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Biomedical subjects

A Masoni

Publications and source records attributed to A Masoni.

At least 19 recordsLinked to original sources

In postmenopausal osteoporosis the bone increasing effect of monofluorophosphate is not dependent on serum fluoride.

According to previous pharmacokinetic studies the bioavailability of fluorine (F) from sodium monofluorophosphate (MFP) doubles that of sodium fluoride (NaF). This paper reports a study designed to verify whether the vertebral bone mass increasing effect of NaF (30 mg F/day) was comparable to that of MFP (15 mg F/day), given for 18 months to osteoporotic postmenopausal women. The BMD of lumbar vertebrae of both groups showed significant increases (MFP: 60 +/- 15 mg/cm2, NaF: and 71 +/- 12 mg/cm2) over basal levels (P < 0.001). The difference between treatments was not significant (P = 0.532). The serum levels of ionic F (the mitogenic species on osteoblasts) were not related to the above mentioned effects. In NaF-treated patients, the fasting levels of total serum F increased significantly (6.7 +/- 0.9 microM vs. Basal: 2.0 +/- 0.8 microM; P < 0.001). This phenomenon was accounted for by ionic fluoride that increased over 20-fold (6.5 +/- 1.9 microM vs. Basal: 0.3 +/- 0.04 microM). In MFP-treated patients the fasting serum levels of total (7.0 +/- 0.7 microM vs. Basal: 2.2 +/- 0.9 M) and diffusible F (0.5 +/- 0.02 microM vs. Basal 0.2 +/- 0.02 microM) increased significantly (P < 0.001). The increase in the non diffusible F fraction is accounted for by protein-bound F, probably by the complexes formed between MFP and alpha 2-macroglobulin and C3. Serum diffusible F was formed by two fractions: ionic F and F bound to low molecular weight macromolecule/s (2,200 +/- 600 Da), in approximately equal amounts. The general information afforded by the present observations support the hypothesis that ionic F is released progressively during the metabolism of MFP bound to alpha 2-macroglobulin and C3. These phenomena explain why comparable effects to those obtained with 30 mg F/d of NaF could by obtained with one half the dose of MFP.

Bone Density

Influence of duration of obesity on the insulin resistance of obese non-diabetic patients.

OBJECTIVE: To investigate whether duration of obesity has an independent impact on insulin resistance. DESIGN: Case-control study. SUBJECTS: 30 non-diabetic obese subjects (age, 34+/-12 y, body mass index (BMI), 33.5+/-0.8 kg x m[-2]) with a range (1-35 y) of self-reported duration of obesity, and 12 age- and gender-matched non-obese controls (BMI, 22.1+/-0.6 kg x m[-2]). MEASUREMENTS: Oral glucose tolerance (40 g x m[-2]), insulin sensitivity (by the euglycaemic insulin clamp technique), and insulin secretion (as the product of post-hepatic insulin clearance and plasma insulin concentration). RESULTS: The obese group presented hyperinsulinaemia in the basal state and after glucose loading (insulin area = 58+/-5 vs 33+/-3 nmol x I[-1] x 2 h, P = 0.005), insulin resistance (M value = 37.4+/-4.8 vs 50.6+/-2.6 micromol x min[-1] x kg FFM[-1], P = 0.002), and insulin hypersecretion (61.9+/-6.0 vs 33.9 +/- 4.0 nmol x 2 h, P = 0.007); endogenous glucose production was similar in the two groups. In the whole dataset, insulin resistance was directly related to BMI, the waist-to-hip ratio (WHR), endogenous glucose production, insulin secretion, and fasting serum triglycerides and uric acid concentrations. When the obese subjects were stratified by duration of obesity, insulin resistance was progressively lower with longer obesity duration (P = 0.04). When simultaneously adjusting by age, gender and BMI, obesity duration was independently associated with greater insulin sensitivity (P = 0.003), lower plasma insulin response to oral glucose (P = 0.001), and lower fasting and glucose-stimulated insulin release (P = 0.01 for both). CONCLUSIONS: In obese subjects with preserved glucose tolerance, duration of obesity is associated with better insulin sensitivity irrespective of the degree of overweight.

Adult

Reciprocal association between insulin sensitivity and the haematocrit in man.

In epidemiological studies, a high haematocrit has been associated both with increased cardiovascular risk and with hyperinsulinaemia, a surrogate of insulin resistance. To examine directly the relationship between the haematocrit and insulin sensitivity, we studied 12 healthy volunteers and 12 patients with non-insulin-dependent diabetes mellitus (NIDDM) with the use of a 4-hour hyperinsulinaemic [1 mU min-1 kg-1] isoglycaemic clamp. In the whole group, insulin sensitivity (as the ratio of insulin-mediated glucose clearance to steady-state plasma insulin concentrations) was inversely related to the haematocrit (r = 0.50, P < 0.01). To test whether acute changes in the haematocrit affect insulin sensitivity, in two NIDDM patients and three healthy subjects the clamp study was repeated after lowering (-18%) the haematocrit by erythro-apheresis. In all five subjects, the lower haematocrit was associated with slightly reduced (-7% on average, P = NS) rather than increased insulin sensitivity. We conclude that insulin sensitivity is inversely related to the haematocrit independently of the glucose tolerance status. The association does not result from acute haemodynamic effects on insulin sensitivity, and may therefore reflect an action of insulin resistance/ hyperinsulinaemia on blood viscosity, or the presence of a common determinant.

Adult

Effect of insulin on systemic and renal handling of albumin in nondiabetic and NIDDM subjects.

Insulin resistance and hyperinsulinemia cluster with microalbuminuria in both diabetic and nondiabetic subjects, but the mechanism underlying this association is unknown. To test the hypothesis that insulin influences protein permeability, we measured the albumin transcapillary escape rate (TER) by the (131)I-labeled albumin technique in 12 healthy volunteers and 12 normoalbuminuric NIDDM patients (fasting plasma glucose, 10.9 +/- 1.3 mmol/l) during 4 h of isoglycemia with high (1.1 mU x min(-1) x kg(-1)) or, on a different day, low (0.1 mU x min(-1) x kg(-1)) insulin infusion. In both patients and control subjects, high insulin was associated with a 7% decrease in blood volume (P = 0.006) and a 6% decrease in diastolic blood pressure (P < 0.02), these two changes being related to one another (r = 0.56, P < 0.01). Basal albumin TER was similar in patients (8.4 +/- 0.5% x h(-1)) and control subjects (7.7 +/- 0.7% x h(-1)) and was not significantly changed by high insulin in either group (patients vs. control subjects, 7.3 +/- 0.9 vs. 6.2 +/- 0.4% x h(-1); NS vs. low insulin). In contrast, high insulin increased renal albumin excretion (from 3.6 +/- 0.8 to 5.4 +/- 1.1 microg/min, P < 0.01) and clearance rate (0.09 +/- 0.02 to 0.13 +/- 0.03 microl/min, P < 0.001) in patients but not in control subjects. To localize the effect of insulin along the nephron, we measured the urinary excretion of N-acetyl-beta-D-glucosaminidase (beta-NAG), released by the proximal tubule; retinol-binding protein (RBP), reabsorbed by the proximal tubule; and Tamm-Horsfall protein (THP) and epidermal growth factor (EGF), both secreted by the distal tubule. For both beta-NAG and RBP, but not EGF or THP, insulin enhanced urinary excretion (diabetics vs. controls: beta-NAG, 0.48 vs. -0.15 microU/min [P = 0.03]; RBP, 78 vs. -32 ng/min [P = 0.05]). In conclusion, physiological hyperinsulinemia does not affect systemic albumin permeability in healthy subjects or normoalbuminuric NIDDM patients. In contrast, in NIDDM patients, but not in healthy subjects, insulin increases the urinary excretion of albumin and protein markers of proximal tubular function. The significance of this finding for the pathogenesis of diabetic nephropathy remains to be established.

Adult

Insulin decreases circulating vitamin E levels in humans.

Both hyperinsulinemia and free oxygen radicals have been implicated in the pathogenesis of atherosclerosis, but the relationship between insulin levels or insulin action and the oxidant/antioxidant balance has not been explored. We measured the effect of physiologic hyperinsulinemia on plasma concentrations of vitamin E, a major free radical scavenger molecule. Isoglycemic clamps (at an insulin infusion rate of 6 pmol . min-1 . kg-1) were performed in four groups of subjects: (1) 12 non-insulin-dependent diabetic (NIDDM) patients, (2) eight patients with essential hypertension, (3) 11 nondiabetic obese individuals, and (4) 12 healthy subjects. In 10 healthy volunteers, a time-control experiment was performed by replacing the insulin infusion with normal saline. Vitamin E and plasma lipid levels were determined at baseline and after 2 hours of insulin/saline infusion. Insulin sensitivity was reduced in diabetic, obese, and hypertensive groups in comparison to healthy controls, but fasting plasma vitamin E concentrations were similar in all groups. A consistent decrement in plasma vitamin E concentrations (averaging 12% of baseline, P < .0001) was observed in all subjects receiving insulin regardless of the level of insulin sensitivity, whereas no significant changes in plasma vitamin E were seen in subjects receiving saline infusion (P < .001 v insulin infusion groups). The insulin-induced decrement persisted in all study groups when plasma vitamin E concentrations were corrected for total serum cholesterol levels (-8.9% +/- 1.2% v -0.4 +/- 2.3% of saline controls, P = .0004) or serum low-density lipoprotein (LDL(-10.0% +/- 1.2% v -0.4% +/- 2.2%, P = .0002). We conclude that insulin infusion acutely depletes vitamin E in circulating lipids regardless of insulin resistance. This effect may represent a physiologic means of transferring vitamin E into cell membranes; alternatively, it might reflect a pro-oxidant action of insulin in vivo.

Adult

Acute insulin administration does not affect plasma leptin levels in lean or obese subjects.

Whether leptin levels are related to insulin sensitivity or subject to acute regulation by insulin is not known. In 12 obese [body mass index (BMI) = 34.0 +/- 1.5 kg m-2] and 12 lean (BMI = 22.2 +/- 0.6 kg m-2) non-diabetic subjects, plasma leptin concentrations were measured in the fasting state and during 2 hours of euglycaemic hyperinsulinaemia (approximately 600 pmol L-1). Fasting plasma leptin was significantly higher in obese (26.6 +/- 3.2) than in lean subjects (6.4 +/- 1.2 ng mL-1, P = 0.0001), and in women (21.1 +/- 3.3) than in men (7.3 +/- 2.3 ng mL-1, P = 0.01). In univariate analysis, fasting plasma leptin was strongly related to all anthropometric measures (body weight, fat mass, percent fat mass, waist and hip circumferences). In multiple regression, per cent adiposity, hip circumference and duration of obesity explained 90% of the variability in fasting leptin concentrations. Fasting and stimulated (OGTT) insulin levels, insulin sensitivity (22.6 +/- 1.9 vs 36.7 +/- 2.0 mumol min-1 kg-1 in lean and obese subjects, respectively, P < 0.0001), glucose area, and serum triglycerides were positively related to fasting plasma leptin concentrations; none of these associations, however, was statistically significant after adjusting for BMI. During the clamp, plasma leptin concentrations remained constant in both lean and obese subjects. We conclude that neither insulin levels nor sensitivity relate to leptin levels independently of fat mass, and that leptin is not subject to acute (2 hours) regulation by insulin in lean or obese humans.

Adult

The natural history of kyphosis in postmenopausal women.

A cross-sectional study of vertebral morphometry in 449 unscreened postmenopausal women, from the ages of 40 to 80, is reported. The wedge angles of thoracic vertebrae T4-12 were found to increase exponentially as a function of age, up to 70 years. In addition to age, the wedging phenomenon was found to be accentuated by increased bone turnover due to low calcium intake, reduced physical activity, each successive delivery, and breast feeding. Most of these variables were not correlated with isolated vertebral wedge angles, but rather with the sum of them (Sigma, sigma), assumed to assess the impact of those variables on thoracic kyphosis. In a subset of women, sigma was found to be inversely correlated with low spinal mineral density at L2-4. T-11 and T-12 were the vertebrae most frequently deformed (wedge angle exceeding mean +/- 3 SD in a group of 50 young healthy women, 25-45 years old). The distribution of deformed vertebrae was found to be significantly different from those qualified as "fractured" according to Kleerekoper et al.'s (1984) and Melton et al.'s (1989) criteria. The overall information afforded by past and present data indicates that in postmenopausal women, vertebral deformation may occur with the help of mechanical solicitations plus high bone remodeling rates, as well as by structural collapse (fracture). The information obtained does not allow one to quantify the relative contribution of each set of factors to the wedging phenomenon.

Adult

Insulin sensitivity in familial hypercholesterolemia.

Insulin resistance is found in association with obesity, non-insulin-dependent diabetes mellitus, and essential hypertension, which are all risk factors for atherosclerotic cardiovascular disease. Furthermore, hyperinsulinemia has been reported in familial combined hyperlipoproteinemia and endogenous hypertriglyceridemia. Finally, relatively high serum triglyceride and low high-density lipoprotein (HDL) cholesterol concentrations invariably accompany hyperinsulinemia. Whether insulin sensitivity is affected by the isolated presence of high levels of serum low-density lipoprotein (LDL) cholesterol has not been clearly established. We studied 13 subjects with heterozygous familial hypercholesterolemia (FHC) and 15 normocholesterolemic subjects selected to be free of any other known cause of insulin resistance. Thus FHC patients and controls had normal body weight and fat distribution, glucose tolerance, blood pressure, and serum triglyceride and HDL cholesterol concentrations, but were completely separated on plasma LDL cholesterol concentrations (6.05 +/- 0.38 v 3.27 +/- 0.15 mmol/L, P < .0001). Fasting plasma levels of glucose, insulin, free fatty acids (FFA), and potassium and fasting rates of net carbohydrate and lipid oxidation were superimposable in the two study groups. During a 2-hour euglycemic (approximately 5 mmol/L) hyperinsulinemic (approximately 340 pmol/L) clamp, whole-body glucose disposal rates averaged 30.4 +/- 2.3 and 31.1 +/- 3.0 mumol.kg-1 x min-1 in FHC and control subjects, respectively (P = 0.88). The ability of exogenous hyperinsulinemia to stimulate carbohydrate oxidation and energy expenditure and suppress lipid oxidation and plasma FFA and potassium levels was equivalent in FHC and control subjects.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult