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A M Luger

Publications and source records attributed to A M Luger.

At least 19 recordsLinked to original sources

Cold ischemia time: an independent predictor of increased HLA class I antibody production after rejection of a primary cadaveric renal allograft.

BACKGROUND: Cadaveric kidneys experiencing longer cold ischemia time (CIT) are associated with higher levels of delayed graft function, acute rejection, and early graft loss. One mechanism to explain these results is that ischemia/reperfusion (I/R) injury makes the allograft more immunogenic by upregulating molecules involved in the immune response (e.g., HLA Class I/II). METHODS: We evaluated the influence of CIT on the production of HLA Class I antibody level, measured by an antihuman globulin panel reactive antibody (AHG PRA) level, in 90 unsensitized recipients of primary cadaveric renal transplants (from a total of 1442 between 1985 and 1997) who rejected their kidneys. RESULTS: By multivariate analysis, a CIT of 15 hr or more (vs. < 15 hr) independently increased the risk of the AHG Class I PRA level being > or = 20% after unsensitized patients rejected their first kidneys (relative risk=3.57; 95% confidence interval=1.26 to 10.14; P=0.01), despite the same degree of Class I/II mismatch between the two CIT groups. The overall mean peak PRA level after primary kidney rejection was significantly lower for the CIT < 15 hr group (25.9%+/-33.9; n=24) compared with the CIT > or = 15 hr group (46.3%+/-36.5; n=66) (P<0.001). CONCLUSION: Longer CIT induces a humorally more immunogenic kidney.

Adult↗

IgM antibodies identified by a DTT-ameliorated positive crossmatch do not influence renal graft outcome but the strength of the IgM lymphocytotoxicity is associated with DR phenotype.

A positive crossmatch that is rendered negative by treating the serum with the IgM-reducing agent dithiothreitol (DTT) is generally reported not to influence short-term renal graft outcome. Its effect on long-term (> or = 3 years) cadaveric and live-donor transplant function, however, is less clear. We evaluated the effect of IgM antibodies in a DTT-ameliorated positive crossmatch (DTT-APXM) on long-term renal graft outcome in 1,290 consecutive cadaveric renal transplants (8-year survival) and 384 live-donor renal transplants (7-year survival) from patients transplanted between 1990 and 1999. The data show that 1- and 8-year graft survival for cadaveric renal transplants in patients with IgM antibodies (n=72) (DWFG censored = 91% and 65%; DWFG not censored = 90% and 60%) was not significantly different from the group without IgM antibodies (n = 1,218) (DWFG censored = 92% and 71%; DWFG not censored = 87% and 55%) (log-rank = 0.25 for DWFG censored, log-rank = 0.92 for DWFG not censored). The one- and seven-year graft survival for live-donor renal transplants in patients with IgM antibodies seen in a DTT-APXM (n = 22) (DWFG censored = 95% and 83%; DWFG not censored = 95% and 66%) was not significantly different from the group without IgM antibodies (n = 362) (DWFG censored = 94% and 81%; DWFG not censored = 92% and 73%) (log-rank = 0.61 for DWFG censored, log-rank = 0.89 for DWFG not censored). DR phenotype was found to be associated with the strong (>40% cell death) IgM reactivity in both black and white patients. In white patients, DR2 was more frequently seen with a strong IgM crossmatch (48.2%) than in molecularly typed controls (28.5%) (P < 0.03) and concomitant with that DR increase, DR4 was decreased in white patients (6.8%) compared with controls (25.5%) (P < 0.02). In black patients with strong IgM reactivity, DR6 was increased in patients (46.1%) compared with controls (20.5%) (P = 0.07) and concomitant with that DR6 increase, DR5 was decreased in frequency in black patients (7.6%) compared with controls (41%) (P < 0.03). These data show that long-term graft survival in renal transplantation is not negatively influenced by the presence of donor-reactive lymphocytotoxic antibodies in the crossmatch ameliorated by serum DTT treatment. They also suggest that the strength of the IgM antibody response is regulated in part by certain gene (s) of the DR region.

Adult↗

Are wedge biopsies of cadaveric kidneys obtained at procurement reliable?

BACKGROUND: Single wedge biopsy of cadaveric kidneys from donors older than 55 is currently the standard method of evaluating their viability for transplantation. The degree of glomerulosclerosis presently determines whether a kidney can be transplanted, but most biopsies sample only the subcapsular region and may not accurately represent the true renal architecture. Our study evaluated the accuracy of transplant suitability determinations based upon the single wedge biopsy of cadaveric kidneys. METHODS: We took kidneys that were refused by UNOS centers on the basis of biopsy results, examined their histology in detail, and reviewed donor medical histories. Sections were taken from the upper, lower, and mid-portion of each kidney and stained with the periodic acid Schiff stain. Percentage and location of glomerulosclerosis and other relevant pathology were then determined in each section. We compared our findings with the results of the original wedge biopsies obtained at the time of procurement. RESULTS: Nine kidneys were obtained and examined. The wedge biopsies at the time of procurement showed glomerulosclerosis ranging from 8 to 36% (median 17%). The multiple kidney sections we analyzed showed fewer sclerosed glomeruli, ranging from 3 to 15% (median 7%, P<0.001), with most of the sclerosed glomeruli identified located in the immediate subcapsular region (P<0.001). CONCLUSIONS: Wedge biopsies of donor kidneys can overestimate the total amount of glomerulosclerosis, apparently because of a predominance of sclerosis in the kidney's subcapsular region, the area predominantly sampled by the usual wedge biopsy. These inappropriately high estimates of glomerulosclerosis can result in refusal of kidneys that might be suitable for transplantation.

Biopsy↗

Successful cadaveric renal transplantation of patients highly sensitized to HLA Class I antigens.

The purpose of our investigation was to evaluate long-term graft survival and the role of histocompatibility in patients who were highly sensitized to human leukocyte antigen (HLA) Class I antigens and received a cadaveric renal transplant. Our multi-institutional study evaluated 7-yr graft outcomes and the histocompatibility requirements of 61 (6.1%) highly sensitized (anti-human globulin panel reactive antibody [AHG PRA], > or = 80%) cadaveric renal transplantation patients, transplanted between 1988 and 1997, among 999 consecutive cadaveric renal transplants. One- and 7-yr graft survival in the high PRA group (n = 61) was 76 and 59%, and was not significantly different from that in the low PRA group (n = 938), 86 and 59% (Wilcoxon = 0.11; log-rank = 0.45) (died with a functioning graft [DWFG] not censored). When those data were divided into primary and regrafts, 1- and 7-yr graft outcomes for high and low PRA groups were not significantly different [(primary, 1- and 7-yr survival: high PRA = 83 and 74%, n = 30, and low PRA = 87 and 61%, n = 825; log-rank = 0.37 for DWFG not censored) (regrafts, 1- and 7-yr survival: high PRA = 70 and 42%, n = 31, and low PRA = 80 and 43%, n = 113; log-rank = 0.36 for DWFG not censored)]. We did observe a subgroup of the high PRA patient group that had inferior graft outcomes. Graft outcome at 1 and 6 yr in the high PRA group for patients who had one to two DR mismatches (65 and 50%, n = 41) was significantly worse than for high PRA patients who had zero DR mismatches with their donors (100 and 78%, n = 20) (log-rank = 0.01 for DWFG not censored). Furthermore, the mean number of HLA-A and -B mismatches was significantly greater in the high PRA/DR-mismatched group (1.7 +/- 1.2, n = 41) compared with the high PRA/zero DR-mismatched group (0.5 +/- 1.1, n = 19) (p < 0.001). Overall, these data suggest that the patient who is highly sensitized to HLA Class I antigens has a long-term graft outcome that is equivalent to less sensitized patients, but that HLA-DR mismatching and a higher degree of Class I mismatching may be poor prognostic indicators in such patients.

Adult↗

Transplantation rate of the blood group B waiting list is increased by using A2 and A2B kidneys.

BACKGROUND: We have increased the transplantation rate for blood group B cadaveric waiting list candidates by transplanting them with A2 and A2B kidneys. METHODS: Since 1991, five of the seven renal transplant programs in our organ procurement organization service area have preferentially transplanted blood group A2 and A2B cadaveric kidneys to B blood group waiting list candidates with histories of low anti-A isoagglutinin titers. RESULTS: Between 1991 and 1997, these five centers performed transplantations on 71 patients from the B cadaveric waiting list. Of those 71 patients, 29% (21 of 71) underwent transplantation with either A2 (n=18) or A2B (n=3) cadaveric kidneys. In 1997 alone, 48% (11 of 23) of the B patient transplant recipients received A2 or A2B kidneys. CONCLUSIONS: Transplantation of A2 and A2B kidneys into B waiting list patients has successfully increased access of B patients to kidneys. Such an allocation algorithm implemented nationally may similarly increase the transplantation rate of B waiting list candidates.

ABO Blood-Group System↗

Long-term graft survival is improved in cadaveric renal retransplantation by flow cytometric crossmatching.

BACKGROUND: Cadaveric renal retransplantation is associated with a higher risk of early graft failure than primary grafts. A large proportion of those graft losses is likely attributable to donor-directed HLA class I antibodies, detectable by flow cytometry cross-matching but not by conventional crossmatching techniques. METHODS: Long-term graft survival in a group of 106 recipients of consecutive cadaveric renal regrafts between 1990 and 1997, in whom a negative flow T-cell IgG crossmatch was required for transplantation, was compared with two other groups of cadaveric transplant recipients. The first group consisted of 174 cadaveric regrafts transplanted between 1985 and 1995 using only a negative anti-human globulin (AHG) T-cell IgG crossmatch. The second group was primary cadaveric transplants done concurrently with the flow group (1990 to 1997) using only the AHG T-cell IgG crossmatch. RESULTS: The long-term (7 year) graft survival rate of flow crossmatch-selected regraft recipients (68%; n= 106) was significantly improved over that of regraft recipients who were selected for transplantation by only the AHG crossmatch technique (45%; n=174; log-rank=0.001; censored for patients dying with a functioning graft). Graft outcome for the flow cross-matched regraft recipients was not significantly different from that of primary cadaveric patients (72%; n=889; log-rank=0.2; censored for patients dying with a functioning graft). Finally, a positive B-cell IgG flow cytometric crossmatch had no influence on long-term regraft outcome. CONCLUSIONS: The use of the flow T-cell IgG cross-match as the exclusion criterion for cadaveric renal retransplantation yields an improved long-term graft outcome over that obtained when only the AHG cross-match is used and has improved survival of regraft recipients to the level of our primary cadaveric renal transplant population.

Adult↗

Influence of the Rh (D) blood group system on graft survival in renal transplantation.

BACKGROUND: The Rh (D) blood group system has not traditionally been considered to be a clinically relevant histocompatibility barrier in transplantation since conflicting results of its clinical importance have been reported. METHODS: We analyzed 786 consecutive primary cadaveric renal transplants performed by transplant centers in our Organ Procurement Organization (OPO) between 1990 and 1997. We also analyzed United Network for Organ Sharing (UNOS) data on 26,469 kidney transplants done from April 1994 to June 1996. RESULTS: Multivariate analysis revealed that Rh identity between the recipient and donor was significantly related to better graft outcome (risk ratio, 0.43; 95% confidence interval, 0.30 to 0.61; P=0.0001). Multivariate analysis of the UNOS data revealed that the Rh -/- group may have a positive influence on graft survival with a risk ratio of 0.43 (P=0.14). CONCLUSION: Multivariate analysis of primary cadaveric renal allografts performed within the Midwest Organ Bank OPO indicates that Rh (D) is a clinically relevant histocompatibility barrier that influences 7-year graft survival.

Blood Grouping and Crossmatching↗

Ten-year experience in transplantation of A2 kidneys into B and O recipients.

BACKGROUND: This article summarizes our 10-year multicenter experience with transplantation of 50 blood group A2 and A2B kidneys into B and O patients. METHODS: Since 1986, we have transplanted kidneys from 46 cadaver donors and 4 living donors who were blood group A2 (47 donors) or A2B (3 donors) into 19 B and 31 O patients. In 1991, we began allocating these kidneys preferentially to B and O recipients who were selected based on a history of low (< or =4) anti-A IgG isoagglutinin titers. Immunosuppression was no different from that used in ABO-compatible grafts. RESULTS: The 1-month function rate before thus selecting the patients was 68% (19/28), but is now 94% (17/18). Two-year cadaver-donor graft survival with this selection method is 94%, compared with 88% for 640 concurrent and consecutive ABO-compatible transplants (log-rank, 0.15). All four living-related transplants are still functioning, with a mean follow-up of 71 months. Since we began allocating A2 kidneys preferentially to B and O recipients, the percentage of the B patients who received A2 or A2B kidneys has increased from 29% (8/28) to 55% (10/18). CONCLUSIONS: Transplantation of A2 or A2B kidneys into B and O patients is clinically equivalent to that of ABO-compatible transplantation when recipients are selected by low pretransplant anti-A titer histories. This approach increases access of blood group B recipients to kidneys.

ABO Blood-Group System↗

HLA-DR and DQ typing by polymerase chain reaction using sequence-specific primer mixes reduces the incidence of phenotypic homozygosity (blanks) over serology.

Because of the inherent difficulties in allele assignment with HLA-DR serological typing, in 1993 our organ procurement organization-based HLA laboratory replaced serology with the molecular method of polymerase chain reaction using sequence-specific primer mixes (PCR-SSP) to type for DR and DQ at a resolution level equivalent to that of serologically defined antigens. In this study, we compared the incidence of DR blanks, where allocative homozygosity occurred, and graft outcome during our serology epoch (1987-1993) with that of our molecular epoch (1993-1996). The incidence of DR blanks by PCR-SSP (17.0%; 138/1101) was significantly lower (P<0.005) than in the serology epoch (21.5%; 569/2647). Although DQ is not a component of the allocation algorithm, the incidence of blanks in the molecular era (21.9%; 196/895) was 46% lower (P<0.001) than in the serology epoch (40.8%; 931/2277). Graft survival in 163 cadaveric renal transplant recipients for whom molecular DR allocation occurred (patient and donor were molecularly typed) showed that PCR-SSP typing had no significant effect on 2.5-year graft survival for patients mismatched for 0 (97%), 1 (90%), or 2 (94%) HLA-DR antigens (P=0.4; log-rank). In conclusion, molecular typing lowered the rate of DR and DQ blanks, but molecular matching for HLA DR and DQ did not influence graft outcome at 2.5 years.

Blood Grouping and Crossmatching↗

Improved graft survival in cadaveric renal retransplantation by flow crossmatching.

OBJECTIVE: To evaluate the role of flow cytometry cross-matching on graft survival in patients undergoing cadaveric renal retransplantation compared with our conventional antihuman globulin cytotoxic crossmatch. DESIGN: In 1990, 6 of 7 transplantation centers in 1 organ procurement organization service area began performing cadaveric renal retransplantation only if the flow T-cell IgG crossmatch was negative. During that period, 1 center continued to use only the antihuman globulin T-cell IgG crossmatch. Prior to 1990, all centers used only the antihuman globulin T-cell IgG crossmatch as their crossmatch selection criterion for retransplantation. Regraft survival was compared between those centers by crossmatch selection criteria. PATIENTS: Patient selection and immunosuppression decisions were made at the transplantation center. SETTING: All flow cytometry crossmatches for all 7 centers participating in the evaluation were performed at the Histocompatibility Laboratory of the Midwest Organ Bank Inc, Westwood, Kan. RESULTS: Graft survival is significantly better (P = .03 [logrank test]) in regrafts when the flow crossmatch is used to select patients for transplantation. CONCLUSION: Flow crossmatching improves graft survival in cadaveric renal retransplantation by identifying a subset of patients with donor-directed HLA class I antibodies that are not detectable by our conventional antihuman globulin crossmatch.

Cadaver↗

De novo membranous glomerulopathy in renal allografts with unusual histology.

We describe two cases of de novo membranous glomerulopathy in the renal allograft, with unusual histologic findings. In one patient the allograft nephrectomy specimen showed numerous foam cells in the intima of hyperplastic arteries along with prominent features of chronic rejection. In the other patient, prominent IgM deposits were seen in the glomerular mesangium without chronic rejection.

Adult↗

Idiopathic focal segmental glomerulosclerosis in a patient with systemic lupus erythematosus: an unusual combination.

Renal involvement is a major cause of morbidity in patients with systemic lupus erythematosus (SLE). Histologic examination of renal tissue using light microscopy, immunofluorescent staining, and electron microscopy permit identification of glomerular immune complex deposits in virtually all patients with SLE. We report a patient who fulfilled four American College of Rheumatology criteria for the classification of SLE whose clinical course was consistent with SLE, yet whose renal failure resulted from focal glomerulosclerosis that was not mediated by immune complexes. The characteristics of this case of focal glomerulosclerosis that differentiate it from healed focal proliferative glomerulonephritis are discussed.

Biopsy↗