Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Delayed Graft Function”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 559 records · Page 31Linked to original sources

Long-term results of 1047 cadaveric kidney transplantations with special emphasis on initial graft function and rejection.

We studied the effect of initial graft function and acute rejection on graft survival in 1047 cadaveric renal transplantations during 1991-1997 with a constant policy of donor selection, graft allocation, and immunosuppression. The overall 1- and 5-year patient survival rates were 96 % and 88 %, and the 1- and 5-year graft survival (GS) rates were 92 % and 78 %. Delayed graft function (DGF) occurred in 31 % and there were 1.2 % never-functioning grafts. One-year GS in transplantations with early graft function (EGF) was 95 % compared to 87 % in DGF (P < 0.001). Donor age and cause of death, type of graft perfusion and cold ischemia time, and type and length of dialysis treatment were significant factors in determining the onset of graft function. These factors did not have a significant direct effect on GS. Early ( < 100 days) acute rejection occurred in 25 %. In transplantations without rejection, the 1 and 5-year GS was 93.3 % and 80.8 %. In acute rejection responding to steroids, the GS was equal to that up to 3 years, but after that a significantly worse survival rate was observed (1- and 5-year GS: 93.6 % and 73.4 %). DGF was detrimental to GS both in transplantations without rejection and in all rejection types.

Adolescent↗

Early graft function in kidney transplantation from non-heart-beating donors.

The shortage of kidneys for transplantation is a universal problem. The non heart beating donor (NHBD) is one such source. This study evaluates the early graft function after kidney transplantation from NHBD. We report our experience with 126 kidney transplantations retrospectively. As a result, the kidney from NHBD over 50 years of age, led to the longer ATN and high PNF (13.8+/-12.6 days and 16.9% respectively). TIT more than 720 min or less had statistically correlated with the length of ANT (13.3 v. 8.4 days). Significant higher incidence of PNF (19.3%) was shown in the group of TIT more than 720 min with WIT of 20.8+/-31.6 min. Significant low flow by machine perfusion was resulted in PNF. In conclusion, we suggest that early and delayed graft function of kidneys from NHBD should be recognized as a separate clinical entity with its own significant effects.

Adult↗

Four consecutive renal transplantations in a patient with adenine phosphoribosyltransferase deficiency.

We report a patient with complete adenine phosphoribosyltransferase deficiency and urolithiasis, in whom 4 consecutive cadaveric renal transplantations were performed; 2,8-dihydroxyadenine crystal nephropathy recurred within weeks in the first and second graft when the patient was not treated with allopurinol immediately after transplantation. In the third graft, recurrence of disease could be prevented by immediate allopurinol treatment. This graft was lost due to chronic allograft nephropathy without significant crystal deposition. After a fourth transplantation, again without initial allopurinol, the disease recurred following an initial vascular rejection. Addition of allopurinol significantly improved renal function of the 2nd and 4th graft. This case indicates that outcome of renal transplantation in patients with adenine phosphoribosyltransferase deficiency critically depends on immediate postoperative pharmacotherapy with allopurinol, which is able to prevent 2,8-dihydroxyadenine nephropathy in the graft. Furthermore, rapid recurrence of disease without allopurinol seems to be triggered by delayed graft function and acute rejection.

Adenine Phosphoribosyltransferase↗

Long-term survival in renal transplant recipients with graft function.

UNLABELLED: Long-term survival in renal transplant recipients with graft function. BACKGROUND: Death with graft function (DWGF) is a common cause of graft loss. The risks and determinants of DWGF have not been studied in a recent cohort of renal transplant recipients. We performed a population-based survival analysis of U.S. patients with end-stage renal disease (ESRD) transplanted between 1988 and 1997. METHODS: Registry data were used to evaluate long-term patient survival and cause-specific risks of DWGF in 86,502 adult (>/=18 years) renal transplant recipients. RESULTS: Out of 18,482 deaths, 38% (N = 7040) were deaths with graft function. This accounts for 42. 5% of all graft loss. Patient survival with graft function was 97, 91, and 86% at 1, 5, and 10 years, respectively. The risk of DWGF decreased by 67% (RR = 0.33, P < 0.001) between 1988 and 1997. The adjusted rate of DWGF was 4.6, 0.8, 2.2, and 1.4 deaths per 1000 person-years for cardiovascular disease, stroke, infections, and malignancy, respectively. The suicide rate was 15.7 versus 9.0 deaths per 100,000 person-years in the general population (P < 0. 001). In multivariate analysis, the following factors were independently and significantly predictive of DWGF: white recipient, age at transplantation, ESRD caused by hypertension or diabetes mellitus, length of pretransplant dialysis, delayed graft function, acute rejection, panel reactive antibody> 30%, African American donor race, age> 45 years, and donor death caused by cerebrovascular disease. CONCLUSIONS: Patients with graft function have a high long-term survival. Although DWGF is a major cause of graft loss, the risk has declined substantially since 1990. Cardiovascular disease was the predominant reported cause of DWGF. Other causes vary by post-transplant time period. Attention to atherosclerotic risk factors may be the most important challenge to further improve the longevity of patients with successful renal transplants.

Adult↗

Reconstruction of ureteral necrosis in kidney transplantation using an ileum interposition.

PURPOSE: Ureteral necrosis is a serious problem in kidney transplantation. Sometimes re-ureterocystostomy is possible, while other cases require an elaborate reconstruction to maintain kidney function. We report our experience with ileum interposition for ureteral reconstruction. METHODS: After 9 years of dialysis treatment a 58-year-old patient was grafted using the left kidney of a 59-year-old donor with a cold ischemic time of 9.5 hours. The early postoperative course was uneventful apart from delayed graft function. Immunosuppression consisted of an IL-2-receptor antibody, calcineurin inhibitor, mycophenolate mofetil, and corticosteroids. Discharge serum creatinine was 2.3 mg/dL. In month 4 the patient showed a pararenal urinoma; cystoscopy revealed necrosis of the distal ureter. Operative revision showed urine leakage from the renal pelvis through the urinoma into the bladder. As the whole ureter was necrotic, a re-ureterocystostomy was not possible. The patient's own ureter had been extirpated, and the bladder was too small to do a direct anastomosis between it and the kidney. Consequently, an ileum interposition was performed. RESULTS: The postoperative course was uneventful. Kidney function was stable with a nadir creatinine concentration of 2.0 mg/dL 18 months' posttransplantation, and 14 months' post ileal interposition the kidney function was still satisfactory, with a creatinine level of 2.0 mg/dL. CONCLUSION: Ureteral necrosis is a serious complication following kidney transplantation. Whenever a re-ureterocystostomy or an uretero-ureterostomy is not possible, the interposition of the ileal segment represented a safe procedure to deal with this problem.

Humans↗

Does donor cardiopulmonary resuscitation time affect outcome in uncontrolled non-heart-beating donor renal transplants?

Uncontrolled non-heart-beating donors offer the opportunity to significantly expand the potential pool of kidney donors but are associated with a variable duration of cardiopulmonary resuscitation (CPR), where cardiac output is only 30% to 40% of normal. We were concerned that prolonged CPR would adversely affect the function of transplanted kidneys. In our series of 46 uncontrolled donors the mean duration of CPR was 60 minutes, which also represents a realistic cutoff point for CPR duration. Taking a cutoff point of 60 minutes, we found no differences in kidney discard rates following viability assessment, primary nonfunction rate, or duration of delayed graft function. We therefore conclude that if formal viability assessment is performed, kidneys may be retrieved from uncontrolled non-heart-beating donors irrespective of duration of CPR.

Cardiac Output↗

Differences in proteinuria and graft function in de novo sirolimus-based vs. calcineurin inhibitor-based immunosuppression in live donor kidney transplantation.

BACKGROUND: Calcineurin inhibitor(CNI)-free protocols using sirolimus (SRL) in kidney transplantation have proven effective, although reports have linked SRL to proteinuria. We sought to investigate this link and its impact on graft function. METHODS: We retrospectively analyzed 184 live donor kidney transplant recipients who exclusively received de novo CNI-based (n = 106) or SRL-based (n = 78) regimens. Estimated glomerular filtration rate (GFR) and semi-quantitative dipstick proteinuria measurements were obtained at one, six, 12, and 24 months and six and 12 months, respectively. RESULTS: SRL-treated patients had higher frequencies of proteinuria (> or =1+) at 6 months (40.8% vs. 21.4%, P = 0.006) and 12 months (37.8% vs. 18.4%, P = 0.004) than those treated with CNI. Independent predictors of proteinuria at 12 months were GFR at one month (OR 0.62 per 10 ml/min/1.73 m, P<0.001), delayed graft function (OR 11.5, P = 0.02), and a SRL-based regimen (OR 4.18, P=0.002). By univariable analysis, SRL vs. CNI patients had higher GFR at each point. SRL-treated patients without proteinuria had higher GFR at 12 months compared to CNI-treated patients with and without proteinuria (66 vs. 50 or 56 ml/min/1.73 m, P < 0.05). No difference in GFR was seen between SRL-treated patients with proteinuria vs. CNI-treated patients without proteinuria (57 vs. 56 ml/min/1.73 m, P > 0.05). Absence of proteinuria and a SRL-based regimen remained independently associated FS with higher GFR at 12 months by multivariable analyses. CONCLUSIONS: De novo SRL-based immunosuppression is associated with a higher frequency of semi-quantitative proteinuria, however, estimated graft function at 1 year posttransplant remains superior to that of CNI-treated patients. Nevertheless, the long-term implications of these findings need to be determined.

Adult↗

Early post-transplant renal allograft function between 1990 and 1998 in Spain.

BACKGROUND: The last decade has witnessed a sustained improvement of renal allograft survival that is partly explained by a better preservation of renal allograft function. This study describes time-dependent modifications of serum creatinine (SCr) during the first year after transplantation in the last decade in Spain and characterizes the predictive value of SCr on death-censored graft survival. METHODS: A total of 3365 adult patients transplanted in 1990 (n = 824), 1994 (n = 1075) and 1998 (n = 1466) with a functioning graft after the first year were included. Renal function deterioration during the first year was expressed as the difference between SCr at 1 year and SCr at 3 months. RESULTS: Despite the projected renal allograft half-life, estimation was significantly higher in 1998 than in 1990 (17.7 vs 15.4 years, P = 0.007), the SCr levels at 3 months were significantly lower in 1990 (1.59+/-0.64) than in 1998 (1.65+/-0.66). While SCr tended to worsen during the first year in 1990 (0.05+/-0.64) it improved in 1998 (-0.003+/-0.48), P = 0.0001. The following variables were significantly associated with SCr at 3 months: donor age and sex, cause of death, recipient sex, time on dialysis, cold ischaemia time, delayed graft function, acute rejection, cytomegalovirus infection and reintervention for any reason. Renal function deterioration during the first year was associated with the presence of acute rejection and hepatitis C virus antibodies in the recipient. CONCLUSIONS: Despite poorer renal function at 3 months in 1998 than in 1990, renal allograft survival has improved in Spain between 1990 and 1998. This result is partly explained by a slower deterioration of renal function during the first year of follow-up.

Female↗

Warm ischemic time during laparoscopic live donor nephrectomy: effects on graft function.

BACKGROUND: Laparoscopic live donor nephrectomy (LDN) has become established as a safe and effective alternative to the open procedure. However, the effect of prolonged warm ischemia time (WIT) during retrieval of the kidney remains unclear. The aim of this study was to analyze the effects of WIT on short-term and long-term graft outcomes after LDN. METHOD: In this retrospective analysis of LDN the effects of WIT on delayed graft function, rate of decline in serum creatinine concentration (SCr) in the first 10 days, changes in SCr at 3 months, acute rejection rate changes in Delta creatinine, biopsy-proved chronic allograft rejection and graft survival were assessed according to duration of WIT. Analysis was made by comparing WIT < or =3 versus >3 minutes and WIT <5, 5-10, and >10 minutes. RESULTS: The WIT, which ranged from 1 to 15 minutes, appeared to be related to the learning curve and to technical difficulties. Prolonged WIT did not appear to have an effect on early graft function or the rate of decline in SCr during the first 3 months posttransplantation, but may be associated with an increased rate of acute rejection. Changes in Delta creatinine over time were not affected by the length of WIT during LDN. CONCLUSION: WIT encountered during LDN has no effect on either short-term or long-term graft outcome.

Acute Disease↗

Predictive factors of postrenal transplant anemia.

OBJECTIVE: The aim of our study was to identify independent factors that might predict anemia at 6 months' (M6) and 12 (M12) months' posttransplantation. Postrenal transplant anemia was defined as a hemoglobin (Hb) level below 13 g/dL for men, and below 12 g/dL for women. We included 99 renal transplants performed in our department in 2001, for whom the graft was still functioning at 1 year. RESULTS: Anemia was observed in 78%, 35.5%, and 25% on day (D) 0, and at M6, and M12, respectively. Iron deficiency was observed in 14% of patients at D0, and 13% at M12. During the postoperative period, 59.8% of patients received at least one blood transfusion, whereas 37% of patients were prescribed recombinant erythropoietin (rEpo) therapy within the first few months posttransplantation. By multivariate analysis the independent predictive factors for anemia at M6 were rEpo therapy at D0, initial nephropathy, posttransplantation rEpo therapy, hematocrit at M3, platelets at D7 and sirolimus therapy. The independent predictive factors for anemia at M12 were rEpo therapy at D0 and platelets at D7, delayed graft function (DGF), serum creatinine, and creatinine clearance at M12, and Hb level at M6 were also checked. CONCLUSION: The prevalence of anemia is 25% at M12; DGF, renal function at M12, and anemia at M6 were independent risk factors of anemia at M12.

Adult↗

Hypertension after kidney transplantation.

BACKGROUND: Few studies have examined the possible role of blood pressure (BP), independent of acute rejection and graft function, on outcomes after kidney transplantation. METHODS: We investigated the prevalence, treatment, control, and clinical correlates of hypertension and its association with outcomes, using multivariate analyses with time-dependent covariates, in a retrospective cohort of 1,666 kidney transplant recipients. RESULTS: Hypertension was common, and its control was poor. For example, at 1 year, only 55.5% had a BP less than 140 mm Hg. Control improved only slightly in 1993-2002 compared to 1976-2002, even as patients administered 2 or more antihypertensive medications at 1 year increased from 43.5% to 54.6%. Independent correlates of higher BP included male sex, age, donor age, diabetes, body mass index, the presence of native kidneys, and delayed graft function. Previous acute rejection was associated with higher BP at virtually all times after transplantation, and these associations were independent of estimated creatinine clearance (C(Cr)). Conversely, an association between BP and subsequent acute rejection was not statistically significant when differences in C(Cr) were taken into account. After adjusting for the effects of acute rejection, C(Cr), and other variables, each 10 mm Hg of systolic BP was associated with an increased relative risk for graft failure (1.12; 95% confidence interval, 1.08 to 1.15; P < 0.0001), death-censored graft failure (1.17; 1.12 to 1.22; P < 0.0001), and death (1.18; 1.12 to 1.23; P < 0.0001). CONCLUSION: High BP is closely tied to graft function, but nevertheless is an independent risk factor for graft failure and mortality. Better strategies are needed to control BP after kidney transplantation.

Adult↗

Glomerular size in early protocol biopsies is associated with graft outcome.

Long-term consequences of glomerular enlargement after transplantation are not well understood. The aim is to evaluate the relationship between glomerular volume (Vg) estimated in protocol biopsies, graft function and graft survival. Vg and Banff chronic damage score were evaluated in protocol biopsies at 4 months. Creatinine clearance (CrCl) was estimated by the Cockroft-Gault formula. Vg estimated in 144 patients was 4.8 +/- 2.0 x 10(6)mu(3). It was associated with donor age (r = 0.23, p < 0.01), recipient body mass index (r = 0.17, p = 0.04), delayed graft function (Vg = 5.9 +/- 2.3 vs. 4.6 +/- 1.9 x 10(6)mu(3), p < 0.01) and CrCl (r = 0.17, p = 0.04). The best cutoff of Vg, Banff chronic damage score and CrCl was determined by Cox regression analysis, being 5.0 x 10(6)mu(3) for Vg (relative risk (RR): 2.4, 95% confidence interval (CI): 1.03-5.6), >2 for chronic damage score (RR: 3.4, 95% CI: 1.03-8.9) and 60 mL/min for CrCl (RR: 3.5, 95% CI: 1.04-11.9). These variables were independent predictors of death-censored graft survival. According to Vg and CrCl, four groups of patients were defined. Patients with small glomeruli and high CrCl had a 95% graft survival while patients with large glomeruli and low CrCl had a 45% graft survival at 15 years (p < 0.01). Large glomerular volume, high Banff chronic score and poor early renal function in stable grafts are independently associated with death-censored graft survival.

Adolescent↗

Risk factors for late kidney allograft failure.

BACKGROUND: While graft survival rates in the short term have improved dramatically, only a modest improvement has been shown in long-term graft survival rates. We evaluated the causes of late failure in renal allograft recipients treated with cyclosporine A (CsA). METHODS: A total of 864 adults with a functioning graft at one year were evaluated. The end points were dialysis or death with a functioning graft. RESULTS: The 13-year patient and graft survival probabilities were 0.82 and 0.64, respectively. The graft half-life was 20.1 years and the pure graft half-life was 31.1 years. At multivariate analysis, plasma creatinine at one year (P = 0.0006; RR 1.72), low-density lipoproteins (LDL) at one year (P = 0.0014; RR 1.65), older age (P = 0.0128; RR 1.50) and delayed graft function (P = 0.0350; RR 1.45) were associated with the end point. Chronic allograft nephropathy was the cause of failure in 97 patients, death in 70, recurrence of glomerulonephritis in 24, other events in 6. Cardiovascular complications were the most frequent cause of death. Post-transplant cardiovascular events were associated with: pre-transplant cardiovascular events (P = 0.0012; RR 2.65), older age (P = 0.0001; RR 2.46), pre-transplant arterial hypertension (P = 0.0249; RR 1.57), smoking (P = 0.0235; RR 1.29), duration of dialysis (P = 0.0229; RR 1.28). Mean serum cholesterol, LDL and triglycerides were each significantly associated post-transplant cardiovascular events. CONCLUSIONS: The graft half-life was 20 years. Chronic allograft nephropathy was the leading cause of late failure, followed by death. If the data were censored by death, the projected pure graft half-life would be 31.1 years. Pre-transplant selection and preparation of the candidate as well as appropriate life style are recommended to improve life expectancy and extend graft survival.

Adolescent↗

Reduction of delayed renal allograft function using sequential immunosuppression.

Previous data suggested that outcome in small children with cadaveric renal transplantation might be improved with sequential therapy. This protocol combines augmented immunosuppression [by including antibody induction (ATG)] with avoidance of nephrotoxic medication in the immediate postoperative phase (by delayed start of cyclosporin therapy). In this report, we describe effects of this approach in 12 consecutively transplanted small children of less than 5 years of age (mean 3.2 years) who received a cadaveric renal graft at our institution between 1991 and 1998. Up to 1996 triple therapy (prednisolone, azathioprine, cyclosporin) and since 1997 sequential therapy (prednisolone, azathioprine, ATG until serum creatinine <2 mg/dl, then cyclosporin) was used for immunosuppression. Five children had delayed graft function (45.4%), all of whom were treated with triple therapy including cyclosporin from the very beginning, whereas children treated by the sequential protocol gained immediate graft function (P<0.05). There was no statistical difference between the two protocols concerning frequency or severity of rejections (67% vs. 60%, all steroid responsive), difference in the incidence of either bacterial or viral infections, or between the incidence of hypertension. Although not reaching statistical significance, 1-year graft survival rates also increased from 60% for triple therapy to 80% for sequential therapy. In conclusion, our findings confirm previous studies showing that outcome in small children undergoing renal transplantation may be improved by specially tailored treatment protocols such as sequential therapy.

Antibodies↗

Management of hyperglycaemia after pancreas transplantation: are new immunosuppressants the answer?

Pancreas transplantation is considered the optimal therapy for patients with diabetes mellitus who reach end-stage renal disease. Despite achievement of euglycaemia after this procedure, the progression to impaired pancreatic function and metabolic exhaustion still represents one of the major concerns that increase the risk of graft loss. This paper reviews the possible mechanisms that can induce post-transplant hyperglycaemia, including those related to immunosuppression and those non-related, and the new strategies available for minimising or preventing this complication. Different aetiologies can induce pancreatic dysfunction. Technical complications, acute pancreatitis and delayed graft function, mostly related to impaired insulin secretion, are considered the early causes for abnormal glucose control. In general, acute rejection does not affect the endocrine portion of the pancreas graft because islet destruction occurs later than the inflammation of the exocrine components. Hyperinsulinaemia and insulin resistance represent the main concern for the progression of blood glucose intolerance. The anastomotic techniques of the exocrine portion of the pancreas and the immunosuppressive regimens are of critical importance for the development of impaired glucose metabolism. Hyperinsulinaemia, as a result of the fact that systemic-enteric or systemic-bladder drainages reducing the hepatic clearance of insulin, has led to the introduction of more physiological techniques using portal drainage of the endocrine secretions. Experimental and clinical data have shown that many of the current immunosuppressants account, to a large degree, for the increased risk of the development of post-transplant hyperglycaemia. The most common maintenance regimen in pancreatic transplantation still consists of triple therapy with a combination of corticosteroids, calcineurin inhibitors (either ciclosporin [cyclosporine] or tacrolimus), and mycophenolate mofetil (MMF).The diabetogenic effects of corticosteroids and calcineurin inhibitors have resulted in the need for protocols able to minimise their use. Recent studies have shown the safety and efficacy of steroid-sparing or -free regimens. Sirolimus has shown powerful immunosuppressive potency in absence of nephrotoxicity and diabetogenicity. Multicentre and single-centre reports have demonstrated that both calcineurin inhibitor withdrawal and avoidance were possible when sirolimus was used in a concentration-controlled fashion, with low-dose corticosteroids and MMF. Although the experience with sirolimus in pancreatic transplantation is still limited, the results are promising. Patients affected by diabetic gastroparesis seem to better tolerate a regimen with sirolimus and low-dose tacrolimus than one with tacrolimus in combination with MMF.For successful, long-term results of pancreatic transplantation, it is crucial to combine donor selection, technical aspects, modified anastomotic techniques and new therapeutic approaches designed to minimise the metabolic and non-metabolic adverse effects of the immunosuppressive regimens.

Animals↗

Predictive factors of anemia within the first year post renal transplant.

BACKGROUND: The aim of our study was to identify the independent factors that might predict anemia at 6 (M6) and 12 (M12) months posttransplantation. METHODS: Postrenal transplant anemia (PTA) was defined as having a hemoglobin (Hb) level below 13 g/dl for men and below 12 g/dL for women. In this study, we included all the recipients who received a renal transplant in 2001 at our department, and for whom the graft was still functioning 1 year later (n=92). RESULTS: Anemia was observed in 78%, 35.5% and 25% of patients at day (D)0 and at M6 and M12, respectively. Iron deficiency was found in 14% of patients at D0 and in 13% of patients at M12. A total of 59.8% of patients had received at least one blood transfusion in the postoperative period, whereas 41.3% of patients had received recombinant erythropoietin (rEpo) therapy within the first months posttransplantation. In multivariate analysis, the independent predictive factors of anemia at M6 were Epo level at D0, initial nephropathy (polycystic kidney disease vs. others), posttransplantation rEpo therapy, hematocrit at M3, platelets at D7, and sirolimus therapy. The independent predictive factors of anemia at M12 were Epo level at D0, platelets at D7, delayed graft function (DGF), creatinine clearance at M12, serum creatinine at M12, and Hb level at M6. CONCLUSIONS: The prevalence of PTA was 25% at M12. DGF, renal function at M12, and anemia at M6 were independent risk factors for still having anemia at M12.

Anemia↗

Role of donor age and acute rejection episodes on long-term graft survival in cadaveric kidney transplantations.

Cadaveric donors can provide an effective solution to the problem of organ shortage, and many factors that may affect the functioning and survival of cadaveric kidneys have been studied. We aimed to clarify the impact of donor age and acute rejection episodes on long-term graft and patient survival in patients receiving cadaveric renal transplants. We retrospectively evaluated the long-term outcomes of 207 patients who had received cadaveric renal transplants between 1985 and 2004. Mean recipient age, HLA mismatch, mean donor age, delayed graft function (DGF), mean cold ischemia time, acute rejection episodes in the first 6 months after transplantation, and 1-, 3-, and 5-year graft survivals were evaluated. Two study groups were created according to donor age: group 1 (n = 126) was composed of patients receiving kidneys from donors younger than 50 years, and group 2 (n = 81) was composed of patients receiving kidneys from donors 50 years of age or older. Mean recipient age, HLA mismatch, and mean cold ischemia time between groups were not different. The DGF rate in group 1 was 40% (n = 50) and in group 2 was 46% (n = 37) (P > .05). The 1-, 3-, and 5-year survival rates of patients without acute rejection within the first 6 months after transplantation in group 1 (58/126; 46%) versus those in group 2 (46/81; 57%) were 95% versus 90%, 65% versus 60%, and 40% versus 35%, respectively (P > .05). The 1-, 3-, and 5-year graft survival rates of patients with acute rejection within the first 6 months in group 1 (n = 68) versus those in group 2 (n = 35) were 93% versus 89%, 71% versus 55%, and 44% versus 28%, respectively (P = .005). There was no significant difference in 1-, 3-, and 5-year survival rates between patients with DGF in both groups. Acute rejection episodes within the first 6 months after cadaveric transplantation, especially in patients receiving kidneys from donors older than 50 years, were shown to affect 5-year survival of the kidney graft. However, cadaver age alone had no negative effect on 5-year graft survival rates. Cadaveric donors older than 50 years may be a solution to the organ shortage in the treatment of end-stage renal disease.

Age Factors↗

What is the calcineurin inhibitor of choice for pediatric renal transplantation?

Cyclosporine microemulsion (CyA) and tacrolimus (Tac) are the principal immunosuppressants prescribed for adult and pediatric renal transplantation. In the majority of patients, these calcineurin inhibitors have been used in combination with other immunosuppressive drugs, such as azathioprine or mycophenolate mofetil (MMF). In this review we will address the question of what calcineurin inhibitor we should use in an individual pediatric renal transplant patient. Well-designed randomized studies in children showed no difference in short-term patient and graft survival with cyclosporine microemulsion and tacrolimus. However Tac is significantly more effective than CyA microemulsion in preventing acute rejection after renal transplantation in a pediatric population when used in conjunction with azathioprine and corticosteroids. This difference disappears when calcineurin inhibitors are used in combination with MMF as both Tac and CyA produce similar rejection rates and graft survival. However, Tac is associated with improved graft function at 1 and 2 yr post-transplant. Adverse events of hypomagnesaemia and diarrhea seem to be higher in Tac group whereas hypertrichosis, flu syndrome and gum hyperplasia occurs more frequently in the CyA group. The incidence of post-transplant diabetes mellitus was almost identical between Tac and CyA treated patients. The recommendation drawn from the available data is that both CyA and Tac can be used safely and effectively in children. However Tac may be preferable to CyA because of steroid sparing effect and less hirsutism. We recommend that cyclosporine should be chosen when patients experience Tac-related adverse events. Nevertheless, the best calcineurin inhibitor should be decided on individual patients according to variable risk factors, such as risk of rejection in sensitized patient or delayed graft function. The possibility of adverse events should also be considered.

Azathioprine↗