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Biomedical subjects

R Navalesi

Publications and source records attributed to R Navalesi.

At least 19 recordsLinked to original sources

Coagulation and fibrinolytic system impairment in insulin dependent diabetes mellitus.

Selected coagulation and fibrinolytic parameters were assessed in 40 insulin dependent diabetes mellitus patients with varying degrees of metabolic control; 30 healthy subjects matched for age and sex formed the control group. Activated Partial Thromboplastin Time, Prothrombin Time, Fibrinogen, Factor VII, Antithrombin III, Protein C, Plasminogen, alpha 2-Plasmin Inhibitor, Plasminogen Activator Inhibitor-1, tissue-Plasminogen Activator were functionally evaluated. Antigenic levels of tissue-Plasminogen Activator, Thrombin-Antithrombin complexes and fibrinolytic specific product B beta 15-42 were also determined. Compared to the control group diabetic patients displayed significantly higher levels of Fibrinogen (p < 0.01), Factor VII (p < 0.01), Thrombin-Antithrombin complexes (p < 0.01) and Plasminogen Activator Inhibitor-1 activity (p < 0.01). Regardless of the normal level of the tissue-Plasminogen Activator-related antigen, diabetic patients had tissue-Plasminogen Activator activity lower than the control group (p < 0.05). Coagulation Factor VII and Thrombin-Antithrombin complexes were increased only in the patients with poor metabolic control (p < 0.01). Activated Partial Thromboplastin Time, Prothrombin Time, Antithrombin III, Protein C, Plasminogen, alpha 2-Plasmin Inhibitor, B beta 15-42 fibrin peptide were found to be in the normal range. Fibrinogen correlated positively with fasting blood glucose (p < 0.05) and Thrombin-Antithrombin complexes with glycosylated haemoglobin (p < 0.05), whereas Factor VII was positively correlated with glycemia (p < 0.01) and glycosylated haemoglobin (p < 0.05). Higher levels of Fibrinogen were found in patients affected by nephropathy (p < 0.005) or neuropathy (p < 0.05). These results demonstrate an impairment of the haemostatic balance in diabetic patients, that is a possible hypercoagulable state, which represents an important factor in the pathogenesis of atherosclerotic complications.

Adult

Which method for quantifying "microalbuminuria" in diabetics? Comparison of several immunological methods (immunoturbidimetric assay, immunonephelometric assay, radioimmunoassay and two semiquantitative tests) for measurement of albumin in urine.

We have compared the chemical and clinical characteristics of an immunonephelometric assay (INA), two immunoturbidimetric assays (ITA) and two semi-quantitative methods with those of a solid-phase radioimmunoassay (RIA) for measurement of urinary albumin (UA) concentration in 136 diabetic patients. INA and RIA had similar accuracy, and provided comparable results. However, RIA has slightly greater sensitivity than INA, which is easier and faster. Good agreement was also found between RIA and the two ITA methods, although one of these overestimated RIA values in the low-medium range (5-30 mg/l) of urinary albumin. ITA seems suitable for initial screening of albuminuria in diabetic patients but more sensitive procedures (such as RIA and INA) seem preferable for measurement of UA concentrations in the normal range. The two semi-quantitative methods showed high sensitivity but poor specificity, because of the large number of false positive results. About 50% of diabetic patients "positive" by these methods did not have microalbuminuria. The utility of these methods is questionable, because many samples from diabetic patients need to be reassayed by a more specific and sensitive assay such as the RIA, INA or ITA methods.

Albuminuria

Automated measurement of lactate dehydrogenase, alkaline phosphatase and gamma-glutamyltransferase in urines: an alternative to the manual procedure.

A sensitive and precise automated assay of urinary lactate dehydrogenase (EC 1.1.1.27), alkaline phosphatase (EC 3.1.3.1) and gamma-glutamyltransferase (EC 2.3.2.2) is described. For this purpose, we used a BM/Hitachi System 704 model and reagents for automated analysis of serum enzymes from Boehringer Mannheim. However, the schedules of enzyme chemistry parameters recorded by the autoanalyzer and the spectrophotometric calibration are reprogrammed to meet requirements deriving from urine adoption and to optimize the enzyme assay in this unusual medium.

Alkaline Phosphatase

How can storage time and temperature affect enzymic activities in urines?

We measured a tubular brush-border enzyme (alanine aminopeptidase, AAP) and a lysosomal hydrolase (N-acetyl-beta-D-glucosaminidase, NAG) in morning urines from 15 healthy normal subjects to check if different storage times and temperatures could modify enzyme concentrations. Short-term (24 h) storage time at room temperature or 4 degrees C does not affect AAP and NAG activities. Both enzymes are well preserved at -70 degrees C. AAP dramatically falls after 1 month at -20 degrees C, lowering to about 8% of the initial value after only 4 days of storage. On the contrary, NAG is well preserved at these storage conditions. Centrifugation has revealed not critical for measurement of these two enzymes.

Acetylglucosaminidase

Pharmacokinetic optimisation of oral hypoglycaemic therapy.

Two main classes of oral hypoglycaemic drugs, the sulphonylureas and the biguanides, are currently used in the therapy of type II, non-insulin-dependent diabetes mellitus (NIDDM). The basic pharmacokinetic properties of these agents are discussed with a view to efficient and safe treatment. Both first- and second-generation sulphonylureas are rapidly absorbed from the gastrointestinal tract. In the plasma compartment, these drugs are strongly bound to serum proteins. All sulphonylureas are metabolised in the liver, and the metabolites and the parent drugs are eliminated mainly in the urine, but also (second-generation derivatives) in the faces. Rapid- and short-acting sulphonylureas may improve early insulin release and promote better postprandial glucose control. Long-acting derivatives may ensure better control of overnight glycaemia. The elderly are at risk of developing severe sulphonylurea-induced hypoglycaemia, and in this population the agent chosen should have a short or intermediate duration of action and no active metabolites. Caution is needed when prescribing any sulphonylurea in patients receiving drugs known to affect sulphonylurea action, and in those with impaired liver and/or kidney function. The bioavailability of the biguanides ranges from 40 to 60%. Binding to plasma proteins is absent or very low. Metformin and buformin are not metabolised and are excreted in the urine; phenformin undergoes hepatic hydroxylation and is excreted in both urine and faeces. Metformin is the only agent of this class currently recommended for clinical use. The main indications of metformin treatment are NIDDM associated with obesity and/or hyperlipidaemia, and in combination with sulphonylurea both as primary treatment and when secondary failure occurs with sulphonylurea alone. Lactic acidosis may develop in patients receiving therapy with biguanides, especially in the presence of a preexisting contraindication to their use.

Administration, Oral

Effects of storage time and temperature on urinary enzymes.

We measured three renal tubular brush-border enzymes (lactate dehydrogenase, LDH, EC 1.1.1.27; gamma-glutamyltransferase, GGT, EC 2.3.2.2; and alkaline phosphatase, AP, EC 3.1.3.1) in morning urine samples from 48 healthy subjects to check whether different storage times and temperatures could modify enzyme concentrations. Short-term (24 h) storage time at room temperature or 4 degree C does not affect urinary enzyme activity. A few days of freezing, at -20 or -70 degrees C, dramatically lowers LDH and AP values; GGT is partially preserved only at -70 degrees C, if the sample has been previously centrifuged. Urinary enzymes investigated in this study are extremely labile at low temperatures.

Alkaline Phosphatase

Insulin degradation in vivo: a high-performance liquid chromatographic analysis.

The metabolism of insulin in vivo was investigated using an isocratic reversed-phase high-performance liquid chromatographic (RP-HPLC) method. After intravenous injection of A14-[125I]insulin into normals, eight labelled insulin derivatives were found in plasma (peaks 1-8). Two of them (peaks 1 and 7) showed an elution pattern identical with those of reference [125I]monoiodotyrosine and intact A14-[125I]insulin, respectively. Of the other six peaks, five (2-6) eluted before and one (peak 8) after insulin. This pattern was highly reproducible in terms of capacity factors and peak heights. Radioactivity separated by RP-HPLC was further characterized for its trichloroacetic acid precipitability and immunoprecipitability. Fractions corresponding to peaks 4-6 and 8, which showed an immunoprecipitability higher than 50%, were pooled in order to obtain sufficient radioactivity and were found to be insulin separated by Sephadex G-50 chromatography, containing in its structure, after sulphitolysis, intact A-chain and to be partially rebindable to monocyte insulin receptors. These data demonstrate that in blood, products of insulin metabolism circulate which retain a part of the immunological and biological properties of the hormone. These products are clearly separated from one another and from intact insulin by RP-HPLC, suggesting that the appropriate use of this technique may allow a further and more accurate qualitative and quantitative characterization of in vivo insulin metabolism in physiological and pathological conditions.

Chromatography, High Pressure Liquid

Safety of ibopamine in type II diabetic patients with mild chronic heart failure. A double-blind cross-over study.

Twelve outpatients with type II diabetes mellitus and mild clinical signs and history of cardiac failure were studied to assess the effects of ibopamine on glucose and lipid metabolism. For the assessment of cardiac failure a clinical score was computed, based on the evidence of dyspnea and ankle oedema. The patients were randomly allocated to ibopamine 100 mg t.i.d. or placebo in a double-blind cross-over 3 weeks design. Daily plasma glucose profile, glycaemia and plasma insulin during glucose tolerance test, serum C-peptide, lactacidemia, free fatty acids, triglycerides, urinary glucose, diuresis and clinical evaluation were the studied parameters. During the study, a clinically favourable trend for ibopamine was observed, as far as cardiac failure was concerned. No significant differences were found between ibopamine and placebo in any of the metabolic parameters. No change in diet or in the previous dosage of the antidiabetic drugs occurred during the study in any patient. We conclude that ibopamine 100 mg t.i.d. does not affect metabolic control and lipid pattern in type II diabetic patients, therefore representing a safe tool for the treatment of chronic heart failure in these patients.

Aged

Ibopamine does not affect insulin resistance in patients with type I diabetes.

Diabetes mellitus was assessed by investigating 8 type I diabetic patients, in good metabolic control and with congestive heart failure, who were studied after 3 weeks of placebo and ibopamine (100 mg t.i.d.) treatment. Metabolic control and daily insulin dose did not change in any patient during the study. The insulin-mediated glucose uptake during the clamp studies showed no variation after placebo or ibopamine therapy. Total cholesterol, HDL-cholesterol and triglycerides concentrations remained unchanged. This study clearly suggests that ibopamine administered at a daily dose of 300 mg for 3 weeks presents a metabolic safety in type I diabetic patients.

Adult

Improvement with metformin in insulin internalization and processing in monocytes from NIDDM patients.

This study investigated the relative effect of obesity alone and in combination with non-insulin-dependent diabetes mellitus (NIDDM) on the intracellular processing of insulin and evaluated the effect of metformin therapy on this process. Monocytes from 11 obese hyperinsulinemic subjects, 13 obese hyperinsulinemic NIDDM patients, and 7 nondiabetic control subjects were incubated with A14-125I-labeled insulin for 60 min at 37 degrees C, and intracellular insulin degradation was characterized by high-performance liquid chromatography. Total cell-associated insulin (insulin binding) and internalized and degraded insulin were decreased in obese subjects and significantly decreased in obese NIDDM patients compared with nondiabetic control subjects. In NIDDM patients, intracellular insulin degradation was inversely correlated with fasting plasma glucose (P less than 0.01). Eight obese subjects and 9 obese NIDDM patients were restudied after 4 wk of therapy with metformin (850 mg twice a day). Plasma levels of the drug were superimposable in the two groups. Metformin therapy did not change glucose and insulin levels in obese subjects but caused a decrease in blood glucose in obese NIDDM patients. Total cell-associated radioactivity (insulin binding) significantly increased in both groups (P less than 0.01). On the contrary, internalized radioactivity increased (0.83 +/- 0.3 vs. 1.31 +/- 0.35%, P less than 0.01), and similarly, insulin degradation was enhanced (54.6 +/- 8.9 vs. 74.22 +/- 9.15%, P less than 0.01) only in monocytes from obese NIDDM patients. However, the levels of these parameters were still lower than in control subjects (internalization, 2.94 +/- 0.68%; degradation, 93.03 +/- 3.7%).(ABSTRACT TRUNCATED AT 250 WORDS)

Biological Transport

Diurnal pattern of plasma metformin concentrations and its relation to metabolic effects in type 2 (non-insulin-dependent) diabetic patients.

The authors describe the diurnal profile of plasma metformin concentrations in a group of 6 Type 2 (noninsulin-dependent) diabetic patients studied at two different daily metformin doses (500 mg and 850 mg b.d.) and report data on the relationships between plasma metformin and metabolic effects over a 14 h period. In addition, the effect of circulating metformin on insulin binding to isolated monocytes has been evaluated. At the two different daily doses fasting plasma metformin concentrations were similar (3.23 +/- 0.35 mumol/l and 3.86 +/- 0.72 mumol/l, mean values +/- SEM, at low and high dose respectively). Drug peak values and averaged concentrations (4.66 +/- 0.39 mumol/l vs 6.35 +/- 0.69 mumol/l) were significantly higher when more drug was administered. Mean plasma glucose was lower when 1,700 mg/day instead of 1,000 mg/day of metformin was given (7.3 +/- 0.4 mmol/l vs 9.1 +/- 0.9 mmol/l, p less than 0.05). After dosing, at higher plasma metformin concentrations corresponded lower plasma glucose values. The averaged blood lactate levels resulted 1.46 +/- 0.4 mmol/l (p less than 0.05 vs matched diet treated diabetic patients) at the higher drug dose. A significant positive correlation emerged between mean plasma metformin concentrations and mean blood lactate levels (r: 0.76, p less than 0.02). Alanine, glycerol and B-OH-butyrate levels were similar at the two metformin daily doses, and were not correlated to plasma metformin. The binding of insulin to isolated human monocytes was similar in metformin-treated diabetic patients (4.48 +/- 0.45) as in healthy volunteers (4.62 +/- 0.34); insulin binding was correlated (p less than 0.05) with plasma metformin levels.

Alanine

Decreased salivary glucose secretory rate: usefulness for detection of diabetic patients with autonomic neuropathy.

In this study we investigated whether the presence of diabetic autonomic neuropathy (DAN) leads to an altered composition of saliva. DAN was evaluated in 33 normal subjects and 31 diabetic patients by means of the Valsalva manoeuvre, R-R variation during deep breathing, heart rate response to standing and lying down and blood pressure response to standing. Salivary flow (ml/h), salivary glucose levels (mumol/l) and salivary glucose secretory rate (mumol/h) were measured in each subject. Twelve diabetic patients were positive for DAN. Salivary flow (13 +/- 2 ml/h) and glucose concentration (330 +/- 50 mumol/l) were not significantly lower in patients with DAN than in normal subjects (18 +/- 2 ml/h, 500 +/- 50 mumol/l) and diabetic patients without DAN (16 +/- 1.9 ml/h, 500 +/- 40 mumol/l). The salivary glucose secretion rate was significantly lower (P less than 0.02) in diabetic patients with DAN (4.2 +/- 1.0 mumol/h) than in normal subjects and diabetic patients without DAN (9.0 +/- 1.0 mumol/h and 8.0 +/- 0.9 mumol/h respectively). The test had a good sensitivity and specificity, and appeared to be particularly indicated in discriminating patients without DAN. It is suggested that the measurement of salivary glucose may represent a simple, quick and inexpensive method for the screening of diabetic autonomic neuropathy.

Adult

Metabolic effects of three new low-dose pills: a six-month experience.

We evaluated the effects on glucose and lipid metabolism in 57 healthy volunteers randomly assigned to one of three low-dose oral contraceptives: two monophasic (desogestrel + ethinylestradiol, EE, and cyproterone acetate + EE) and one triphasic (gestodene + EE) contraceptives. Glucose and insulin responses during OGTT were slightly affected by the cyproterone pill. The insulin area/glucose area ratio and HbA1c level were unchanged in all women. No preparation affected total and LDL-cholesterol levels. Triglycerides rose in all groups, while HDL-CH did only in women taking the two monophasic pills. The three low-dose pills assessed in this study have negligible effects on glucose and lipid metabolism.

Adult