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Biomedical subjects

D E Sutherland

Publications and source records attributed to D E Sutherland.

At least 91 records · Page 5Linked to original sources

Solitary pancreas transplantation for nonuremic patients with labile insulin-dependent diabetes mellitus.

BACKGROUND: Simultaneous pancreas-kidney transplantation has become a widely accepted treatment option for selected uremic patients with insulin-dependent diabetes mellitus (IDDM). Patient survival rates at 1 year exceed 90%, and rates of pancreas graft survival, 70%. However, solitary pancreas transplantation for nonuremic patients with IDDM has been controversial because of the less favorable outcome and the need for long-term immunosuppression with its associated morbidity and mortality. METHODS: We studied the outcome of 225 solitary pancreas transplants during three immunosuppressive eras: the precyclosporine (CsA) era (n=83), the CsA era (n=118), and the tacrolimus era (n=24). Only patients with labile IDDM (e.g., hypoglycemic unawareness, insulin reactions, > or = 2 failed attempts at intensified insulin therapy for metabolic control) underwent solitary pancreas transplantation. Using univariate and multivariate analyses, we looked at patient and graft survival, the risk of surgical complications, and native kidney function during these three eras. RESULTS: Pancreas graft survival improved significantly over time: 34% at 1 year after transplantation in the pre-CsA era, 52% in the CsA era, and 80% in the tacrolimus era (P=0.002). Pancreas graft loss due to rejection decreased from 50% at 1 year in the pre-CsA era, to 34% in the CsA era, to 9% in the tacrolimus era (P=0.008). The rate of technical failures (i.e., the risk of surgical complications) decreased from 30% in the pre-CsA era, to 14% in the CsA era, to 0% in the tacrolimus era (P=0.001). Patient survival rates at 1 year have ranged between 88% and 95% in the three eras (P=NS). Matching for at least one antigen on each HLA locus and avoiding HLA-B mismatches significantly decreased the incidence of rejection. The incidence of native kidney failure due to drug-induced toxicity decreased significantly over time, in part because only recipients with pretransplant creatinine clearance > or = 80 ml/min received transplants. CONCLUSIONS: Solitary pancreas transplantation has become a viable alternative for nonuremic patients with labile IDDM. The risks of surgical complications and drug-induced nephrotoxicity have significantly decreased over time. Using tacrolimus as the mainstay immunosuppressant, patient and graft survival rates now no longer trail those of simultaneous pancreas-kidney transplantation.

Adolescent↗

Insulin down-regulates the inducible nitric oxide synthase pathway: nitric oxide as cause and effect of diabetes?

Evidence in this paper indicates that insulin can down-regulate the inducible nitric oxide synthase (iNOS) pathway in vivo. The iNOS pathway is up-regulated in diabetes-prone rats and mice and is associated with an autoimmune process. However, the results presented here indicate that macrophage nitric oxide (NO) production and iNOS mRNA expression are also elevated in rats or mice made diabetic by streptozotocin injection in which there is no primary autoimmune component. Insulin administration reduces NO production in autoimmune-prone and streptozotocin-induced diabetic rodents. Finally, insulin decreases macrophage NO production in normal hosts. These results indicate that the autoimmune paradigm is inadequate to explain increased NO in diabetes. As a potential mechanism to explain insulin-mediated regulation of NO production, TGF-1 may be involved because 1) macrophages from diabetic mice produce less TGF-beta1 than macrophages from normal hosts; 2) the circulating TGF-beta1 level is lower in diabetic mice; and 3) insulin administration increases circulating TGF-beta1 in normal mice. Together, these results provide evidence that increased NO in diabetes is not only a cause but also an effect of beta-cell destruction and results in part from a heretofore unrecognized immunomodulatory activity of insulin.

Animals↗

Pancreas transplantation: indications, clinical management, and outcomes.

Although many advances have been made, pancreas transplantation still poses several challenges to the surgeon, internist and patient. With success rates now above 80% and improving yearly, diabetic patients must make a major life-style decision when considering a pancreas transplant. The main concerns are will the benefits of insulin-independence off-set the risks of surgery and immunosuppression. For diabetics near dialysis and considering a kidney transplant, the decision may not be as difficult. However, for those patients who are failing insulin therapy (brittle control) and remain with good renal function, the options are limited. As the success of pancreas transplantation improves, the procedure may become routine at more centers and become accepted by more third-party carriers. However, as with other solid organs, the availability of pancreases is limited and the supply soon to be exhausted. Thus, further advances are required for the prevention and treatment of Type 1 diabetes. Hopefully, the new frontiers of the next century will allow physicians to identify and preventively treat those at risk for the development of diabetes. Thus, the population of patients suffering from the consequences of this dreadful disease will be greatly reduced. With new developments in immunosuppression and islet transplantation, diabetic patients of the future may be offered the option of a procedure with reduced risks, less morbidity, and improved long-term cure rates.

Diabetes Complications↗

Long-term effects of pancreatic transplantation on diabetic neuropathy.

Restoration of a long-lasting euglycemic state by a functioning pancreatic transplantation (PTx) is the most logical treatment for insulin-dependent diabetes mellitus and for amelioration of secondary complications, including neuropathy. We evaluated neurological function by clinical examination, nerve conduction studies, and autonomic function tests in 115 patients with a functioning PTx and in 92 control patients treated with insulin, at baseline and 1, 2, 3.5, 5, 7, and 10 years later. In control patients, neuropathy progressively worsened during follow-up. The clinical examination score and composite indices of abnormality of motor and sensory nerve conduction decreased significantly at all intervals tested. Autonomic function indices also decreased, but significantly only after 1 year. In patients who received a successful PTx the neuropathy improved. The motor and sensory nerve conduction indices increased significantly at all intervals after transplantation, whereas the clinical examination and autonomic tests improved only slightly. Patients who received either a PTx alone, a PTx after a kidney graft, or simultaneous pancreatic and kidney transplantations improved similarly over the follow-up. These results indicate that a functioning PTx halts the progression and improves the signs of diabetic polyneuropathy by restoration of a normoglycemic state.

Adult↗

Simultaneous pancreas-kidney transplant in two children with hemolytic-uremic syndrome.

Simultaneous pancreas-kidney (SPK) transplantation has rarely been performed in the pediatric population. This report describes successful SPK transplantation in a 12-year-old girl and a 14-year-old boy with renal and pancreatic insufficiency secondary to postdiarrheal hemolytic-uremic syndrome. All reported cases of pediatric SPK transplantation are reviewed. SPK transplantation is a feasible option in selected pediatric patients with combined pancreatic and renal insufficiency.

Adolescent↗

Excellence of the two-layer method (University of Wisconsin solution/perfluorochemical) in pancreas preservation before islet isolation.

BACKGROUND: In islet transplantation pancreatic preservation before islet isolation is an obstacle compromising islet yield and viability. We tested the feasibility of a two-layer method (University of Wisconsin solution [UW]/perfluorochemical) for pancreatic preservation before islet isolation. METHODS: Dog pancreases were processed into pure islets by the method of Ricordi preceded by five different preservations (groups 1-a and 1-b, the two-layer method for 3 and 24 hours; groups 2-a and 2-b, simple cold storage in UW for 3 and 24 hours; group 3, without preservation). Islet yields and functional success after autotransplantation into the liver were compared among the groups. RESULTS: Postpurification islet equivalents (IE)/gm pancreas and functional success rate were 5600 (mean), 83% in group 1-a; 4000, 56% in group 1-b; 4700, 33% in group 2-a; 1300, 0% in group 2-b; and 5000, 89% in group 3 (p < 0.05; 2b versus 1-a, 1-b, and 3), respectively. There was no statistical difference among groups 1-a, 1-b, and 3 in terms of islet yield and function (p > 0.2). CONCLUSIONS: The two-layer method is more effective than conventional simple cold storage in UW for pancreatic preservation before islet isolation. Clinical trials with the two-layer method are warranted.

Adenosine↗

Duodenal complications in bladder-drained pancreas transplantation.

BACKGROUND: The most common type of pancreas transplantation is whole pancreaticoduodenal (with bladder drainage) from a cadaver donor. Complications can arise not only from the pancreas itself but also from the simultaneously transplanted duodenum. The purpose of this study was to analyze the incidence, diagnosis, and treatment of duodenal complications and their impact on patient and pancreas graft survival rates. METHODS: Our retrospective study is based on 425 pancreaticoduodenal transplantations performed between July 1, 1986, and June 30, 1994. Complications pertaining to the duodenal segment were labeled early if they occurred within the first postoperative month and late otherwise. Mean follow-up was 55 months (range, 13 to 108 months). RESULTS: We noted 85 (20%) duodenal complications: duodenal leaks (n = 42), hematuria (n = 26), recurrent urinary tract infections (n = 9), duodenal ulceration or necrosis (n = 6), and bladder stones (n = 2). Of these complications, 40 (48%) required surgical intervention. In all, duodenal complications resulted in 14 (16%) enteric conversions and eight (9%) pancreas graft losses (six because of duodenal leak and 2 because of hematuria). The mortality rate from duodenal complications was 0%. CONCLUSIONS: Duodenal complications were common, but they were not associated with a high rate of pancreas graft loss (only 9%). With early diagnosis and treatment, morbidity can be reduced and death avoided in pancreas transplant recipients.

Duodenal Diseases↗

Fatal disseminated intravascular coagulation after autologous islet transplantation.

Autologous islet transplantation after pancreatectomy has been used in the surgical management of patients with intractable pain secondary to chronic pancreatitis. Total or near total pancreatectomy invariably leads to exogenous insulin dependence in these patients unless they undergo islet transplantation. Transplantation of autologous islet cells harvested from the patient's pancreas into the liver through portal vein infusion has led to long-term euglycemia in 30% to 50% of patients. We report the development of disseminated intravascular coagulation and fatal hemorrhagic shock in a 36-year-old woman after total pancreatectomy and autologous islet transplantation through retrograde infusion into the splenic vein. We report the clinical and pathological findings and discuss the possible pathophysiological mechanisms involved in the development of disseminated intravascular coagulation after this procedure.

Adult↗

The surgical risk of pancreas transplantation in the cyclosporine era: an overview.

BACKGROUND: Pancreas transplants are still associated with the highest surgical complication rate of all routinely performed solid organ transplants. To date, the impact of serious surgical complications in the cyclosporine era on perioperative patient morbidity, graft and patient survival, and hospital costs has not been analyzed in detail. STUDY DESIGN: We retrospectively studied surgical complications after 445 consecutive pancreas transplants (45% simultaneous pancreas-kidney [SPK], 24% pancreas after kidney [PAK], and 31% pancreas transplant alone [PTA]). Of these, 80% were primary transplants, 20% were retransplants. Cadaver donors were used in 92%, living related donors in 8%. To develop guidelines for their prevention and management, we studied the impact of significant surgical complications (intra-abdominal infections, vascular graft thrombosis, and anastomotic leak) requiring relaparotomy on graft and patient survival. RESULTS: Relaparotomy was required after 32% of all pancreas transplants (SPK: 36%, PAK: 25%, PTA: 16% [p = 0.04]). Perioperative mortality was 9%. Graft and patient survival rates were significantly lower for recipients with (versus without) relaparotomy. The most common procedures were drainage of intra-abdominal abscess with graft necrosectomy (50% of all relaparotomies) and transplant pancreatectomy (34%). The most common causes of relaparotomy were intra-abdominal infection, vascular graft thrombosis, and anastomotic leak. Intra-abdominal infection occurred in 20% (SPK: 18%, PAK: 24%, PTA: 20% [p = NS]). The rate was significantly higher for living related donor (42%) versus cadaver donor (18%) recipients and for those with enteric-drained (39%) versus bladder-drained (18%) transplants. Graft and patient survival rates were significantly lower for recipients with (versus without) intra-abdominal infection. Outcome was better after bacterial (versus fungal) infections. For SPK recipients, those not on dialysis before the transplant had significantly higher graft survival than those on dialysis. Vascular graft thrombosis occurred in 12% of all recipients. The rate was significantly higher for PAK (21%) than for PTA (10%) and SPK (9%) recipients. It was significantly lower for recipients of grafts with donor iliac Y-graft reconstruction (versus all other types of arterial reconstruction) and with right-sided (versus left-sided) graft placement. Of note, patient survival was not different for recipients with versus without vascular graft thrombosis. The incidence of anastomotic or duodenal stump leaks was 10%; of these recipients, 70% required relaparotomy. Patient and graft survival rates were no different for recipients with versus without leaks. CONCLUSIONS: Serious surgical complications occurred in 35% of pancreas recipients and had a significant impact on patient and graft survival. Based on multivariate risk factor analyses, we recommend the following: donors over 45 years and those dying of cerebrocardiovascular disease should not be used; recipients over 45 years and those with a history of cardiac disease should be considered for a kidney transplant alone (KTA); surgical technique for graft procurement, preparation, and implantation should be meticulous; right-sided implantation and arterial Y-graft reconstruction should be performed when possible, since they had the highest success rates; when complications require relaparotomy, the focus must switch from graft salvage to life preservation; and the threshold for pancreatectomy should be low. Diagnosis should be timely, and treatment and relaparotomy expeditious. These cornerstones of success should help decrease the risk of surgical complications and mortality after pancreas transplants.

Abdominal Abscess↗

Living related donor pancreas and pancreas-kidney transplantation.

Our experience with living related donor (LRD) pancreas transplants shows that they can be performed with low morbidity and mortality for both donors and recipients. The recipient survival rate is 90% at both 1 and 5 years post-transplant. Our overall pancreas graft survival rate is comparable to that for cadaver transplants; if only technically successful cases are included, the graft survival rate is significantly better for LRD (versus cadaver) transplants. Advantages for LRD recipients include fewer rejection episodes, less immunosuppression, lower incidence of graft loss from rejection, and elimination of waiting time. Donor mortality in our series was 0%, and the incidence of surgical complications about 10-15%. LRD pancreas transplants are an attractive option for endocrine replacement therapy in certain diabetic patients. Optimal candidates are: (i) patients who are highly sensitized and have a low probability of receiving a cadaver graft; (ii) patients who should avoid high-dose immunosuppression; (iii) patients with nondiabetic identical twins; and (iv) uremic patients who want one operation with no waiting in order to remain or become dialysis free as well as insulin-independent. These transplants can be performed safely in all recipient categories--pancreas transplant alone, pancreas after kidney or simultaneous pancreas-kidney transplant. In all groups, LRD transplants should be done only when the donor, the recipient, and the entire family understands the advantages and disadvantages of LRD versus cadaver transplants.

Decision Making↗

Simultaneous pancreas-kidney transplantation from live donors.

OBJECTIVE: In this first report of a clinical series of simultaneous pancreas-kidney transplants (SPKs) from live donors, the authors assess donor and recipient outcome as well as the spectrum of surgical and metabolic complications. SUMMARY BACKGROUND DATA: The rationale for live (vs. cadaveric) donation includes an immunologic advantage (better matching, decreased drugs, and fewer rejection episodes) and elimination of waiting time. Only sequential kidney and pancreas or pancreas transplants alone from live donors had been done until the authors' current series. METHODS: Between March 15, 1994, and March 15, 1997, the authors performed 20 SPKs from live donors (6 human leukocyte antigen-identical siblings, 14 mismatched relatives [5 parents, 7 siblings, 1 daughter, 1 aunt]). Of the 20 donors, 13 were women, and 7 were men; median age was 43 years (range, 30-58 years). All donors underwent standardized metabolic workup, including oral glucose tolerance tests, determination of hemoglobin A1 c levels, and tests to study insulin secretion and functional insulin secretory reserve. Of the 20 recipients, 12 were women, and 8 were men; median age was 34 years (range, 14-50 years). Management of exocrine pancreatic secretions was with bladder drainage in 17 and duct injection in 3 recipients. Median follow-up was 9 months (range, 1-36 months). RESULTS: Currently, all 20 kidney grafts are functioning. Of the 20 pancreas grafts, 15 are functioning, 3 thrombosed, but 2 of those patients underwent immediate retransplantation from a cadaveric donor, and their grafts currently are functioning. Recipient complications included three anastomotic leaks and three intra-abdominal abscesses. Donor complications included four splenectomies, two peripancreatic fluid collections, one pseudocyst, and one intra-abdominal abscess; two donors underwent reoperation. Three donors had impaired glucose metabolism postdonation. Using tacrolimus and mycophenolate mofetil for mainstay immunosuppression, only 8 of 20 recipients experienced > or =1 rejection episode; only 1 pancreas graft was lost to rejection. Donor and recipient mortality was 0%. CONCLUSION: Simultaneous pancreas-kidney transplants from live donors can be done with no mortality and good graft outcome. With stringent donor criteria, this approach could become another surgical alternative for endocrine replacement therapy in selected patients with uremic type I diabetes.

Adolescent↗

Transcontinental shipping of pancreatic islets for autotransplantation after total pancreatectomy.

Islet autotransplantation prevents diabetes in some patients after total pancreatectomy. Pancreatectomy is done at most hospitals but islets are prepared at only a few centers. We report a case in which the pancreas was sent to a laboratory half a continent distant from the operative site, and islets were prepared and returned to the original hospital for autotransplantation 16 h after resection. At 10 months posttransplantation, the patient is normoglycemic and insulin independent, with an appropriate insulin secretion in response to glucose. Endocrine function can be retained after pancreatectomy even if the islets are isolated at a remote laboratory, and autotransplantation could be offered to patients without the need to travel. This outcome implies that the typical handling and processing of a pancreas destined to yield an islet allograft should not prevent the recovery of a sufficient number of viable beta cells to establish insulin independence in type 1 diabetic recipients.

Adult↗

The defective glucagon response from transplanted intrahepatic pancreatic islets during hypoglycemia is transplantation site-determined.

The optimal site for pancreatic islet cell transplantation is presently unclear, although the liver has been the most commonly used. However, glucagon secretion from islets that have been autotransplanted in liver has been reported to be unresponsive to hypoglycemia yet responsive to arginine. To determine whether this selective glucagon secretory defect is related to the intrahepatic site of islet implantation or to the process of transplantation per se, we studied counterregulatory responses to hypoglycemia in dogs with pancreatic islet autotransplantation in the hepatic parenchyma (the intrahepatic [IH] group, n = 9) or the peritoneal cavity (the intraperitoneal [IP] group, n = 9), following total pancreatectomy, and compared them with the responses in normal controls (n = 10). Dogs were subjected to a hypoglycemic hyperinsulinemic (5 mU x kg-1 x min-1) clamp for 90 min under general anesthesia. Arterial glucose concentrations were clamped at 2.7 mmol/l for the final 45 min of the clamp. Immediately following the clamp, glucagon responses to IV arginine (5 g) were also assessed. During hypoglycemia, glucagon responses in the IH group (maximal incremental glucagon = 33 +/- 21 ng/l; glucagon area under curve [AUC] = 713 +/- 1,022 ng x l-1 x min-1) were significantly lower than either the IP (maximal incremental glucagon = 92 +/- 32 ng/l; glucagon AUC = 4,090 +/- 1,600 ng x l-1 x min-1) or control (maximal incremental glucagon = 154 +/- 71 ng/l; glucagon AUC = 6,943 +/- 2,842 ng x l-1 x min-1) group (IH vs. IP group, P < 0.05; control vs. IH group, P < 0.01). Glucagon responses in the IP group did not differ significantly from the control group. Epinephrine responses to hypoglycemia were similar in all groups, whereas neither of the transplanted groups (IH and IP) had pancreatic polypeptide responses. There was a prompt rise in plasma glucagon after intravenous arginine in all groups. These data indicate that glucagon unresponsiveness to hypoglycemia is specific to intrahepatically transplanted islets, rendering the liver a disadvantageous site for optimal alpha-cell function.

Animals↗

Colon perforation after renal transplantation: a single-institution review.

Colon perforation (CP) is an uncommon but dramatic complication after renal transplantation. Of 1530 consecutive kidney transplants performed at our center, 8 recipients had an CP (incidence of 0.5%), either early (n = 5, 2-14 days) or late (n = 3, 8-48 months) post transplant. Clinical symptoms were generally vague. Biological findings were inconstant. Risk factors for CP included a cadaver graft (versus a living donor), high body weight, history of diverticulitis, and Kayexalate use. Crucial to outcome were: 1) immediate diagnosis and 2) aggressive surgical care consisting of resectional therapy, broad-spectrum antibiotics, and reduced immunosuppression. Applying these principles, mortality in our patients (25%) was lower than in previously reported series (33-64%). All grafts were functioning at the time of diagnosis; graft function was preserved in recipients who recovered from CP. Patients with a documented history of diverticulitis should undergo prophylactic colonic resection. Constipation and colonic dilatation should be treated aggressively in the early post-operative period.

Adolescent↗

Retroperitoneal fibrosis: a report of complete colonic obstruction.

Idiopathic retroperitoneal fibrosis (RPF) is a disease entity rarely encountered by the general surgeon. In most cases, ureteral stricture is the underlying problem requiring lysis of fibrotic adhesions. However, infrequently, the gastrointestinal tract may become involved. The following report describes the complications of intestinal obstruction by RPF in one of our patients. The discussion then focuses on the need for early diagnosis and treatment of gastrointestinal invasion by RPF.

Aged↗