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Biomedical subjects

R Gayner

Publications and source records attributed to R Gayner.

3 recordsLinked to original sources

Race and delayed kidney allograft function.

BACKGROUND: Allograft survival among black recipients is poorer than among whites. Delayed allograft function is associated with a significant reduction in renal allograft survival. The relationship between delayed allograft function and black race is incompletely specified and was the focus of this investigation. METHODS: A non-concurrent study of 325 recipients of cadaveric allografts followed for the occurrence of delayed allograft function defined as dialysis during the first week following transplantation for the principal analysis. A secondary definition of delayed allograft function was formulated based on the serum creatinine 2 weeks after transplantation. Unadjusted and adjusted logistic regression analysis were used to examine the unconfounded relationship between race and delayed allograft function. RESULTS: Fifty-seven of 91 (62.6%) black recipients experienced delayed allograft function compared to 113 of 234 (48.3%) whites. The odds ratio for black race as a predictor of delayed allograft function was 1.80, P=0.02, (95% CI, 1.09, 2.95). This finding was stable despite adjustment for other predictors of delayed allograft function in a multivariate model, but the precision of this estimate was less (P=0.10) because of missing data. Additionally, adjusted models with imputed values for missing covariates, models using a secondary definition of delayed allograft function, and models excluding patients whose cyclosporin therapy was delayed, all consistently demonstrated a similar association between black race and delayed allograft function. CONCLUSIONS: This study demonstrated an increased risk of delayed allograft function among black recipients. This relationship may play a role in the poorer allograft outcomes experienced by black recipients. Given the negative effect of delayed allograft function on allograft survival, efforts to identify its modifiable risk factors should be a high priority.

Adult

Delayed function reduces renal allograft survival independent of acute rejection.

BACKGROUND: Mechanisms by which delayed allograft function reduces renal allograft survival are poorly understood. This study evaluated the relationship of delayed allograft function to acute rejection and long-term survival of cadaveric allografts. METHODS: 338 recipients of cadaveric allografts were followed until death, resumption of dialysis, retransplantation, loss to follow-up, or the study's end, which ever came first. Delayed allograft function was defined by dialysis during the first week following transplantation. Multivariate Cox proportional hazards survival analysis was used to assess the relationship of delayed allograft function to rejection and allograft survival. RESULTS: Delayed allograft function, recipient age, preformed reactive antibody levels, prior kidney transplantation, recipient race, rejection during the first 30 days and rejection subsequent to 30 days following transplantation were predictive of allograft survival in multivariate survival models. Delayed allograft function was associated with shorter allograft survival after adjustment for acute rejection and other covariates (relative rate of failure [RR]+1.72 [95% CI, 1.07, 2.76]). The adjusted RR of allograft failure associated with any rejection during the first 30 days was 1.99 (1.23, 3.21), and for rejection subsequent to the first 30 days was 3.53 (2.9 08, 6.00). The impact of delayed allograft function did not change substantially (RR=1.84 [1.15, 2.95]) in models not controlling for acute rejection. These results were stable among several subgroups of patients and using alternative definitions of allograft survival and delayed allograft function. CONCLUSIONS: This study demonstrates that delayed allograft function and acute allograft rejection have important independent and deleterious effects on cadaveric allograft survival. These results suggest that the effect of delayed allograft function is mediated, in part, through mechanisms not involving acute clinical rejection.

Acute Disease

Dietary protein restriction and glomerular permselectivity in nephrotoxic serum nephritis.

We have previously demonstrated that long-term dietary protein restriction ameliorates proteinuria and limits glomerular structural injury in rats with nephrotoxic serum nephritis. In the present study, we examined the influence of short-term dietary protein restriction on glomerular permselectivity. As compared to nephritic rats maintained on a normal protein diet, whole kidney and single nephron hemodynamics were lower in nephritic rats subjected to dietary protein restriction of three days duration (glomerular filtration rate: 0.79 +/- 0.10 vs. 1.46 +/- 0.11 ml/min, P less than 0.003; renal plasma flow rate: 2.50 +/- 0.34 vs. 3.96 +/- 0.38 ml/min, P less than 0.02; glomerular capillary pressure: 44 +/- 1 vs. 53 +/- 1 mm Hg, P less than 0.002; proteinuria: 77 +/- 15 vs. 224 +/- 14 mg/24 hr, P less than 0.01). This was associated with a rise in afferent resistance, from 2.99 +/- 0.77 to 5.45 +/- 0.94 dyn.sec.cm-5, NS. In nephritic rats maintained on 24% protein, fractional clearances were elevated above control values for neutral dextrans with molecular radii exceeding 50 A but were depressed for those with molecular radii below 30 A (P less than 0.05). Dietary protein restriction elevated the fractional clearances of dextrans with radii less than 30 A while depressing the fractional clearances of dextrans with radii greater than 50 A (P less than 0.05). The proportion of glomerular filtrate permeating the shunt pathway was elevated above control values in nephritic rats on the 24% protein diet but declined in those fed the low protein diet (NSN-24%: 0.86%; NSN-6%: 0.31%; control: 0.19%).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals