm for highly alloimmunized patientsTransplantation Proceedings, 2001
- IMGT/HLA Database--a sequence database for the human major histocompatibility complexNucleic Acids Research, 2001
- CLINICAL RELEVANCE OF HLA-DPB LOCUS MATCHING FOR CADAVER KIDNEY RETRANSPLANTSTransplantation, 1997
- A method for HLA-DQA typing by the PCR-SP techniqueTransplant International, 1994
- Rapid HLA-DPB typing using enzymatically amplified DNA and nonradioactive sequence-specific oligonucleotide probesImmunogenetics, 1990
- SB subregion of the human major histocompatibility complex: gene organization, allelic polymorphism and expression in transformed cells.The EMBO Journal, 1985
- Evidence for a new segregant series of B cell antigens that are encoded in the HLA-D region and that stimulate secondary allogenic proliferative and cytotoxic responses.The Journal of Experimental Medicine, 1980
- The isolation of high molecular weight DNA from whole organisms or large tissue massesAnalytical Biochemistry, 1978
- Nonparametric Estimation from Incomplete ObservationsJournal of the American Statistical Association, 1958