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D E Sutherland

Publications and source records attributed to D E Sutherland.

At least 55 records · Page 3Linked to original sources

Distant processing of pancreas islets for autotransplantation following total pancreatectomy.

BACKGROUND: Small duct chronic pancreatitis is associated with intractable pain and failure to thrive, usually unresponsive to conventional management approaches. Total pancreatectomy is considered after failure of medical intervention. The major morbidity following total pancreatectomy is diabetes mellitus with its associated complications. This adverse outcome can be mitigated through autotransplantation of islets recovered from the pancreatectomy specimen. This approach has been limited historically owing to the absence of an on-site islet processing facility. We present the results from 5 pancreatectomized patients whose islets were prepared 1,500 miles away. METHODS: Five patients (4 women, 1 man, average age 42 years) who failed medical therapy and were not candidates for longitudinal pancreaticojejunostomy underwent total/completion pancreatectomy (4 total, 1 completion) for intractable symptoms from idiopathic small duct chronic pancreatitis. The resected pancreata were preserved in ViaSpan solution and were transferred to an islet processing laboratory by commercial airliner and returned. The dispersed pancreatic islet tissue was infused into a portal vein tributary through an operatively placed catheter after systemic heparinization. RESULTS: All 5 patients experienced complete relief from pancreatic pain; 2 had significant residual discomfort from underlying Crohn's disease. Three of the 5 patients had minimal or no insulin requirement after autotransplantation (median follow-up of 23 months); 1 patient continued with glycemic control difficulties related to Crohn's disease. One patient died 17 months following autotransplantation from an unrelated pneumonia. CONCLUSION: Total pancreatectomy with autologous islet transplantation can offer patients with idiopathic small duct chronic pancreatitis pain relief without the sequelae of diabetes mellitus and can be performed without an on-site islet processing facility. All patients undergoing total/ completion pancreatectomy should be considered candidates for this procedure.

Adult↗

Preoperative assessment of adenylylcyclase activity as a functional marker of islet cell quality after transplantation in rats.

To determine the potential value of measuring adenylylcyclase activity as a pre-transplant functional marker of pancreatic islet cell quality, a production rate of adenosine 3':5'-monophosphate was measured with a fluorometric assay in rat islet cells before transplantation. Islets were stored for different periods of time (0 to 96 hours) and in different preservation solutions. The adenylylcyclase activities of islets stored in University of Wisconsin (UW) solution for 3 hours after isolation were significantly higher than those stored in Hanks' balanced salt solution. Similarly, the adenylylcyclase activities of islets stored for more than 24 hours in UW solution decreased significantly with prolonged storage time. Preoperative adenylylcyclase activity was compared with post-transplant islet function in a rat model of diabetes. Transplant success was evaluated by measuring blood glucose level and body weight. Although all transplants were ultimately successful in this study, the rate at which they achieved euglycemia varied, and this is the property that correlated with pre-transplant basal or forskolin-stimulated adenylylcyclase activity. Additional studies showed that it was feasible to measure adenylylcyclase activity in human islet cells. We conclude that preoperative measurement of basal and stimulated adenylylcyclase activity may provide a useful clinical marker for assessing islet cell quality and differences in preservation media and may predict transplant success. Based on these data, additional studies evaluating the feasibility of using adenylylcyclase activity as a research and clinical marker of islet cell viability are warranted.

Adenylyl Cyclases↗

Total pancreatectomy with islet cell autotransplantation: anesthetic implications.

STUDY OBJECTIVE: To make recommendations for the perioperative management of patients undergoing total pancreatectomy with islet cell autotransplantation. DESIGN: Retrospective review. SETTING: University hospital. PATIENTS: 41 patients undergoing total pancreatectomy with autologous islet cell transplantation for chronic pancreatitis from 1977 to 1996. INTERVENTIONS: The charts and anesthetic records were reviewed, specifically investigating the changes in portal venous pressure, blood pressure (BP), and central venous pressure with islet cell injection. The records also were examined for blood glucose levels, type of fluids administered, blood loss, and postoperative complications. MEASUREMENTS AND MAIN RESULTS: Injection of islet cells into the portal vein caused a significant increase in portal venous pressures (8.5 +/- 4.8 to 27 +/- 16 cm/H2O; p < 0.001), which remained elevated at the end of injection (23 +/- 12 cm/H2O; p < 0.001). Central venous pressures also increased a small amount (9.3 +/- 4.3 to 10.6 +/- 5.8 mmHg; p < 0.05). In contrast, systolic blood pressures (SBPs) fell with administration of the islet cells (110 +/- 15 to 103 +/- 17 mmHg; p < 0.01), but SBP recovered in most patients at the end of injection (106 +/- 16 mmHg; p = NS). However, 6 patients (14.6%) required vasopressors to maintain adequate BPs. Blood glucose levels were significantly higher immediately prior to islet cell infusion in patients who had received dextrose-containing solutions than those who did not (246 +/- 80 vs. 176 +/- 43 gm/dl; p = 0.002). Median blood loss was 2000 ml (range 350 to 12,000 ml), and most patients (95.1%) required blood transfusions. CONCLUSION: Although total pancreatectomy with islet cell autotransplantation is a difficult operation, with significant blood loss, most patients tolerate surgery and injection of islet cells into their portal system without hemodynamic instability. Glucose-containing solutions should not be administered to patients prior to islet cell infusion because hyperglycemia, which can damage islet cells, may result.

Adolescent↗

Clostridium difficile colitis after kidney and kidney-pancreas transplantation.

OBJECTIVE: To determine the timing and risk factors involved in the development of Clostridium difficile (CD) colitis in kidney and kidney-pancreas transplant recipients. BACKGROUND DATA: The incidence of CD colitis after kidney and kidney-pancreas transplantation has not been studied in detail. The question of whether the immunosuppressed transplant recipient is more prone to CD colitis and its complications (i.e., megacolon, perforations) and the risk factors involved have not been determined. METHODS: We retrospectively reviewed our experience in kidney and kidney-pancreas recipients who received transplants between January 1, 1985 and December 31, 1994. We divided these recipients into three groups: pediatric kidney recipients, adult kidney recipients, and kidney-pancreas recipients. For each group, we assessed the timing of infection, primary disease, colitis treatment, and any concurrent complications or risk factors. RESULTS: Of 1932 transplants, 159 recipients developed post-transplant CD colitis. 132 charts were available for review. Forty-three pediatric kidney recipients developed CD colitis. Their mean age was 3.2 yr; 74% (n = 37) of them developed their colitis during their initial hospital stay, with the mean timing of infection being 33 d. Forty-one (95%) had undergone intra-abdominal placement of the graft, with renal artery anastomoses to the aorta. Fifty adult kidney recipients developed CD colitis. Thirteen (26%) developed colitis during their initial hospital stay, with the mean timing of infection (for all adult kidney recipients) being 15 months. Thirty-nine kidney-pancreas recipients developed CD colitis. Mean timing of infection was 6 months. The overall incidence of CD colitis was 8%, with 16% in the pediatric kidney group, 15.5% in the kidney-pancreas group, and 3.5% in the adult kidney group. The difference in mean timing of infection was significant between the three groups (p < 0.001 for pediatric versus adult kidney recipients, p = 0.002 for pediatric kidney versus kidney-pancreas recipients, and p = 0.2846 for adult kidney versus kidney-pancreas recipients). CONCLUSION: The incidence of CD colitis is increased in pediatric kidney and kidney-pancreas recipients. Young recipient age ( < 5 yr), female gender, treatment of rejection with monoclonal antibodies, antibiotic use, and intra-abdominal graft placement have been shown to increase the incidence of this disease. Further studies concerning prevention in the high-risk groups are needed.

Adolescent↗

Decreased acute rejection in kidney transplant recipients is associated with decreased chronic rejection.

OBJECTIVE: To determine whether a recent decrease in the rate of acute rejection after kidney transplantation was associated with a decrease in the rate of chronic rejection. SUMMARY BACKGROUND DATA: Single-institution and multicenter retrospective analyses have identified acute rejection episodes as the major risk factor for chronic rejection after kidney transplantation. However, to date, no study has shown that a decrease in the rate of acute rejection leads to a decrease in the rate of chronic rejection. METHODS: The authors studied patient populations who underwent transplants at a single center during two eras (1984-1987 and 1991-1994) to determine the rate of biopsy-proven acute rejection, the rate of biopsy-proven chronic rejection, and the graft half-life. RESULTS: Recipients who underwent transplantation in era 2 had a decreased rate of biopsy-proven acute rejection compared with era 1 (p < 0.05). This decrease was associated with a decreased rate of biopsy-proven chronic rejection for both cadaver (p = 0.0001) and living donor (p = 0.08) recipients. A trend was observed toward increased graft half-life in era 2 (p = NS). CONCLUSIONS: Development of immunosuppressive protocols that decrease the rate of acute rejection should lower the rate of chronic rejection and improve long-term graft survival.

Acute Disease↗

Normoglycemia and preserved insulin secretory reserve in diabetic patients 10-18 years after pancreas transplantation.

Pancreas transplantation is a controversial form of therapy for type I diabetes. A major obstacle to acceptance of this procedure for many physicians is the lack of demonstrable long-term success. We performed these studies to assess the hypothesis that successful pancreas transplantation is efficacious in normalizing endogenous insulin secretion and glycemia in the long term (1-2 decades). Sixteen patients with a history of diabetic complications who had undergone a transplant 10-18 years earlier involving either a whole or a segment of pancreas were recruited for measurements of fasting plasma glucose, HbA1c, intravenous glucose tolerance, and insulin secretory reserve. All patients were taking immunosuppressive drugs, but none was using insulin or other hypoglycemic agents. All recipients had normal levels of fasting blood glucose, intravenous glucose tolerance, and HbA1c, and 15 of 16 stated that their quality of life had improved after transplantation. They had intact acute insulin responses to intravenous pulses of glucose and to arginine and insulin secretory reserve. Glucose potentiation of arginine-induced insulin secretion, the measure of insulin secretory reserve, correlated significantly (r = 0.095, P < 0.001) with the acute insulin response to intravenous glucose, rendering the latter a much simpler and valid measure of functional beta-cell mass. We conclude that successful pancreas transplants are efficacious for periods as long as 1-2 decades in returning euglycemia to type 1 diabetic patients by restoring endogenous insulin secretion and insulin secretory reserve. Thus, concern about long-term deterioration, as distinct from rejection, should not be a major obstacle when deciding whether to recommend pancreas transplantation.

Adult↗

[Organ donation by living donors in isolated pancreas and simultaneous pancreas-kidney transplantation].

We studied retrospectively 106 pancreas transplants from living donors. Of these, 83 were solitary pancreas transplants, done between June 1979 and December 1997 (51 pancreas transplants alone for non-uremic recipients as well as 32 pancreas-after-kidney transplants for previously uremic recipients with a functioning kidney graft), and 23 were simultaneous pancreas-kidney transplants (SPK), done between March 1994 and December 1997. In all, 105 (99%) donors were genetically related to the recipients. Perioperative donor mortality was 0%. Donor complications included 9 splenectomies as well as 4 operatively drained and 7 percutaneously managed peripancreatic fluid collections. We noted hyperglycemia in 3 (3%) donors (all among the initial cases in this series). The 1-year survival rate was 50% for solitary pancreas recipients and 78% (pancreas) and 100% (kidney) for SPK recipients. Of the 5 pancreas graft losses which occurred after SPK, 3 were due to thrombosis, 1 to pancreatitis and infection, and 1 to chronic rejection. Currently, all kidney grafts and 18 pancreas grafts are functioning in these 23 dual organ recipients (with 0% recipient mortality). Living donor pancreas and SPK grafting is associated with low donor morbidity and good graft outcome. With stringent donor criteria and appropriate counseling of the prospective donor/recipient pairs, living donor pancreas transplants may become a more widely applied therapeutic alternative for selected non-uremic and uremic patients with Type I diabetes.

Diabetes Mellitus, Type 2↗

Analyses of pancreas transplant outcomes for United States cases reported to the United Network for Organ Sharing (UNOS) and non-US cases reported to the International Pancreas Transplant Registry (IPTR).

As of September 1999, almost 13,000 pancreas transplants had been reported to the IPTR, > 9,000 in the US and > 3,000 outside the US. An era analysis of US cases from 1987 to 1997 showed a progressive improvement in outcome (p < 0.04), with pancreas transplant graft survival rates (GSRs) going from 74% to 85% at one year for SPK cases, from 56% to 75% for PAK cases, and from 50% to 69% for PTA cases. The improvements were due both to decreases in technical failure (TF) rates (overall from 16% to 8%) and immunological failure rates (going from 6% to 2% for SPK, from 23% to 7% for PAK, and from 35% to 9% for PTA cases). The proportion of recipients > 44 years old increased from 5% to 24%, and the improved outcomes encompassed the older patients as well. In patients > 44 years old, SPK pancreas GSRs at one year increased from 69% for 1987-89 cases to 79% for 1996-97 cases (p < 0.03). Pancreas GSRs were also similar for recipients reported to have Type I or Type II diabetes (at 1 year, 84% and 81%, respectively, for 1994-99 SPK transplants), the latter designated in 3% of the recipients. Contemporary pancreas transplant outcomes were calculated separately for 1996-99 US and non-US cases. US patient survival rates at one year were > or = 95% in each recipient category, with one year pancreas GSRs of 84% for SPK (n = 2,502), 76% for PAK (n = 404), and 72% for PTA (n = 176) (p = 0.0001). The immunological graft failure rates for 1996-99 US SPK, PAK and PTA cases were 2%, 6%, and 10% at one year (p = 0.001). There was a progressive increase in the use of ED (as opposed to BD) for duct management, up to nearly 60% of US pancreas transplants by 1998. Approximately 18% of SPK ED transplants had venous drainage via the portal system. Pancreas GSRs were not significantly different for 1996-99 ED (n = 1,170) and BD (n = 1,203) US SPK transplants (84% and 85%, respectively, at 1 year), nor was there any difference in pancreas GSRs for systemic (n = 437) versus portal (n = 194) venous drained ED SPK transplants (84% and 83%, respectively, at 1 year). Interestingly, kidney GSRs were significantly higher for ED versus BD US SPK cases, 93% versus 84% at one year (p = 0.003). Duct management did matter for solitary (PAK and PTA) pancreas transplants. PAK pancreas GSRs were 80% at one year for BD (n = 238) versus 68% for ED (n = 156) US transplants. PTA pancreas GSRs were 78% at one year for BD (n = 98) versus 63% for ED (n = 73) US transplants. However, BD transplants were associated with a 12% conversion rate to ED by 2 years after transplantation. Analyses of outcome by immunosuppression for US cases showed pancreas GSRs to be higher in SPK recipients given MMF (87% at 1 year) than in those who were not (76% at 1 year). For PAK and PTA recipients, those given anti-T cell for induction and TAC and MMF for maintenance immunosuppression had the highest GSRs: 86% and 83%, respectively, at one year for BD pancreas transplants; not significantly different from the pancreas GSR (87% at 1 year) in BD SPK recipients also given anti-T cell for induction and TAC and MMF for maintenance immunosuppression. Analyses of US pancreas transplant outcome according to HLA matching showed no effect at all in the SPK category, while for PAK and PTA transplants an effect was seen at the A and B loci, strongest at the B loci. Matching for at least one antigen at both loci was associated with one-year pancreas GSRs of 85% for PAK and 74% for PTA, versus 70% and 60%, respectively, at one year for those who were not matched for at least one antigen at both the A and B loci. In regard to non-US cases, the overwhelming majority were in the SPK category (n = 528 for 1996-99), with one-year pancreas GSR of 79%, not significantly different from US cases. Approximately 40% of non-US SPK cases were ED (n = 204), and, as in the US, the pancreas GSRs were similar for ED and BD transplants in this category. (ABSTRACT TRUNCATED)

Adult↗

Mycophenolate mofetil in pancreas transplantation.

BACKGROUND: Mycophenolate mofetil (MMF) has been shown to decrease the incidence of acute rejection episodes after kidney transplantation. The use of MMF along with tacrolimus for > or =1 year after pancreas transplantation has not been studied in a large single-center analysis. METHODS: Between July 1, 1995 and June 30, 1997, both MMF and tacrolimus were given to 120 pancreas transplant recipients. By category, 61 underwent simultaneous pancreas-kidney transplantation (SPK); 44 underwent pancreas transplantation after previous kidney transplantation (PAK); and 15 underwent pancreas transplantation alone (PTA). By donor source, 86% of the grafts were from a cadaver, and 14% were from a living-related donor. Induction therapy was with MMF, tacrolimus, prednisone, and antithymocyte globulin (n=109) or OKT3 (n=2). Until oral intake was resumed, recipients initially received intravenous azathioprine. Side effects were as follows: gastrointestinal (GI) toxicity in 53% of recipients receiving combined MMF and tacrolimus therapy; bone marrow toxicity in 24% of recipients receiving MMF alone; nephrotoxicity in 18% and neurotoxicity in 11% of recipients receiving tacrolimus alone. We did a matched-pair analysis to compare outcome in MMF versus azathioprine recipients, using the database of the International Pancreas Transplant Registry. Matching criteria included transplantation category, transplantation number, recipient and donor age, duct management, HLA typing, and transplantation year. RESULTS: One-year patient survival rates were 98% for SPK, 98% for PAK, and 100% for PTA (P=NS). For SPK recipients, 1-year pancreas graft survival rates were 86% with MMF versus 79% with azathioprine (P=NS); kidney graft survival rates were 96% with MMF versus 86% with azathioprine (P=NS). The incidence of first rejection episodes at 1 year was significantly lower for MMF recipients (15% with MMF versus 43% with azathioprine) (P = 0.0003). For recipients of solitary pancreas transplants (PTA and PAK), we found no difference in graft survival rates between MMF and azathioprine. The conversion rate from MMF to azathioprine at 1 year was 14% for SPK recipients, 26% for PAK, and 39% for PTA (P < 0.007). The most common reason for conversion was GI toxicity, in particular for nonuremic (PTA) or posturemic (PAK) recipients. The rates of posttransplant infection and lymphoproliferative disease were low for recipients on MMF and tacrolimus. CONCLUSIONS: The combination of MMF and tacrolimus after pancreas transplantation is highly effective and safe. For SPK recipients, the incidence of acute reversible rejection episodes was significantly lower with MMF than with azathioprine. The conversion rate from MMF to azathioprine because of GI toxicity was lowest for SPK and highest for PTA recipients.

Adult↗

Reversal of lesions of diabetic nephropathy after pancreas transplantation.

BACKGROUND: In patients with type I diabetes mellitus who do not have uremia and have not received a kidney transplant, pancreas transplantation does not ameliorate established lesions of diabetic nephropathy within five years after transplantation, but the effects of longer periods of normoglycemia are unknown. METHODS: We studied kidney function and performed renal biopsies before pancreas transplantation and 5 and 10 years thereafter in eight patients with type I diabetes but without uremia who had mild to advanced lesions of diabetic nephropathy at the time of transplantation. The biopsy samples were analyzed morphometrically. RESULTS: All patients had persistently normal glycosylated hemoglobin values after transplantation. The median urinary albumin excretion rate was 103 mg per day before transplantation, 30 mg per day 5 years after transplantation, and 20 mg per day 10 years after transplantation (P=0.07 for the comparison of values at base line and at 5 years; P=0.11 for the comparison between base line and 10 years). The mean (+/-SD) creatinine clearance rate declined from 108+/-20 ml per minute per 1.73 m2 of body-surface area at base line to 74+/-16 ml per minute per 1.73 m2 at 5 years (P<0.001) and 74+/-14 ml per minute per 1.73 m2 at 10 years (P<0.001). The thickness of the glomerular and tubular basement membranes was similar at 5 years (570+/-64 and 928+/-173 nm, respectively) and at base line (594+/-81 and 911+/-133 nm, respectively) but had decreased by 10 years (to 404+/-38 and 690+/-111 nm, respectively; P<0.001 and P=0.004 for the comparisons with the base-line values). The mesangial fractional volume (the proportion of the glomerulus occupied by the mesangium) increased from base line (0.33+/-0.07) to 5 years (0.39+/-0.10, P=0.02) but had decreased at 10 years (0.27+/-0.02, P=0.05 for the comparison with the baseline value and P=0.006 for the comparison with the value at 5 years), mostly because of a reduction in mesangial matrix. CONCLUSIONS: Pancreas transplantation can reverse the lesions of diabetic nephropathy, but reversal requires more than five years of normoglycemia.

Adult↗

Posttransplant nonfunction of canine islets in PVG rats deficient in complement component C6.

BACKGROUND: Discordant islet xenografts are immediately nonfunctional in nonimmunosuppressed recipients other than the mouse, a process called primary nonfunction. Although at present it is unknown whether complement is involved, complement might participate in the induction of primary nonfunction through a number of mechanisms. We investigated the potential role of the membrane attack complex of complement in primary nonfunction of transplanted xenoislets. METHODS: Canine islets were transplanted into both nonimmunosuppressed and immunosuppressed normocomplementemic and C6-deficient (C6D) PVG rats. Cyclosporine, rapamycin, deoxyspergualin, and mycophenolate mofetil were used for immunosuppression from day -3 to cessation of islet cell function. Serum glucose was measured at 6 hr after transplant and daily thereafter. Xenograft tissue sections were obtained at various times after transplant and stained for inflammatory cells and insulin. RESULTS: Canine islets grafted in nonimmunosuppressed C6D rats and normocomplementemic rats underwent primary nonfunction in all animals. The incidence of primary nonfunction in animals receiving a four-drug immunosuppressive regimen was 33% in the normocomplementemic rats but only 10% in the C6D rats. The mean functional islet survival time was 1.57+/-0.33 days in the normocomplementemic group and 2.70+/-0.67 days in the C6D group (P=0.38). The islet xenografts showed little difference in degree and composition of cell infiltration between normocomplementemic and C6D rats. CONCLUSION: The membrane attack complex does not appear to play a major role in primary nonfunction of canine islet xenografts in nonimmunosuppressed PVG rats. However, there was a lower incidence of primary nonfunction and a longer posttransplant survival time in immunosuppressed C6D rats, suggesting the membrane attack complex may play a minor role in recipients that are heavily immunosuppressed.

Animals↗

Pregnancy after pancreas transplantation in the cyclosporine era: report from the International Pancreas Transplant Registry.

BACKGROUND: As of December 31, 1996, a total of 9012 pancreas transplants have been reported to the International Pancreas Transplant Registry (IPTR). Over 75% of these recipients were < or = 40 years of age at the time of their transplant. With continued improvement in short- and long-term outcome after transplant, an increasing number of female recipients have become pregnant. However, outcome after pregnancy in pancreas transplant recipients has not been studied in detail. METHODS: To evaluate the risks of pregnancy after pancreas transplantation in the cyclosporine era, we surveyed the institutions reporting to the IPTR. RESULTS: Nineteen cases of pregnancy in 17 female recipients of simultaneous pancreas-kidney transplants resulted in 19 live births. Metabolic control during pregnancy was good in all cases. Mean duration of gestation was 35.2-2.2 weeks. Mean birth weight was 2150+/-680 g. Two congenital malformations were reported (one bilateral cataract and one double aortic arch). One child developed type I diabetes at age 3 years. Only one pancreas graft and one kidney graft were lost (in two different recipients). The pancreas graft was lost after delivery (because of acute rejection). The kidney graft was lost 3 months after delivery (impaired function due to previous amphotericin B treatment). One case of a worsened secondary complication (retinopathy) was reported. One recipient died of myocardial infarction 7 years after transplant and 5 years after delivery, in spite of a normal pretransplant coronary angiogram and good pancreas function. CONCLUSION: This study shows that simultaneous pancreas-kidney transplantation can restore fertility in uremic type I diabetic female recipients. Thus, both posttransplant contraception and fertility counseling are options for female recipients. However, our analysis demonstrates that, when discussing the possibility of pregnancy with female pancreas recipients, these potential risks must be considered: (1) graft loss, (2) progressive maternal morbidity and mortality even with good glycemic control, and (3) diabetes transmission to offspring.

Adult↗

Diagnosis of pancreas rejection: cystoscopic transduodenal versus percutaneous computed tomography scan-guided biopsy.

BACKGROUND: The most common cause of graft failure after technically successful pancreas transplants is rejection. Laboratory parameters for detecting pancreas graft rejection are not consistently reliable and can lead to unnecessary antirejection treatment. Histopathologic evaluation is the gold standard in the differential diagnosis of pancreas graft dysfunction. Four biopsy techniques have been described: cystoscopic transduodenal (CB), percutaneous computed tomography scan-guided (PB), open, and laparoscopic biopsy. METHODS: We studied the two most common techniques, CB and PB, in pancreas transplant recipients with presumed rejection. Group 1 comprised 103 attempts at CB in 82 recipients (53 men, 29 women) with bladder-drained (BD) pancreas transplants, at 1 to 80 (median, 14) months after transplant. Group 2 comprised 93 attempts at PB in 68 recipients (41 men, 27 women), at 0.5 to 64 (median, 14) months after transplant. RESULTS: In group 1, of 103 attempts at CB, adequate tissue was obtained in 90 (87%): pancreas alone in 23 (22%), pancreas + duodenum in 35 (34%), duodenum alone in 32 (31%). Of the 58 pancreas biopsies, 23 (40%) showed acute rejection. Of the 67 duodenal biopsies, 16 (24%) showed acute rejection. Complications of CB included macrohematuria in 4 recipients (4%) and microhematuria in 32 (31%). We noted no biopsy-related pancreatitis. The mean cost of CB was $2561+/-246. In group 2, of 93 attempts at PB, adequate tissue (all pancreas) was obtained in 67 (72%); of these, 29 (43%) showed acute rejection. Of 23 inaccessible pancreases, 9 (39%) underwent CB; pancreatic tissue was obtained in four (45%), and results were consistent with rejection in all four. Complications of PB included biopsy-related pancreatitis (serum amylase > or = 25%) in five (7%) recipients, macrohematuria in one (1%), and abdominal hemorrhage in two (3%). The mean cost of PB was $1038+/-78. (1) CB and PB prevented unnecessary antirejection treatment in 44% of our recipients with successful biopsies; (2) CB had a higher success rate for obtaining tissue (including duodenal specimens) and a lower rate of major complications; (3) PB was easier and cheaper, did not require general anesthesia, and was performed as an outpatient procedure. CONCLUSIONS: We conclude that PB should become the biopsy technique of choice in recipients with presumed pancreas graft rejection. If PB fails, recipients with bladder-drained pancreas transplants should undergo CB. If CB fails, or in recipients with enteric-drained or duct-injected pancreas transplants, a laparoscopic or open biopsy should be considered.

Adolescent↗

Venous thromboembolic complications after kidney and kidney-pancreas transplantation: a multivariate analysis.

BACKGROUND: We reviewed the incidence of and risk factors for venous thromboembolic complications in our population of kidney (KTx) and simultaneous kidney-pancreas transplant (SPK) recipients. METHODS: Information was collected retrospectively from a database on 1833 KTx and 276 SPK recipients who underwent transplant surgery between January 1985 and August 1995. RESULTS: The incidence of deep venous thrombosis (DVT) was 6.2% (n= 132), with significantly higher rates after SPK (18.1%) vs. KTx (4.5%) (P < 0.001). The number of DVT episodes was highest in the first month; 17.5% occurred during this time. For KTx recipients, early thrombotic events were more common on the side of the graft (P=0.03); however, after 1 month, no correlation existed between the side of the graft and the side of DVT. For SPK recipients, DVT tended to be more common on the side of the pancreas (57%) vs. the kidney (43%) (P=0.10). By multivariate analysis, risk factors for DVT were: age > 40 years (odds ratio [OR]=2.2, P < 0.001), diabetes mellitus (DM) (OR=2.0, P=0.002), previous DVT (OR=4.4, P=0.001), and SPK transplant (OR=2.8, P < 0.001). Pulmonary embolus (PE) was identified in 44 recipients (incidence, 2.1%) and was fatal in 13 (30%). The incidence was significantly higher in SPK (4.71%) vs. KTx recipients (1.69%) (P < 0.01). The risk of death from PE was 0.5% in KTx recipients and 1.37% in SPK recipients (P=0.08). Risk factors for PE included DM (OR=2.6, P=0.005) and recent DVT (OR=8.9, P=0.0001). CONCLUSIONS: Based on risk and extrapolating from the general surgical literature, our recommendations for prophylaxis against DVT are use of graduated compression stockings for all recipients and, in addition, low-dose heparin for moderate and high-risk recipients (previous DVT, SPK, age > 40 years, DM).

Adult↗