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Biomedical subjects

J A Lutterman

Publications and source records attributed to J A Lutterman.

At least 55 records · Page 3Linked to original sources

Regional hyperinsulinemia induces vasodilation but does not modulate adrenergic responsiveness in humans.

The relation between insulin resistance/ hyperinsulinemia and cardiovascular disease may be related to one of the cardiovascular effects of insulin. In acute experiments in humans, systemic euglycemic hyperinsulinemia induced vasodilation in skeletal muscle. Furthermore, the sympathetic nervous system is activated, although this does not lead to increase in blood pressure (BP). We hypothesized that insulin could induce vasodilation either by reduction of alpha- or by augmentation of beta-adrenergic responsiveness. The effect of insulin infusion into the brachial artery (regional forearm hyperinsulinemia; venous insulin concentration approximately 500 pM) on forearm blood flow (FBF: plethysmography) was studied. Responses to the alpha-adrenoceptor-mediated vasoconstrictor norepinephrine (NE: once with and once without the beta-adrenoceptor antagonist propranolol, 2 x n = 12; 9 participated in both), and to the beta-adrenoceptor-mediated vasodilator isoproterenol (n = 12) were measured before and during local hyperinsulinemia. Time/control studies (n = 6) were performed. Insulin alone induced vasodilation, as indicated by an increase in FBF-ratio (infused/ control arm) from 1.2 +/- 0.1 to 1.6 +/- 0.2, p = 0.009. Increasing dosages of NE (1.25 to 240 ng.dl-1.ml-1) induced vasoconstriction that was more pronounced during concomitant propranolol infusion (p < 0.001), indicating a dose-dependent vasodilatory component in the effect of NE. Isoproterenol (ISO 0.03 to 10 ng.dl-1.ml-1), a pure beta-adrenoceptor agonist, induced vasodilation. The percentage changes of FBF-ratio during NE+propranolol were similar and not significantly different before and during hyperinsulinemia. The same was true of the response to NE alone and the response to ISO. Neither was the intrinsic beta-agonist component of NE influenced by insulin. Repeated NE infusion showed no time- or vehicle effect. We conclude that regional hyperinsulinemia in the physiological range induces local vasodilation in the skeletal muscle vascular bed, but this vasodilation is not mediated through modulation of alpha- or beta-adrenergic responsiveness.

Adult↗

Activation of the sodium-potassium pump contributes to insulin-induced vasodilation in humans.

Systemic hyperinsulinemia induces vasodilation in human skeletal muscle. This vasodilation contributes to insulin-stimulated glucose uptake and has been found to be reduced in various insulin-resistant states. The mechanism of the effect of insulin on vascular tone is not completely understood. We hypothesized that activation of the sodium-potassium pump (Na+, K(+)-ATPase) located in endothelial or smooth muscle cells would be involved in the insulin-mediated vasodilation. Therefore, in 24 healthy, nonsmoking, nonobese, normotensive volunteers, we infused ouabain, a specific inhibitor of Na+, K(+)-ATPase, into the brachial artery before and during euglycemic hyperinsulinemia. As expected, insulin (systemic concentrations, approximately 700 [low] and 1400 [high] pmol.L-1) induced vasodilation in the control arm (forearm blood flow [FBF, plethysmography] from 1.6 +/- 0.2 to 2.1 +/- 0.4 mL.dL-1.min-1 [low insulin] and from 1.6 +/- 0.2 to 2.1 +/- 0.2 [high insulin], P < .05 for both), but the increase in FBF was abolished in the ouabain-infused forearm (from 1.3 +/- 0.1 to 1.4 +/- 0.2 mL.dL-1.min-1 [low] and from 1.3 +/- 0.1 to 1.3 +/- 0.1 [high], P = NS). Ouabain-induced increases in forearm potassium release were partly reversed by insulin. To investigate whether the mechanism of action could be at the endothelial level, we infused NG-monomethyl-I-arginine (L-NMMA), an inhibitor of endothelial nitric oxide synthase (0.05, 0.1, and 0.2 mg.dL-1.min-1) intra-arterially in 12 subjects and induced a clear dose-dependent decrease of FBF from 1.7 +/- 0.2 to 1.2 +/- 0.1 mL.dL-1.min-1 (P < .01). In contrast, after ouabain (and continued insulin) infusion, L-NMMA had no effect on FBF (from 1.6 +/- 0.4 to 1.5 +/- 0.3 mL.dL-1.min-1, n = 6, P = .66). These results demonstrate that insulin induces vasodilation by stimulation of Na+, K(+)-ATPase. This activation of Na+, K(+)-ATPase could occur at the level of the endothelium rather than that of vascular smooth muscle and contributes to the endothelium-dependent vasodilator response to insulin.

Adolescent↗

Effects of insulin on vascular tone and sympathetic nervous system in NIDDM.

Chronic activation of the sympathetic nervous system may be a pathogenetic mechanism by which hyperinsulinemia induces cardiovascular damage in insulin-resistant NIDDM patients. The influence of physiological hyperinsulinemia (approximately 700 pmol/l) on basal and stimulated sympathetic outflow was studied in 12 lean normotensive subjects with well-controlled NIDDM without complications and in 13 matched control subjects. Forearm blood flow (FBF) was measured with forearm plethysmography; sympathetic nervous system activity was assessed by the [3H]norepinephrine (NE) tracer method. NIDDM patients were insulin resistant (glucose infusion rates 31.8 +/- 3.8 vs. 48.7 +/- 2.0 mumol.kg-1.min-1 in control subjects, P < 0.01). After a mixed meal, NIDDM patients showed a hyperinsulinemic response (2-h insulin levels: NIDDM patients 324 +/- 34 pmol/l, control subjects 165 +/- 19 pmol/l, P < 0.001). Insulin infusion induced a vasodilator response (not significantly different between the groups). Arterial plasma NE levels and total-body NE spillover increased significantly (total spillover in NIDDM patients from 0.77 +/- 0.09 to 1.18 +/- 0.16 nmol.m-2.min-1, in control subjects from 0.98 +/- 0.14 to 1.23 +/- 0.18 nmol.m-2.min-1, P < 0.01 for all, not different between groups). Total-body NE clearance did not change. Sympathetic stimulation (lower-body negative pressure [LBNP] 15 mmHg) induced forearm vasoconstriction and increased arterial and venous plasma NE and total NE spillover. Responses of FBF and NE kinetics to LBNP were not significantly different between groups and were not altered by hyperinsulinemia. Although these nonobese subjects with uncomplicated NIDDM showed postprandial hyperinsulinemia and resistance to the effect of insulin on glucose metabolism, this group was not resistant to the vasodilator and sympathetic stimulant effects of insulin. Responses to sympathetic stimuli (LBNP) were normal and unaffected by physiological hyperinsulinemia. Therefore, because of daily life hyperinsulinemia, chronic sympathetic stimulation could be operative in these patients and may explain the increased incidence of hypertension and/or cardiovascular complications.

Adult↗

Effect of long-term angiotensin-converting enzyme inhibition on endothelial function in patients with the insulin-resistance syndrome.

Cardiovascular risk factors such as hypertension, diabetes, and dyslipemia are associated with an impaired endothelium-dependent vasodilation. In patients with type 2 diabetes mellitus, these risk factors are frequently clustered. We investigated whether long-term treatment with the angiotensin-converting enzyme (ACE) inhibitor perindopril can improve endothelium-dependent vasodilation in this particular group of patients. We selected 10 patients with type 2 diabetes and hypertension (age 59.4 +/- 3.2 years, body mass-index 29.7 +/- 1.5 kg.m-2, blood pressure 169 +/- 6/92 +/- 1 mm Hg, total cholesterol 6.6 +/- 0.3 mM). Using venous occlusion plethysmography, we recorded the increases in forearm blood flow (FBF) in response to three vasodilator stimuli: (a) 5 min of forearm ischemia, (b) infusion of the endothelium-dependent vasodilator methacholine (Mch) into the brachial artery (0.03, 0.3, and 1.0 micrograms/min/100 ml), and (c) intraarterial infusion of the endothelium-independent vasodilator sodium nitroprusside (SNP 0.06, 0.2, 0.6 microgram/min/100 ml). This procedure was repeated after 6 months of treatment with perindopril 4-8 mg/day. Forearm vascular resistance (FVR) was calculated by the quotient of the mean arterial pressure (MAP) and the FBF. Perindopril reduced blood pressure (BP) by 19/10 mm Hg (p < 0.05) and increased baseline FVR, but improved neither the maximal percentage decrease in vascular resistance induced by Mch (from -80 +/- 2 to -82 +/- 2%) nor that induced by SNP (from -73 +/- 3 to -72 +/- 3%). Perindopril decreased the FVR reached after the ischemic stimulus from 6.5 +/- 1.2 to 4.8 +/- 0.6 U (p < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors↗

The influence of ulnar nerve blockade on skin microvascular blood flow.

Microvascular research is seriously hampered by the great temporal and spatial variability of the measured skin blood flow and variation in sympathetic vasomotor reflexes within and between persons. Therefore skin vasomotor reflexes were studied before and after ulnar nerve blockade within the same person, resulting in a temporal complete denervation of the fifth finger and partial denervation of the fourth finger. Skin temperature and laser Doppler flux (LDF) were registrated to measure predominantly arteriovenous shuntflow. Measurements were performed on the palmar tip of the second and fifth finger in nine healthy volunteers, at baseline, and during a sympathetic reflex test (i.e. inspiratory gasp) and postural response test. Beat-to-beat digital blood pressure was recorded from the third and fourth finger by a Finapres device. Baseline capillary blood cell velocity (CBV) was measured at the nailfold of the second and the fifth finger. After ulnar blockade baseline skin temperature, LDF and CBV increased significantly, with respectively (mean +/- SE) 3.2 +/- 0.9 degrees C, 20.9 +/- 5.9 relative perfusion units and 0.79 +/- 0.40 mm-1 s. The percentage LDF decrease of the fifth finger during inspiratory gasp was 48.2 +/- 5.3% before and 3.1 +/- 0.9% after blockade. The postural response test showed a decrease in LDF of the fifth finger with no significant difference before and after blockade, respectively 12.3 +/- 14.7% and 8.0 +/- 2.7%, while no difference was found in the increase in digital blood pressure in the denervated fourth finger compared to both the same finger before blockade and to the third non-blocked finger.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Flow Velocity↗

The effect of dexfenfluramine on eating habits in a Dutch ambulatory android overweight population with an overconsumption of snacks.

OBJECTIVE: To investigate the effect of the serotonin receptor agonist dexfenfluramine on eating habits and weight loss in ambulatory, android type, moderately obese patients with an overconsumption of snacks. DESIGN: 9 week, randomized, double-blind treatment with either dexfenfluramine (30 mg/day) or placebo, without dietary intervention. SETTING: Outpatient clinics of four University Hospitals in The Netherlands. SUBJECTS: 112 healthy obese subjects, body mass index 28-35 kg/m2, waist-to-hip ratio > or = 1.0 for men and > or = 0.8 for women, consuming more than five snacks containing in total more than 500 kcal/day and/or more than 25% of total calorie intake in the form of snacks. MAIN OUTCOME MEASURES: Changes in macronutrient composition of the diet, food intake (total, at principal meals and in between meals in the form of snacks) and weight loss. RESULTS: 104 subjects were included for efficacy analysis. In both the dexfenfluramine group (n = 51) and the placebo group (n = 53) the total energy intake decreased. The decrease during main meals was significantly greater in the dexfenfluramine group for all parameters tested except for simple carbohydrates. In between meals the decrease in intake was significantly greater in the dexfenfluramine group for total energy intake (P < 0.05) and intake in unsaturated fat (P < 0.05). The reported reduction in total food intake in the dexfenfluramine group was similarly due to reductions in carbohydrate and fat intake. No weight loss was seen in the placebo group. The treated group lost 3.1 +/- 0.2 kg (P < 0.01). CONCLUSION: Dexfenfluramine effectively reduces the intake of carbohydrates as well as fat in ambulatory, non diet restricted android obese subjects by reducing food intake during and in between main meals.

Adult↗

Impaired vasodilator response to atrial natriuretic factor in IDDM.

Diabetes mellitus has been associated with both elevated plasma concentrations of the natriuretic and vasorelaxant hormone atrial natriuretic factor and with a reduced natriuretic response to this hormone. We now hypothesize that the vasodilator response to atrial natriuretic factor is attenuated in IDDM. Forearm vasodilator responses to the infusion of six increasing dosages of atrial natriuretic factor into the brachial artery were registered by venous occlusion strain gauge plethysmography in 10 patients with uncomplicated IDDM and in 10 age-, sex-, and weight-matched control subjects. Baseline levels of blood pressure, forearm blood flow, and plasma concentrations of atrial natriuretic factor were not different between control subjects and patients with diabetes. In control subjects, atrial natriuretic factor induced a percentage fall in the forearm vascular resistance of -29 +/- 5% at the lowest to -72 +/- 4% at the highest infusion rate. In patients with diabetes this fall was significantly attenuated, measuring -2 +/- 7 and -45 +/- 4%, respectively, (P < 0.001 vs. control subjects). During infusion of atrial natriuretic factor into the brachial artery, the calculated regional production of cGMP (second messenger of atrial natriuretic factor) increased from 1.2 +/- 1.1 to 22.8 +/- 4.8 pmol.min-1 x 100 ml-1 in the control subjects, whereas hardly any change occurred in the patients with diabetes (from -2.1 +/- 1.2 to 2.9 +/- 4.7 pmol.min-1 x 100 ml-1). Furthermore, both control and diabetic subjects demonstrated an equal forearm vasodilator response to increasing infusion rates of the control vasodilator sodium nitroprusside. We conclude that uncomplicated IDDM is associated with a specific reduction in the vascular responsiveness to atrial natriuretic factor.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

An automated computerized method using Finapres for measuring cardiovascular reflexes.

1. The major drawback of the cardiovascular reflex tests used to study autonomic failure is the time involved in calculating the results. To overcome this disadvantage, we have developed an automated computerized program using a FINger Arterial PRESsure instrument for the measurement of beat-to-beat heart rate and blood pressure on a finger. 2. This program calculates heart rate variability during three standardized tests, forced breathing, standing up and the Valsalva manoeuvre, and records blood pressure values in response to standing up and sustained handgrip. The time taken to perform the test and to calculate the results is usually 25 min. 3. The reproducibility of the tests in 21 normal subjects was comparable with the reproducibility obtained with conventional test methods using an ECG and a sphygmomanometer. 4. In addition, we determined the age-dependent normal values of the seven test parameters in 124 subjects aged 20-90 years. 5. Using this program in 10 patients with longstanding (14-50 years) complicated diabetes, in each of them four or more abnormal test results were found.

Adult↗

Evaluation of infectious diabetic foot complications with indium-111-labeled human nonspecific immunoglobulin G.

Osteomyelitis of the foot is a well-known complication of diabetes mellitus. In this study, the validity of 111In-labeled human nonspecific immunoglobulin G (IgG) scintigraphy was studied in 16 diabetic patients with foot ulcers, gangrene or painful Charcot joints. In all patients, plain radiographs, conventional bone scan images and 111In-IgG images were recorded. The results were verified by histologic examination of surgical specimens in patients who did not respond to antibiotic treatment within 2-3 wk (10 lesions) or long-term clinical follow-up of at least 6-mo (16 lesions). On the bone scans, all seven osteomyelitic foci were detected. However, 19 additional foci not due to osteomyelitis were seen. The absence of true-negative bone scans in this study resulted in a specificity of 0%. On the plain radiographs, four of seven osteomyelitis foci were detected; for 111In-IgG scintigraphy, six of seven (sensitivity 57% and 86%, respectively). Plain radiographs correctly ruled out osteomyelitis in 15 of 19 lesions, 111In-IgG scintigraphy in 16 of 19 (specificity 79% and 84%, respectively). All imaging procedures gave false-positive results in penetrating ulcers over the calcaneus in two patients and in one patient with a Charcot joint, most likely due to recent fractures. A false-negative 111In-IgG study was observed in a patient with severe arterial angiopathy. Accurate estimation of probable osteomyelitis was not possible from the results of soft-tissue cultures, since in only 6 of 12 positive cultures, osteomyelitic foci could be proven. Indium-111-IgG scintigraphy can contribute to adequate evaluation of osteomyelitis in diabetic foot complications because it improves specificity when compared to bone scan and radiographic findings and improves sensitivity in comparison to plain radiographs.

Adult↗

The variability of the absorption of subcutaneously injected insulin: effect of injection technique and relation with brittleness.

A comparison has been made of insulin absorption rate and its variability in healthy subjects (n = 12), matched Type 1 diabetic patients (n = 12), and brittle Type 1 diabetic patients (n = 13) after subcutaneous injection with a standardized injection technique. In each individual 8 U of iodinated neutral human soluble insulin were injected twice, at the fat-muscle boundary. Disappearance of radioactivity was measured for 8 h. Differences in absorption rate could not be demonstrated (T50 207 +/- 30 (+/- SD), 224 +/- 73 and 217 +/- 80 min in the three groups, respectively). Intra-individual variance was similar in the three groups (intra-individual SD of T50 14 +/- 9, 10 +/- 6 and 12 +/- 10%, respectively). Injection with the skinfold technique each patient usually employed, did not alter mean absorption rate or its variability significantly (T50 179 +/- 52 min; intra-individual SD 12 +/- 8%). In a group of Type 1 diabetic patients (n = 26) the absorption rate after deep injection was compared with that after superficial injection. No differences were found (T50 207 +/- 66 vs 236 +/- 66 min). In some of these patients (n = 10) plasma free insulin and glucose concentrations were measured. The increase in free insulin concentrations was significantly different only at some time-points, but insulin curves and plasma glucose concentrations did not differ significantly. Thus neither insulin absorption nor its variability differ between healthy subjects and diabetic patients, between deep and superficial subcutaneous injection, or between stable and brittle diabetic patients.

Absorption↗

Subcutaneous injection with an insulin pen. Insulin absorption and plasma concentrations of glucose and free insulin.

In 6 type 1 diabetic patients treated with a basal-prandial injection regimen with a pen, plasma concentrations of free insulin and glucose were measured over a period of 24 h. We obtained an insulin peak 1 h after injection of regular insulin and lower levels at night. Between peaks, basal levels of free insulin were not reached. Glucose concentrations fluctuated only slightly. In 10 healthy volunteers, the absorption rate of insulin was studied after subcutaneous injection of 125I-Actrapid using a conventional technique and with a pen. During an 8-h period residual radioactivity and plasma insulin and glucose were measured. No significant differences were found, except for the insulin concentration 60 min after injection (higher after pen injection, P less than 0.05). The variability of the parameters was greater following pen injection (P less than 0.02). A basal-prandial injection regimen can thus produce stable glucose levels but only with considerable hyperinsulinaemia. Injection with an insulin pen causes a modest increase in absorption rate and plasma concentrations of insulin.

Absorption↗

Ephedrine improves microcirculation in the diabetic neuropathic foot.

A diabetic patient is described who developed one-sided neuropathic ulceration. Noninvasive microvascular measurements during distant cooling and inspiratory gasp revealed signs of sympathetic denervation. The initially elevated total skin blood flow measured by laser Doppler equipment and decreased capillary perfusion as determined by transcutaneous oxygen tension measurements were both partially restored after treatment with the alpha 1-sympathicomimetic ephedrine. The improvement occurred once more after rechallenge. In conclusion this study further supports the hypothesis of a capillary steal phenomenon caused by extreme vasodilation within sympathetically denervated arteriovenous shunt vessels.

Blood Gas Monitoring, Transcutaneous↗

The absorption of subcutaneously injected insulin.

Insulin has been used for the treatment of diabetes mellitus for 65 years. Still, little is known about the processes governing its absorption after subcutaneous injection. Since normoglycaemia is the general aim nowadays, knowledge about the absorption process is important. In this review, the physiology and the pharmacological and clinical factors influencing the absorption rate are dealt with, resulting in recommendations for the injection procedure of insulin.

Absorption↗

Insulin antibodies do not influence the absorption rate of subcutaneously injected insulin.

The influence of insulin antibodies on absorption rate and plasma free insulin concentrations after subcutaneous injection of insulin, was studied in two groups of insulin-treated diabetic patients, one without insulin antibodies (n = 9) and a second with high plasma concentrations of antibodies (n = 14). Except for antibody concentration there were no differences in clinical variables. During 8 h after the injection of 12 U of iodinated neutral human insulin, residual radioactivity at the injection site, plasma glucose, and free and total insulin were measured. Significant differences in absorption rate of insulin were not found between the groups. Plasma glucose (basal value 16.8 +/- 4.4 SD vs 16.1 +/- 4.2 mmol l-1) and free insulin (basal value 8.3 +/- 1.4 vs 11.4 +/- 2.3 mU l-1, maximum after 90 min 36.9 +/- 19.5 vs 30.5 +/- 18.7 mU l-1) were never significantly different between the groups, nor were areas under the curve for free insulin (191.4 +/- 69.2 vs 170.8 +/- 98.6 mU l-1 h). In the high antibody group a small increase in bound insulin was found.

Adult↗