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Biomedical subjects

F C Goetz

Publications and source records attributed to F C Goetz.

At least 37 records · Page 2Linked to original sources

Shared genetic susceptibility of type 1 (insulin-dependent) and type 2 (non-insulin-dependent) diabetes mellitus: contributions of HLA and haptoglobin.

Epidemiologic data suggest that having a parent with Type 2 (non-insulin-dependent) diabetes mellitus increases the risk for Type 1 (insulin-dependent) diabetes in siblings of a Type 1 diabetes proband. This increase in risk is consistent with a shared genetic susceptibility between Type 1 diabetes and Type 2 diabetes. We contrast genetic risk factors in three sets of families, consisting of (1) a single Type 1 diabetic child (proband) and non-diabetic parents, (2) multiple Type 1 diabetic siblings and non-diabetic parents, and (3) at least one Type 1 diabetic child and at least one Type 2 diabetic parent. Previous studies have demonstrated that HLA region genes, which elevate the risk in Type 1 diabetes, have no significant effect with respect to the risk for developing Type 2 diabetes. An earlier report cited a contribution by the haptoglobin locus to genetic susceptibility for Type 2 diabetes. We provide evidence that a high risk HLA antigen (HLA-DR3) is decreased to a greater extent in Type 1 patients with a Type 2 parent than in Type 1 patients in which the parents are not diabetic. The role of HLA-DR4 is maintained in these families, with an unexpectedly significant increased rate of transmission of the HLA-DR4 allele from Type 2 parent to Type 1 offspring. The role of haptoglobin in these families does not appear to be important, either with respect to association with diabetes or with respect to linkage with a secondary susceptibility locus. These results indicate that families with a Type 2 parent and Type 1 child, heavily determined by HLA-DR4 linked factors, may represent a homogeneous subset of diabetes susceptibility.

Adult↗

Long-term metabolic function of pancreas transplants and influence of rejection episodes.

Pancreas grafts, when not rejected, can sustain an insulin-independent state in type I diabetic recipients for indefinite periods. To what extent the metabolic control achieved approaches that of normal individuals, the relationships between graft endocrine and exocrine function, the effect of reversible rejection episodes on subsequent graft function, and the correlation between the results of serial tests of graft function were determined by studies at 1 month, 1 year, and 2 years in a cohort of 39 recipients (29 females, 10 males; mean age (+/- SD), 33 +/- 5 years; mean duration of diabetes, 22 +/- 6 years) of bladder-drained pancreas transplants performed between November 1984 and December 1988. Fifteen patients received a pancreas transplant alone, 8 a pancreas after a kidney, and 16 a simultaneous pancreas/kidney transplant. Graft endocrine function was tested by a 24-hr metabolic profile of blood glucose levels before meals, at 1 and 2 hr after meals, and during the night (14 values in all), by intravenous and oral blood glucose tolerance tests, and by glycosylated hemoglobin levels (HA1 and HA1c). Graft exocrine function was assessed by urine amylase activity (U/hr). The results of the tests in the recipients were subjected to paired comparisons between timepoints and at each timepoint to the results of the same tests in 55 normal nondiabetic control individuals. The means of the mean 24-hr profile glucose (mg/dl) values were significantly lower (P less than 0.05) at 1 and 2 years posttransplant (116 +/- 27 and 115 +/- 15, respectively) than at 1 month (128 +/- 31) in the recipients, but the mean of the mean values in the normal controls (100 +/- 7) was even lower (P less than 0.05). Mean values of individual timepoints during the profile were significantly lower for 6 of the 14 values in the controls than in the recipients. The mean IVGTT K value of the normal controls (-1.9 +/- 0.4%) was significantly lower than the 1-month and 2-year values of the recipients (-1.5 +/- 0.5% and -1.3 +/- 0.6%, respectively), but the comparison with the 1-year value (-1.6 +/- 0.6%) was not significant. The mean glucose levels at zero minutes and between 120 and 300 min of the OGTTs were significantly lower at both 1 and 2 years than at 1 month in the recipients, and the values in the control group were also significantly lower than in the recipients at 1 month but not at 1 and 2 years.(ABSTRACT TRUNCATED AT 400 WORDS)

Blood Glucose↗

Effects of pancreatic transplantation on diabetic neuropathy.

Reestablishment of the euglycemic state by successful transplantation of the pancreas might halt or reverse diabetic neuropathy. To test this possibility we evaluated neurologic function by clinical examination, nerve conduction studies, and autonomic-function tests in patients with insulin-dependent (Type I) diabetes mellitus before and after successful pancreatic transplantation. Sixty-one patients were studied before and 12 months after transplantation, 27 again after 24 months, and 11 again after 42 months. A control group of patients with Type I diabetes treated with insulin underwent the same studies at similar intervals--48 patients before and after 12 months had elapsed, 21 again after 24 months, and 12 again after 42 months. In the control group, neuropathy tended to worsen during the follow-up period. The scores on the clinical examination indicated increased impairment after 12 months. Composite indexes of the degree of abnormality found on neurophysiologic testing of the function of peripheral motor, sensory, and autonomic nerves indicated decreased autonomic function after 12 months. The examination score and the three index values worsened slightly but not significantly in the patients followed for 24 and 42 months. In contrast, in the patients who had received pancreatic transplants, the neuropathy tended to improve. There was significant improvement in the motor and sensory indexes 12 months after transplantation and in the sensory index 24 months after transplantation. The other measures improved slightly but not significantly at these times, as did all four measures in the patients studied 42 months after transplantation. We conclude that the progression of diabetic polyneuropathy may be halted through the restoration of a euglycemic state by successful pancreatic transplantation.

Adult↗

Effects of hemipancreatectomy on insulin secretion and glucose tolerance in healthy humans.

Pancreatic tissue obtained by hemipancreatectomy from healthy living related donors has been transplanted into recipients with Type I diabetes mellitus. To determine the metabolic consequences of this procedure for the donors, we carried out oral glucose-tolerance testing and 24-hour monitoring of serum glucose levels and urinary C-peptide excretion as a measure of insulin secretion in 28 donors, both before and one year after hemipancreatectomy. The mean fasting serum glucose level was significantly higher one year after the procedure (mean +/- SD, 5.4 +/- 0.9 vs. 4.9 +/- 0.5 mmol per liter; P less than 0.003), as was the serum glucose value two hours after the administration of glucose (8.7 +/- 2.9 vs. 6.5 +/- 1.0 mmol per liter; P less than 0.001). The fasting serum insulin level was significantly lower one year after hemipancreatectomy (33.0 +/- 21.6 vs. 38.4 +/- 21.6 pmol per liter; P less than 0.05), as was the area under the insulin curves during the oral glucose-tolerance test (52,554 +/- 22,320 vs. 76,230 +/- 33,354 pmol per liter per minute; P less than 0.04). The mean 24-hour serum glucose-profile value was higher at one year, and the 24-hour urinary C-peptide excretion was lower in the 17 donors who underwent these studies. Seven of the 28 donors had abnormal glucose tolerance one year after hemipancreatectomy; however, insulin secretion in these 7 donors was indistinguishable from that in the 21 donors who had normal glucose tolerance. All 28 donors had fasting serum glucose concentrations lower than 7.8 mmol per liter, and their mean 24-hour plasma glucose levels remained within the normal range. We conclude that in healthy donors hemipancreatectomy results in a deterioration of insulin secretion and glucose tolerance, as measured one year later. Further study is required to ascertain whether the development of clinical diabetes mellitus is a risk inherent in hemipancreatectomy.

Adult↗

Population-based study of impaired glucose tolerance and type II diabetes in Wadena, Minnesota.

The Wadena City Health Study was undertaken to assess the nature of type II (non-insulin-dependent) diabetes and its relationship to aging. This article reports the study methodology and prevalence estimates for type II diabetes and impaired glucose tolerance (IGT) for the adult population of Wadena, Minnesota. The sampling frame for the study included all known diabetic individuals and all other residents based on a complete citywide census of residents greater than or equal to 20yr of age. A stratified random sample that included three stratifying factors (age [20-39, 40-59, greater than or equal to 60 yr], sex, and self-reported weekly use of any prescribed medication was drawn from the other residents). The study protocol required diet preparation and two full mornings of testing. Data collected included height, weight, and blood pressure measurements and both a personal interview and a medications questionnaire. A 75-g oral glucose tolerance test (OGTT) and a test with a standard liquid meal (Ensure-Plus challenge test [EPCT], Ross) were done on two mornings, with the order of testing randomly assigned. Clinical tests included one-time samples for hemoglobin, glycosylated hemoglobin, plasma cholesterol, triglycerides, and lipoproteins. Blood samples for glucose and creatinine assays were taken during the OGTT; blood samples for glucose, free fatty acid, creatinine, and C-peptide were taken during the EPCT. Urine collections were performed for both challenge tests and assayed for C-peptide and creatinine. Seventy-one percent of the known diabetic subjects, and 65% of the stratified random sample participated in the study.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The effects of pancreas transplantation on the glomerular structure of renal allografts in patients with insulin-dependent diabetes.

The microvascular complications of diabetes mellitus may be caused, in part, by poor glycemic control. Diabetic patients who have received renal allografts may have new glomerular lesions that are manifested structurally by increases in mesangial and glomerular volume. Successful pancreas transplantation produces long-term normoglycemia and provides a unique opportunity to evaluate the impact of the normalization of the blood glucose level on the development of the renal lesions typical of diabetes mellitus in transplanted kidneys. We obtained biopsy specimens from the functioning renal allografts of 12 patients with insulin-dependent (Type I) diabetes before successful pancreas transplantation (performed one to seven years after renal transplantation) and repeated the biopsy at least 1.9 years later. In renal biopsy specimens obtained before pancreas transplantation, the mesangial volume was normal or modestly increased and the glomerular basement membrane was moderately thickened. At follow-up, no progression could be detected in any structural measure in the glomerulus. Furthermore, the recipients of pancreas transplants had smaller glomerular volumes than 13 matched diabetic patients who were recipients of renal allografts but who did not undergo pancreas transplantation (mean +/- SD, 1.80 +/- 0.55 vs. 2.47 +/- 0.73 x 10(6) microns 3; P = 0.02) and showed markedly less mesangial expansion (mesangial-volume fraction, 0.19 +/- 0.07 vs. 0.31 +/- 0.10 microns 3 per cubic micrometer; P = 0.004). We conclude that successful pancreas transplantation is associated with significantly less severe diabetic glomerulopathy in kidneys previously transplanted into diabetic patients. These data support the hypothesis that normoglycemia can prevent the progression of diabetic glomerulopathy in humans.

Adult↗

Familial clustering of diabetic kidney disease. Evidence for genetic susceptibility to diabetic nephropathy.

Diabetic nephropathy develops in less than half of all patients with diabetes. To study heredity as a possible risk factor for diabetic kidney disease, we examined the concordance rates for diabetic nephropathy in two sets of families in which both probands and siblings had diabetes mellitus. In one set, the probands (n = 11) had no evidence of diabetic nephropathy, with normal creatinine clearance and a urinary albumin excretion rate below 45 mg per day. In the other set, the probands (n = 26) had undergone kidney transplantation because of diabetic nephropathy. Evidence of nephropathy was found in 2 of the 12 diabetic siblings of the probands without nephropathy (17 percent). Of the 29 diabetic siblings of probands with diabetic nephropathy, 24 (83 percent) had evidence of nephropathy (P less than 0.001), including 12 with end-stage renal disease. No significant differences were noted between the sibling groups with respect to the duration of diabetes, blood pressure, glycemic control, or glycosylated hemoglobin levels. Logistic regression analysis found nephropathy in the proband to be the only factor significantly predictive of the renal status of the diabetic sibling. We conclude that diabetic nephropathy occurs in familial clusters. This is consistent with the hypothesis that heredity helps to determine susceptibility to diabetic nephropathy. However, this study cannot rule out the possible influences of environmental factors shared by siblings.

Adolescent↗

A 10-year experience with 290 pancreas transplants at a single institution.

Since our report at the 1984 American Surgical Association meeting of 100 pancreas transplants from 1966 through 1983, another 190 have been performed. The current series, begun in 1978, now numbers 276 cases, and includes 133 nonuremic recipients of pancreas transplants alone (PTA), 46 simultaneous pancreas/kidney transplants (SPK), and 97 pancreas tranplants after a kidney transplant (PAK). Duct management techniques used were free intraperitoneal drainage in 44 cases, duct occlusion in 44, enteric drainage in 89, and bladder drainage in 128. The 1-year patient and graft survival rates in the entire cohort of 276 were 91% and 42%. One-year patient survival rates were 88% in the first 100, 91% in the second 100, and 92% in the last 76 cases; corresponding 1-year graft survival rates were 28%, 47%, and 56% (p less than 0.05). A prospective comparison of bladder drainage (n = 82) versus enteric drainage (n = 46) in PAK/PTA cases since November 1, 1984 favored bladder drainage (1-year graft survival rates of 52% vs. 41%) because of urinary amylase monitoring. The best results were in recipients of primary SPK bladder-drained transplants (n = 39), with a 1-year pancreas graft survival rate of 75%, kidney graft survival rate of 80%, and patient survival rate of 95%. Logistic regression analysis, with 1-year graft function as the independent variable, showed significant (p less than 0.05) predictors of success (odds ratio) to be technique: bladder drainage (5.8) versus enteric drainage (2.5) versus duct injection (1.0); category: SPK (6.0) versus PAK from same donor (3.2) versus PAK from different donor (1.2) versus PTA (1.0); and donor HLA DR mismatch: 0 (5.0) versus 1 (2.5) versus 2 (1.0) antigens. On April 1, 1989, 90 patients had functioning grafts (60 euglycemic and insulin-free for more than 1 year, 10 for 5 to 10 years); these, along with 24 others whose grafts functioned for 1 to 6 years before failing, are part of an expanding cohort in whom the influence of inducing a euglycemic state on pre-existing secondary complications of diabetes is being studied. Only preliminary data is available. In regard to neuropathy, at more than 1 year after transplant in patients with functioning grafts, conduction velocities in some nerves were increased over baseline. In regard to retinopathy, deterioration in grade occurred in approximately 30% of the recipients by 3 years, whether the graft functioned continuously or failed early, but thereafter retinopathy in the patients with functioning grafts remained stable.(ABSTRACT TRUNCATED AT 400 WORDS)

Diabetes Mellitus↗

Long-term survival following kidney transplantation in 100 type I diabetic patients.

Between December 1966 and April 1978, 265 uremic patients with type I diabetes received primary renal allografts at the University of Minnesota. One hundred of the diabetic patients were alive with a functioning graft 10 years after transplantation. The actual 10-year patient and primary graft functional survival rates overall were 40% and 32%, respectively. For recipients of HLA-identical sibling (n = 45), mismatched living-related (n = 121), and cadaver donor grafts (n = 99), the actual 10-year patient survival rates were 64%, 33%, and 36%, respectively, and the actual 10-year graft functional survival rates were 62%, 28%, and 22%, respectively. The differences in patient and graft survival rates between HLA-identical graft recipients and recipients of mismatched related and cadaver grafts were significant (P less than 0.001). Of the 100 patients who survived into a second decade, at 15 years posttransplant 51% were alive, and 41% had functioning grafts. For recipients of HLA-identical sibling, mismatched living-related donor grafts, and cadaver donor grafts who survived 10 years, 47%, 57%, and 43%, respectively, were alive at 15 years, and 31%, 45%, and 43%, respectively, had functioning grafts. For recipients who made it to the second decade, patient and primary graft survival rates thereafter were not statistically different by donor source. Twenty-three patients died in the second decade after transplantation, 10 of cardiovascular disease. Twenty-five patients lost graft function in the second decade, 19 from death with a functioning graft. In regard to diabetic complications, recurrence of diabetic nephropathy was common, but only two patients lost graft function solely for this reason. In 21 patients (42 eyes) followed prospectively for 10 years, visual acuity deteriorated in 26%, was stable in 64%, and improved in 10% of eyes. Neurophysiological test results indicated that correction of uremia does not stop the progression of diabetic neuropathy in recipients of kidney transplants alone. Even without cyclosporine, nearly two-thirds of recipients of HLA-identical kidney grafts, more than one-quarter of recipients of mismatched living-related donor grafts, and more than one-fifth receiving cadaver grafts enjoyed an extension of life for more than 10 years.

Age Factors↗

Pancreas-transplant outcome in relation to presence or absence of end-stage renal disease, timing of transplant, surgical technique, and donor source.

The differences in pancreas-transplant outcome according to recipient status, surgical approach, and donor source are illustrated by an analysis of results at one institution with experience in several categories. From July 1978 to January 1988, 210 pancreas transplants were performed, and 67 grafts are still functioning, the longest for 9.7 yr. Since October 1984, a uniform immunosuppressive protocol has been used, antilymphocyte globulin, cyclosporin, azathioprine, and prednisone for induction and the last three drugs for maintaining antirejection therapy. During this period, 110 pancreas transplants were performed, 62 in nonuremic non-kidney transplants, 28 in recipients of a previous kidney, and 20 simultaneous with a kidney; 64 with bladder and 43 with enteric drainage; and 25 from related and 85 from cadaver donors. The overall patient survival rate at 1 yr was 91%, and there were no significant differences between the various categories. Graft survival rates, however, differed between the various categories created by combinations of the above variables. With bladder drainage, 1-yr function rates were 58% (n = 30), 47% (n = 15), and 77% (n = 19) in recipients of a pancreas transplant alone, a pancreas after a kidney, or a simultaneous pancreas-kidney transplant; with enteric drainage, 1-yr function rates were 33% (n = 32) and 36% (n = 11) in the pancreas transplant alone and pancreas after kidney categories (enteric drainage was not done in double-transplant patients).(ABSTRACT TRUNCATED AT 250 WORDS)

Humans↗

Metabolic effect of hemipancreatectomy in donors. Preoperative prediction of postoperative oral glucose tolerance.

Between November 1977 and January 1987, 55 transplantations of pancreas segments from living donors related to their recipients were performed at the University of Minnesota. A preliminary analysis of metabolic test results in donors tested 1 yr after hemipancreatectomy showed an increase in mean glucose and a decrease in mean insulin values during oral glucose tolerance tests (OGTTs) in 18 donors, a 14% increase in the mean of the mean glucose levels during 24-h metabolic profiles in 12 donors, and a decrease of 45% in the mean 24-h urinary C-peptide excretion in 21 donors. Including the studies performed postdonation, 11 of 31 (35%) donors developed an abnormal OGTT result. In a retrospective analysis, preoperative results of intravenous glucose tolerance tests (IVGTTs) and cortisone-stimulated OGTTs were found to be statistically significant predictors of an abnormal OGTT after hemipancreatectomy. The mean of the 5- to 50-min IVGTT insulin values was the best predictive test. With the cutoff value set at 62 microU/ml, this test result had a sensitivity of 100%, a specificity of 83%, and a positive predictive value of 75% for identifying donors who developed an abnormal OGTT. The sum of the 5- and 10-min IVGTT insulin (cutoff 140 microU/ml) had a sensitivity of 100%, a specificity of 67%, and a predictive value of only 60%, whereas the delta-insulin had values of 86, 71, and 60%, respectively. Both the IVGTT mean insulin and the sum of the 5-min and 10-min insulin test results were 100% predictive of an abnormal test (0% risk), but the IVGTT mean insulin excluded the lowest proportion of otherwise suitable donors (a low "false-alarm" rate). The IVGTT mean insulin can be used to identify or exclude potential donors who would develop an abnormal OGTT result should hemipancreatectomy be performed.

Glucose Tolerance Test↗

Recurrence of disease in pancreas transplants.

In a series of 200 pancreas transplants with 6 mo to less than 9 yr of follow-up, recurrence of disease was identified as the cause of graft failure in 8 cases, all in non- or minimally immunosuppressed recipients of transplants from identical twin (n = 3) or HLA-identical sibling (n = 5) donors. Recurrence of disease was defined as selective loss of beta-cells; other endocrine cell types persisted and appeared normal within the islets of the graft. Isletitis was present in islets with residual beta-cells during the evolution of the process in all nonimmunosuppressed and in some immunosuppressed recipients, but isletitis resolved in all cases in which beta-cell destruction was complete and also resolved in some cases in which residual beta-cells were retained after the introduction of or an increase in immunosuppression. Recurrence of disease can be prevented by immunosuppression, and 2 recipients of identical twin grafts and 12 recipients of grafts from HLA-identical siblings had functioning grafts as of March 1988, the longest greater than 7 yr. The process has not been observed in patients in whom full-dose immunosuppression has been used, including HLA-identical siblings, and this may be the reason no cases of recurrence of disease have been identified in recipients of cadaveric grafts. Alternatively, the observations are consistent with, but not proof of, the hypothesis that recurrence of disease (autoimmune isletitis leading to diabetes) is a major histocompatibility complex-restricted phenomenon.

Graft Rejection↗

Long-term study of normal kidneys transplanted into patients with type I diabetes.

We examined the rate of development of the lesions of diabetic nephropathy in transplanted kidneys residing for 6-14 yr in type I (insulin-dependent) diabetic kidney-allograft recipients. Although each recipient had end-stage diabetic nephropathy with his/her own kidneys, there was marked variability in the rate of development of mesangial expansion observed in the transplanted kidneys. The progression of glomerular pathology, including widening of the glomerular basement membrane and expansion of the mesangium, did not correlate significantly with several potential risk factors (e.g., donor source--cadaver or living related, histocompatibility match, age of the recipient or donor, age at onset of diabetes, duration of diabetes before renal failure, immunosuppressive drug dose, blood pressure, and severity of lesions of chronic rejection). However, there was a direct albeit imprecise relationship between the index of mesangial expansion at the final biopsy and the index of glycemic control (r = .61, P less than .01). These observations suggest that currently unknown factor(s) may modulate the progression of diabetic renal disease, even in a population that had uniformly demonstrated nephropathy risk. Our data support the hypothesis that in addition to glycemic control per se, there are risk factors intrinsic to the kidney itself.

Adolescent↗

Progression of diabetic retinopathy after pancreas transplantation for insulin-dependent diabetes mellitus.

We studied the effect of successful pancreas transplantation and consequent normoglycemia (mean total hemoglobin A1, 7.0 percent; range, 5.8 to 8.3) on visual function and diabetic retinopathy in 22 patients with Type I diabetes mellitus (study group). Sixteen similar patients in whom pancreas transplantation had been unsuccessful (mean total hemoglobin A1, 12.0 percent; range, 8.0 to 18.0) served as a control group. The majority of patients in both groups had advanced proliferative retinopathy. At a mean follow-up of 24 months we found no significant difference between the groups in the rate of progression of retinopathy, expressed as a score. Success of the transplantation did not prevent progression of retinopathy across the range of retinopathy studied. Progressive retinopathy was observed more commonly in patients with low retinopathy scores (nonproliferative or mild proliferative retinopathy) at base line in both the study group (13 of 17 eyes, or 76 percent) and the control group (7 of 12 eyes, or 58 percent). Further analysis suggested the possibility that after three years of euglycemia, the study group had less deterioration than the control group, particularly in eyes with advanced retinopathy. We observed no difference in the rate of loss of vision between the two groups. This study provides evidence that pancreas transplantation and subsequent normoglycemia neither reverse nor prevent the progression of diabetic retinopathy.

Adolescent↗

Glucose and insulin response in diabetic subjects: acute effect of carbohydrate level and the addition of soy polysaccharide in defined-formula diets.

This single-meal pilot study compared the plasma glucose and serum insulin response to defined-formula diets with two levels of carbohydrate (CHO) (55% and 30% of the kilocalories) with and without added soy polysaccharide (10 g) in subjects with type 2 diabetes mellitus. Subjects received each of the four liquid-formula test meals in a randomly assigned order: 1) high CHO, low fiber (HC, LF), 2) high CHO, high fiber (HC, HF), 3) low CHO, low fiber (LC, LF), and 4) low CHO, high fiber (LC, HF). On the day of each test meal the formula was consumed, eight blood samples were drawn for plasma glucose and serum insulin measurements, and a 4-h urine collection was obtained for measuring glucose excretion. Our results showed that area increments under glucose and insulin curves were significantly lower with both low-CHO formulas (p less than 0.001). The addition of soy polysaccharide to the liquid formula did not result in statistically different area increments for glucose or insulin.

Adult↗