561. Hepatic and extrahepatic responses to insulin in NIDDM and nondiabetic humans. Assessment in absence of artifact introduced by tritiated nonglucose contaminants.
It is well established that patients with non-insulin-dependent diabetes mellitus (NIDDM) are resistant to insulin. However, the contribution of hepatic and extrahepatic tissues to insulin resistance remains controversial. The uncertainty may be at least in part due to errors introduced by the unknowing use in previous studies of impure isotopes to measure glucose turnover. To determine hepatic and extrahepatic responses to insulin in the absence of these errors, steady-state glucose turnover was measured simultaneously with [6-3H]- and [6-14C]glucose during sequential 5- and 4-h infusions of insulin at rates of 0.4 and 10 mU.kg-1.min-1 in diabetic and nondiabetic subjects. At low insulin concentrations, [6-3H]- and [6-14C]glucose gave similar estimates of glucose turnover. Hepatic glucose release was equal to but not below zero in the nondiabetic subjects, but persistent glucose release (P less than 0.001) and decreased glucose uptake (P less than 0.001) was observed in the diabetic patients. At high insulin concentrations, both isotopes underestimated glucose turnover during the 1st h after initiation of the high-dose insulin infusion. More time (P less than 0.05) was required to reachieve steady state in NIDDM than nondiabetic subjects. At steady state, [6-3H]- but not [6-14C]glucose systematically underestimated (P less than 0.05) glucose turnover in both groups due to the presence of a tritiated nonglucose contaminant. The percentage of radioactivity in plasma due to tritiated contaminants was linearly related to turnover.(ABSTRACT TRUNCATED AT 250 WORDS)
562. Contribution of impaired muscle glucose clearance to reduced postabsorptive systemic glucose clearance in NIDDM.
作者: J E Gerich.;A Mitrakou.;D Kelley.;L Mandarino.;N Nurjhan.;J Reilly.;T Jenssen.;T Veneman.;A Consoli.
来源: Diabetes. 1990年39卷2期211-6页
The reduced postabsorptive rates of systemic glucose clearance in non-insulin-dependent diabetes mellitus (NIDDM) are thought to be the consequence of insulin resistance in peripheral tissues. Although the peripheral tissues involved have not been identified, it is generally assumed to be primarily muscle, the major site of insulin-mediated glucose disposal. To test this hypothesis, we measured postabsorptive systemic and forearm glucose utilization and clearance in 15 volunteers with NIDDM and 15 age- and weight-matched nondiabetic volunteers. Although systemic glucose utilization was increased in NIDDM subjects (14.5 +/- 0.5 vs. 11.2 +/- 0.2 mumol.kg-1.min-1, P less than 0.001), systemic glucose clearance was reduced 1.40 +/- 0.06 vs. 2.13 +/- 0.05 ml.kg-1.min-1, P less than 0.01). Although forearm glucose utilization was increased in NIDDM subjects (0.663 +/- 0.058 vs. 0.411 +/- 0.019 mumol.dl-1.min-1, P less than 0.001), forearm glucose dl-1 clearance was reduced (0.628 +/- 0.044 vs. 0.774 +/- 0.037 ml.L-1.min-1, P less than 0.01). However, extrapolation of forearm data to total-body muscle indicated that impaired clearance reduced muscle glucose disposal by only 61 +/- 21 mumol/min, whereas impaired systemic clearance reduced systemic glucose disposal by 662 +/- 82 mumol/min. Thus, impaired muscle glucose clearance accounted for less than 10% of the reduced systemic glucose clearance in NIDDM subjects. Therefore, we conclude that muscle insulin resistance plays only a minor role in the reduced systemic glucose clearance found in NIDDM in the postabsorptive state and propose that reduced brain glucose clearance is largely responsible.
563. Lack of predictive value of islet cell antibodies, insulin antibodies, and HLA-DR phenotype for remission in cyclosporin-treated IDDM patients. The Canadian-European Randomized Control Trial Group.
作者: T Mandrup-Poulsen.;J Mølvig.;H U Andersen.;S Helqvist.;G A Spinas.;M Munck.
来源: Diabetes. 1990年39卷2期204-10页
The effect of immunosuppression on the humoral immune response to islet autoantigens and exogenously administered insulin and the predictive value of islet cell cytoplasmic antibodies (ICAs), insulin antibodies (IAs), and HLA-DR phenotype for remission during immunosuppression were studied in a prospective randomized double-blind trial of cyclosporin administration in 98 newly diagnosed insulin-dependent diabetes mellitus (IDDM) patients. HLA-DR phenotype and glycosylated hemoglobin were determined at study entry, and insulin requirement, glucagon-stimulated C-peptide, ICAs, and IAs were measured at entry and after 1, 3, 6, 9, and 12 mo of follow-up. Cyclosporin therapy caused significant suppression of the prevalence and serum concentrations of ICAs and IAs. Cyclosporin-treated IDDM patients ICA+ at study entry had higher levels of stimulated C-peptide after 1 mo of study, but the increased beta-cell function was not associated with a higher frequency of insulin-free remission at 1 mo. ICA and IA status at entry did not predict cyclosporin-insulin-free remission as assessed by the prevalence of insulin-free remission or beta-cell function at 3-12 mo of study, and significant decrements in the titers or total disappearance of ICAs were not associated with an increased prevalence or duration of non-insulin-requiring remission or higher stimulated C-peptide values. There was no correlation between the serum levels of ICAs and IAs at entry and beta-cell function at 12 mo of follow-up.(ABSTRACT TRUNCATED AT 250 WORDS)
564. Metabolic effects of hyperglycemia and hyperinsulinemia on fate of intracellular glucose in NIDDM.
Hyperglycemia in non-insulin-dependent diabetes mellitus (NIDDM) stimulates peripheral glucose uptake, which tends to compensate for impaired insulin-mediated glucose uptake. The metabolic fate of glucose and suppression of fat oxidation may differ, however, when glucose uptake is stimulated primarily by insulin or hyperglycemia. To address this issue, three hyperinsulinemic glucose-clamp studies were performed in combination with indirect calorimetry in seven nonobese subjects with NIDDM. In the first two experiments, when glucose uptake was matched at approximately 8 mg.kg-1 fat-free mass (FFM).min-1 with primarily hyperinsulinemia (1350 +/- 445 pM) or hyperglycemia (20.8 +/- 1.8 mM), identical rates of glucose oxidation (3.21 +/- 0.29 and 3.10 +/- 0.23 mg.kg-1 FFM.min-1, NS) and nonoxidative glucose metabolism (5.19 +/- 0.75 and 5.46 +/- 0.61 mg.kg-1 FFM.min-1, NS) were achieved. When glucose uptake was increased further to 11.11 +/- 0.36 mg.kg-1 FFM.min-1 with less insulin (625 +/- 70 pM) and hyperglycemia, glucose oxidation (3.85 +/- 0.26 mg.kg-1 FFM.min-1) and nonoxidative glucose metabolism (7.26 +/- 0.51 mg.kg-1 FFM.min-1) rose significantly (both P less than 0.05 from matched studies at lower rates of glucose uptake). During all glucose-clamp studies, free fatty acids were comparably suppressed by 40-46% (all P less than 0.005 vs. basal values), whereas fat oxidation was suppressed by 70-80% (all P less than 0.005 vs. basal values). A strong negative correlation was observed between rates of glucose and fat oxidation (r = -0.88, P less than 0.001) when all studies were combined.(ABSTRACT TRUNCATED AT 250 WORDS)
565. Defective free-fatty acid and oxidative glucose metabolism in IDDM during hypoglycemia. Influence of glycemic control.
To examine the impact of diabetes and its treatment on plasma free-fatty acid (FFA) and oxidative fuel metabolism during hypoglycemia, we combined indirect calorimetry with [3-3H]glucose during a 4-h low-dose insulin infusion (plasma insulin approximately 2-fold above basal) in six poorly controlled and nine well-controlled insulin-dependent diabetes mellitus (IDDM) patients and in six healthy subjects. Diabetic subjects received insulin overnight to maintain euglycemia before study. Although free-insulin levels and counterregulatory hormone responses were similar, the plasma glucose fall was more pronounced in well-controlled diabetic subjects. In well-controlled diabetic and healthy subjects, the small increment in insulin rapidly suppressed plasma FFA and fat oxidation by approximately 50% and stimulated carbohydrate oxidation by approximately 80%. In contrast, plasma FFA levels did not fall in poorly controlled diabetic subjects, and glucose oxidation was not stimulated. To determine whether this resistance to the antilipolytic effect of insulin occurs in the absence of hypoglycemic counterregulation, we used a sequential low-dose euglycemic insulin clamp (0.2, 0.3, and 0.5 mU.kg-1.min-1). In healthy subjects, plasma FFA was nearly maximally suppressed at the lowest insulin dose. In contrast, plasma FFA remained persistently elevated in poorly controlled diabetic subjects at each insulin dose. However, the insulin dose-response curve for suppression of plasma FFA was near normal in well-controlled subjects. We conclude that poorly controlled IDDM diabetic patients are resistant to the antilipolytic effects of insulin and show impaired stimulation of glucose oxidation during insulin-induced hypoglycemia. Amelioration of these defects in well-controlled patients may be another factor contributing to the higher risk of hypoglycemia during intensified insulin therapy.
566. Effect of hyperinsulinemia and hyperglycemia on intracellular glucose and fat metabolism in healthy subjects.
Hyperinsulinemia and hyperglycemia per se both stimulate glucose uptake and the disposal of glucose by oxidative (Gox) and nonoxidative (Nox) metabolism. However, the intracellular metabolic fate of glucose may not be the same when glucose uptake is stimulated predominantly by either of these mechanisms due to different effects on fat oxidation (Fox). To address this issue, 11 healthy subjects each had four glucose-clamp studies performed in combination with indirect calorimetry to compare Gox, Nox, and Fox at two different rates of glucose uptake (approximately 7 and 10 mg.kg-1 fat-free mass [FFM].min-1) matched at each level by either hyperglycemia or hyperinsulinemia. When glucose uptake was matched at the lower rate (7 mg.kg-1 FFM.min-1), there was less suppression of both FFA (33 vs. 43%, P less than 0.05) and Fox (73 vs. 90%, P less than 0.05) and less stimulation of incremental (above basal) Gox (1.95 vs. 2.49 mg.kg-1 FFM.min-1, P less than 0.025) at low insulin (72 pM) and hyperglycemia (21.8 mM) compared with high insulin (280 pM) and euglycemia (5.1 mM). Matching glucose uptake at the higher rates (10 mg.kg-1 FFM.min-1) required greater than 300 pM of insulin (309 and 632 pM) in both studies and resulted in maximal suppression of FFA (49 vs. 46%, NS) and Fox (both greater than 90%, NS) and similar incremental Gox (2.89 vs. 2.73 mg.kg-1 FFM.min-1, NS) whether at hyperglycemia (15.7 mM) or euglycemia (5.2 mM). Therefore, both hyperinsulinemia and hyperglycemia stimulate glucose uptake and increase intracellular glucose availability, but insulin also regulates Gox by suppression of FFA and Fox. However, when FFA and Fox are maximally suppressed, the rate of glucose uptake, rather than the prevailing insulin level, determines the distribution of intracellular glucose metabolism.
567. Effects of converting-enzyme inhibition on barrier function in diabetic glomerulopathy.
Differential solute clearances were used to examine the effects of a 90-day course of enalapril on glomerular barrier function in 16 proteinuric patients with diabetic glomerulopathy. By day 90, plasma renin and prorenin became elevated, and arterial pressure declined. Transglomerular passage of dextrans of broad size distribution (radii 28-60 A) was lowered significantly. In a subset of 8 patients, withdrawal of enalapril was followed after an additional 30 days by a return of renin levels and arterial pressure to pretreatment levels. The dextran-sieving profile also returned to baseline, becoming uniformly elevated above treated day-90 levels. A theoretical analysis of the serial dextran-sieving profiles indicated that enalapril shifted glomerular pore size distribution to smaller size. These changes in barrier size selectivity were associated with a reduction in fractional albumin and IgG clearances during enalapril therapy and a subsequent rise in these quantities after its withdrawal; urinary protein excretion rate tended to vary in parallel. We conclude that inhibition of converting enzyme in humans with established diabetic glomerulopathy diminishes glomerular permeability to proteins by enhancing barrier size selectivity. Because neither enalapril therapy nor its withdrawal influenced the glomerular filtration or renal plasma flow rates significantly, we propose that the primary action of enalapril may be to modulate the intrinsic membrane properties of the glomerular barrier.
568. Effects of fish oil supplementation on glucose and lipid metabolism in NIDDM.
作者: M Borkman.;D J Chisholm.;S M Furler.;L H Storlien.;E W Kraegen.;L A Simons.;C N Chesterman.
来源: Diabetes. 1989年38卷10期1314-9页
Fish oils, containing omega-3 fatty acids (omega 3FAs), favorably influence plasma lipoproteins in nondiabetic humans and prevent the development of insulin resistance induced by fat feeding in rats. We studied the effects of fish oils in 10 subjects (aged 42-65 yr) with mild non-insulin-dependent diabetes mellitus (NIDDM). Subjects were fed a standard diabetic diet plus 1) no supplementation (baseline), 2) 10 g fish oil concentrate (30% omega 3FAs) daily, and 3) 10 g safflower oil daily over separate 3-wk periods, the latter two supplements being given in radom order by use of a double-blind crossover design. At the end of each diet period, fasting blood glucose (FBG), insulin, and lipids were measured, and insulin sensitivity was assessed with a hyperinsulinemic-euglycemic clamp performed with [3-3H]glucose. FBG increased 14% during fish oil and 11% during safflower oil supplementation compared with baseline (P less than .05), whereas body weight, fasting serum insulin levels, and insulin sensitivity were unchanged. The absolute increase in FBG during each supplementation period correlated with the baseline FBG (fish oil, r = .83, P less than .005); safflower oil, r = .75, P = .012). Fasting plasma triglyceride levels decreased during fish oil supplementation in the 4 subjects with baseline hypertriglyceridemia (greater than 2 mM) but were not significantly reduced overall. There was no significant change in fasting plasma total, high-density lipoprotein, and low-density lipoprotein cholesterol levels. In summary, dietary fish oil supplementation adversely affected glycemic control in NIDDM subjects without producing significant beneficial effects on plasma lipids. The effect of safflower oil supplementation was not significantly different from fish oil, suggesting that the negative effects on glucose metabolism may be related to the extra energy or fat intake.(ABSTRACT TRUNCATED AT 250 WORDS)
569. Double-blind controlled trial of azathioprine in children with newly diagnosed type I diabetes.
作者: J J Cook.;I Hudson.;L C Harrison.;B Dean.;P G Colman.;G A Werther.;G L Warne.;J M Court.
来源: Diabetes. 1989年38卷6期779-83页
A double-blind controlled trial of azathioprine (2 mg.kg-1.day-1) was conducted with 49 patients aged 2-20 yr (mean 10.8 yr) who had newly diagnosed type I (insulin-dependent) diabetes. Patients were randomly assigned to receive either azathioprine (n = 24) or placebo (n = 25) for 12 mo, beginning within the 20-day period after diagnosis. Baseline clinical and metabolic characteristics did not differ between the two groups. No patient experienced complete remission, defined as restoration of normal carbohydrate tolerance without other treatment. Partial remission, defined as good metabolic control (hemoglobin A1c less than or equal to 7.9%, preprandial blood glucose less than or equal to 8 mM with an insulin dose of less than 0.5 U.kg-1.day-1), occurred in 10 placebo (40%) and 7 azathioprine (29%) patients at 6 mo and in 4 placebo (16%) and 4 azathioprine (17%) patients at 12 mo (differences not significant). Fasting plasma C-peptide was significantly greater in the azathioprine-treated group at 3 and 6 mo, but this difference was not sustained. C-peptide responses to a standard meal and the frequency of islet cell and insulin antibodies did not differ between the two groups over the 12-mo period. Azathioprine caused no significant side effects. We conclude that in the dosage used, and despite early effects on endogenous insulin secretion, azathioprine alone does not influence the remission phase in children with newly diagnosed type I diabetes.
570. Metabolic effects of long-acting somatostatin analogue (sandostatin) in type I diabetic patients on conventional therapy.
We evaluated the effectiveness of a more potent and longer-acting somatostatin analogue (SMS 201-995) as an adjunct to insulin therapy, in a double-blind placebo-controlled randomized study of 26 C-peptide-negative type I (insulin-dependent) diabetic patients (20 women, 6 men, aged 22-40 yr) on their conventional drug regimens for 12 wk. Eight patients received a low dose (10 micrograms) of the analogue, 9 received a high dose (50 micrograms) of the analogue, and 9 received placebo subcutaneously before breakfast and dinner. Twenty-four-hour serum glucose, free insulin, plasma growth hormone (GH), and glucagon profiles were obtained before and during treatment at 4-wk intervals. The mean age, duration of diabetes, daily insulin dose, and body weight were not significantly different among the groups. The mean weekly capillary blood glucose values and exogenous insulin requirements were not changed by the SMS 201-995 therapy. Mean glycosylated hemoglobin A1 levels were unchanged in both the analogue- and placebo-treated groups at wk 12. Basal and postprandial glucose, free insulin, GH, and glucagon profiles were not influenced by the SMS 201-995 therapy throughout the study. Nocturnal glucose turnover rates (D-[3-3H]glucose technique) remained unaltered by the analogue therapy. Dose-dependent gastrointestinal (GI) adverse effects (e.g., diarrhea) were documented in the analogue-treated patients. Visual acuity and fundic photomicrographs of our patients were not changed by the analogue therapy. In conclusion, the prominent adverse GI effects our patients experienced preclude the use of larger doses of the analogue that may be necessary to suppress GH and glucagon and improve glucose control in type I diabetic patients.
571. Effect of aspirin alone and aspirin plus dipyridamole in early diabetic retinopathy. A multicenter randomized controlled clinical trial. The DAMAD Study Group.
来源: Diabetes. 1989年38卷4期491-8页
In a double-blind randomized controlled clinical trial conducted in two French and two United Kingdom centers, the effect of antiplatelet agents, i.e., aspirin alone (330 mg 3 times daily) or in combination with dipyridamole (75 mg 3 times daily), was tested versus placebo in 475 patients with early diabetic retinopathy. The assessment of retinopathy was based on change in the number of microaneurysms (MAs) present in the macular field, as seen on fluorescein angiograms, over 3 yr. Forty-one patients did not complete the study. At least three readable initial and yearly angiograms were available on 420 patients (266 treated with insulin and 154 not treated); the results reported are based on these patients. The mean yearly increase in definite MAs was similar in insulin-treated and non-insulin-treated diabetic patients. There was no significant difference between the aspirin-alone group (0.69 +/- 5.1 mean +/- SD, n = 145) and the aspirin-plus-dipyridamole group (0.34 +/- 3.0, n = 142). In the placebo group the mean yearly increase (1.44 +/- 4.5, n = 133) was significantly higher than in the treated group (P = .02, 1-tailed t test). There was a clear relationship between the deterioration in ophthalmological signs and the increase in mean yearly MAs (clinically stable, 0.38 +/- 3.96, n = 293; deteriorating, 1.79 +/- 4.89, n = 127; P = .002, 2-tailed t test). We conclude that aspirin alone and in conjunction with dipyridamole significantly slows the progression of MA evolution in early diabetic retinopathy.
572. Gemfibrozil alone and in combination with lovastatin for treatment of hypertriglyceridemia in NIDDM.
Hypertriglyceridemic patients with non-insulin-dependent diabetes mellitus (NIDDM) have an increased risk of coronary heart disease (CHD) and acute pancreatitis. To examine the potential of hypolipidemic drugs for therapy of lipoprotein abnormalities in NIDDM, 10 patients maintaining marked (plasma triglycerides greater than 500 mg/dl) and 6 with moderate (plasma triglycerides 250-500 mg/dl) hypertriglyceridemia, despite good glycemic control, were studied in two phases. In the first phase, gemfibrozil alone (600 mg twice daily) was compared with a placebo, and in the second phase a combination of gemfibrozil and lovastatin (20 mg twice daily) was compared with gemfibrozil alone in a randomized, double-blind, placebo-controlled crossover study. In markedly hypertriglyceridemic patients, gemfibrozil reduced plasma triglycerides by 52% and very-low-density lipoprotein cholesterol (VLDL-chol) by 55% and increased high-density lipoprotein cholesterol by 23% compared with a placebo. However, low-density lipoprotein cholesterol (LDL-chol) levels increased (42%), and LDL apolipoprotein B (apoB) levels remained unchanged. Addition of lovastatin to gemfibrozil effectively reduced total cholesterol (25%), LDL-chol (30%), and LDL-apoB (19%). Lovastatin further reduced plasma triglycerides (11%) and VLDL-chol (27%). However, in moderately hypertriglyceridemic patients, gemfibrozil or the combination therapy did not seem to offer benefits over the previously reported study with lovastatin alone. Glycemic control was maintained throughout the study. In conclusion, the beneficial effects of the combination therapy on lipoprotein levels in markedly hypertriglyceridemic NIDDM patients could decrease the risk of development of both acute pancreatitis and CHD.
573. Effect of cyclosporin on interleukin 2-related T-lymphocyte parameters in IDDM patients.
Seventy patients aged 15-40 yr with recent-onset insulin-dependent diabetes mellitus (IDDM) were entered into a double-blind trial, in which they were randomly assigned to either cyclosporin (7.5 mg.kg-1.day-1) or to placebo and were monitored for 1 yr for various phenotypic and functional parameters of T-lymphocyte-mediated immunity. Before treatment, the proportions of total T-lymphocytes (CD3+) and helper-inducer T-lymphocytes (CD4+) were normal, whereas significantly decreased values of suppressor/cytotoxic T-lymphocytes (CD8+), as compared with normal controls, were found in 31% of the patients. The interleukin 2 (IL-2)-receptor expression was significantly increased in IDDM patients compared with control subjects, although the single values were low: patients, 2.02 +/- 0.41%; controls, 0.88 +/- 0.25% (means +/- SE). Circulating levels of soluble IL-2 receptor were also significantly increased in IDDM patients compared with controls: patients, 372.3 +/- 25.4 U/ml; controls, 235.5 +/- 29.3 U/ml (means +/- SE). However, no major abnormalities were found in mitogen (phytohemagglutinin)-induced IL-2 production, cell proliferation, or IL-2-receptor expression. After 6 mo of cyclosporin treatment, no major modifications of any of the parameters analyzed were noted, even in patients who had cyclosporin blood trough levels greater than 300 ng/ml, i.e., the threshold value associated with clinical efficacy. One explanation for the absence of a major effect of cyclosporin, in contrast with its demonstrated clinical effectiveness, is the reversibility of its activity. Our results preclude the use of the described tests to reliably monitor IDDM patients undergoing immunosuppressive therapy.
574. Glucose homeostasis and insulin secretion during chronic treatment with cyclosporin in nondiabetic humans.
Cyclosporin or placebo was administered in a randomized, double-blind fashion to 13 patients with multiple sclerosis for 1 yr to determine whether cyclosporin adversely affects glucose homeostasis or beta-cell function. No significant differences were observed in fasting glucose, fasting insulin, intravenous glucose tolerance, or glucose-induced insulin secretion before treatment or at 3 wk, 6 mo, or 1 yr during treatment. Longer therapeutic trials with larger patient groups will be necessary to decide whether cyclosporin can be safely given for many years without risk of developing diabetes mellitus.
575. Intravenous glucose tolerance and pancreatic islet beta-cell function in patients with multiple sclerosis during 2-yr treatment with cyclosporin.
Cyclosporin is an immunosuppressive drug used with increasing frequency in patients with diabetes mellitus both as experimental primary therapy for insulin-dependent diabetes mellitus and as therapy accompanying pancreatic transplantation. However, reports have appeared contending that cyclosporin causes glucose intolerance and inhibits pancreatic islet beta-cell function. Consequently, concern has been raised that the beneficial effects of immunosuppression may be offset by adverse metabolic effects of the drug. To address this issue, we examined intravenous glucose tolerance and pancreatic islet beta-cell function in a group of nondiabetic multiple sclerosis patients before and during a 2-yr course of cyclosporin or placebo therapy. Patients were randomly assigned to one of the two drug groups and followed in a double-blind manner. Basal levels of glucose, insulin, and C-peptide as well as glucose disappearance rates and pancreatic islet beta-cell function after stimulation with intravenous glucose and arginine were determined immediately before therapy and after 3 wk, 6 mo, 1 yr, and 2 yr of therapy. No abnormalities in these parameters were observed in the cyclosporin of the placebo-treated group. It appears that cyclosporin can be give in conventional doses for as long as 2 yr without encountering evidence for impaired glucose homeostasis. However, whether adverse effects will materialize over longer periods of drug use remains a question.
576. Renal response to restricted protein intake in diabetic nephropathy.
Proteinuria in diabetes is associated with progressive glomerular damage. We studied the effects of 3-wk dietary protein restriction on proteinuria and renal function in 10 insulin-dependent diabetic men with diabetic nephropathy. Patients were randomly assigned by a crossover design to 40-g low-protein diet (LPD) or usual-protein diet (UPD). Glomerular filtration rate and renal plasma flow were measured by inulin and p-aminohippurate clearance at the end of each period under conditions of sustained euglycemia. Total calorie intake, body weight, serum albumin and total protein concentrations, hematocrit, blood pressure, and glucose control were similar during the two diets. Achieved protein intake was 46 +/- 3 g/day during LPD and 81 +/- 4 g/day during UPD (P less than .001). Urinary urea appearance and plasma urea were significantly lower on LPD. Median total urinary protein was reduced from 3.9 g/day (range 0.5-12.3) on UPD to 2.4 (range 0.2-9.0) on LPD (P less than .006), and there was a significant fall in the median fractional clearance of albumin from 2.0 x 10(-4) (range 0.1-90.9) on UPD to 1.0 x 10(-4) (range 0.1-51.4) on LPD and IgG from 2.1 x 10(-5) (range 0.2-238) to 1.5 x 10(-5) (range 0.1-77) (P less than .006 and P less than .02, respectively). The reabsorption rate of beta 2-microglobulin was similar on the two diets and glomerular filtration rate, renal plasma flow, and filtration fraction remained unchanged. Thus, short-term dietary protein restriction reduces diabetic proteinuria independently of blood glucose or systemic blood pressure changes by improving glomerular permselectivity.
577. Effect of fish oil concentrate on lipoprotein composition in NIDDM.
Non-insulin-dependent diabetes mellitus (NIDDM) is associated with elevated very-low-density lipoprotein (VLDL) triglyceride concentrations and abnormalities of low-density lipoprotein (LDL) composition. Because fish oil supplementation may favorably affect lipid and lipoprotein concentrations in nondiabetic subjects, we determined the effect of fish oil concentrate on plasma lipids and lipoprotein composition in patients with NIDDM. Dietary-supplementation 1-mo periods of 4.0 and 7.5 g of omega-3 fatty acids in fish oil were compared with a placebo of 12 g safflower oil by use of a single-blind crossover design. Medications, including antidiabetic therapy, were continued through the study. Compared with safflower oil treatment, fish oil supplementation resulted in a significant reduction of total plasma triglycerides of 24% at the 4-g dose and a larger reduction of 39% at the 7.5-g dose. These decreases were due to similar reductions in VLDL triglycerides. LDL cholesterol levels were mildly elevated, but a larger 20% increase in LDL apolipoprotein B (apoB) concentration was observed. During supplementation with the fish oil concentrate, the LDL cholesterol-to-apoB ratio was significantly reduced when compared with pretreatment values, but not when compared with safflower oil treatment. High-density lipoprotein (HDL) cholesterol and plasma apoA1 levels were not significantly changed during fish oil treatment. At the 7.5-g dose, fasting glucose and glycohemoglobin levels increased by 20 and 12%, respectively, but were unchanged at the lower level of supplementation. Thus, in NIDDM patients, dietary supplementation with omega-3 fatty acids induces a reduction in total plasma and VLDL triglyceride levels.(ABSTRACT TRUNCATED AT 250 WORDS)
578. Cyclosporin-induced remission of IDDM after early intervention. Association of 1 yr of cyclosporin treatment with enhanced insulin secretion. The Canadian-European Randomized Control Trial Group.
来源: Diabetes. 1988年37卷11期1574-82页
A randomized double-blind placebo-controlled trial was undertaken to determine whether cyclosporin enhances remission of insulin-dependent diabetes mellitus (IDDM) through the 1st yr after diagnosis. Dosage with insulin was minimized with target control of blood glucose levels less than or equal to 7.8 mM (140 mg/dl) before meals. Metabolic control was evaluated by serial determinations of glycosylated hemoglobin levels, and endogenous secretion of insulin was evaluated by determination of the levels of glucagon-stimulated insulin-connecting peptide (CP) in the plasma at 3-mo intervals. A compound definition of remission required a glucagon-stimulated CP level in plasma greater than or equal to 0.6 nM or a non-insulin-receiving state (NIR) in which target control of glycemia was maintained without administration of insulin. A clinical definition of remission required only the NIR state as defined. One hundred eighty-eight patients aged 10-35 yr entered the study within 6 wk of initiation of insulin therapy and within 14 wk of onset of symptoms and were studied for 1 yr. There were no significant differences in metabolic control between the two treatment groups during the study. The anticipated adverse effects of cyclosporin were not more frequent or severe than in other experience with the drug, but histological changes attributable to cyclosporin were present in some kidney biopsies obtained from selected patients after 1 yr. At 1 yr, by the compound definition, 33% of the cyclosporin-group and 21% of the placebo-group patients were in remission, when the corresponding rates for NIR remissions were 24 and 10%.(ABSTRACT TRUNCATED AT 250 WORDS)
579. Effect of vitamin E supplementation on platelet thromboxane A2 production in type I diabetic patients. Double-blind crossover trial.
作者: C Gisinger.;J Jeremy.;P Speiser.;D Mikhailidis.;P Dandona.;G Schernthaner.
来源: Diabetes. 1988年37卷9期1260-4页
Vitamin E deficiency is associated with increased platelet aggregation, which can be normalized through vitamin E supplementation. In diabetes, increased platelet thromboxane A2 (TXA2) production is correlated with decreased platelet vitamin E content. We therefore investigated the effect of 400 mg DL-alpha-tocopherol acetate daily for 4 wk on ADP- and collagen-induced platelet aggregation and platelet TXA2 production in 22 type I (insulin-dependent) diabetic patients without macroangiopathy and with no or only minimal microangiopathy by a double-blind placebo-controlled crossover study. Platelet aggregation was induced in platelet-rich plasma by two or three different concentrations of ADP and collagen. TXA2 was measured by the stable spontaneous breakdown product thromboxane B2 by a specific radioimmunoassay. Whereas metabolic control remained unchanged during the study period, platelet TXA2 production was significantly (P less than .05 and P less than .01) reduced at each ADP concentration and at two of three collagen concentrations. Because increased TXA2 production of diabetic platelets is thought to play an important pathogenetic role in diabetic angiopathy, we conclude that vitamin E treatment could be beneficial with respect to platelet-vessel-wall interaction and thus might be promising for the prevention of diabetic angiopathy.
580. Inhibition of insulin release in vitro mediated by mononuclear cells from diabetic patients treated with cyclosporin A or placebo.
作者: M Debray-Sachs.;P Sai.;G Feutren.;F Lang.;D Maugendre.;C Boitard.;J Hors.;J F Bach.
来源: Diabetes. 1988年37卷7期873-7页
Anti-beta-cell-specific cell-mediated immunity was studied over a 12-mo period in 65 recently diagnosed diabetic patients randomly receiving either cyclosporin or placebo. Anti-beta-cell cellular immunity was assessed by an in vitro test based on the inhibition of insulin release from cultured rat islet cells by patients' mononuclear cells. This beta-cell-suppressive effect disappeared in cyclosporin A-treated patients within 1 mo and did not reappear during 12 mo of follow-up. Conversely, the suppressive effect persisted unchanged in placebo-treated patients during 12 mo of follow-up. These changes were predictive neither of cyclosporin A-induced remission nor of relapses. Results of the insulin-release inhibition test were not correlated to islet cell autoantibodies or HLA phenotype.
|