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Biomedical subjects

P Marchetti

Publications and source records attributed to P Marchetti.

At least 199 records · Page 11Linked to original sources

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↗

[Medical emergencies in oncology: hypercalcemia. II. Diagnosis and therapy].

The acute metabolic abnormalities associated with cancer may cause symptoms that require urgent medical treatment and may constitute a more dangerous threat to life than the cancer itself. Hypercalcaemia is probably the most common metabolic complication of neoplastic disease (occurring in up to 30% of cancer patients) and its timely treatment may often save the patient and may permit subsequent chemotherapy. In this communication we focused our attention on the pathogenetic mechanism (part 1), diagnosis and subsequent treatment of this metabolic disorder (part 2).

Diagnosis, Differential↗

Effects of natural beta-interferon and recombinant alpha-2B-interferon on proliferation, glucocorticoid receptor content, and antigen expression in cultured HL-60 cells.

In the current study, we investigated the effects of natural beta-interferon (beta-IFN) and recombinant alpha-2b-interferon (alpha-IFN) on the growth of the HL-60 cell line. Cells cultured in a medium that contains various concentrations (from 10 to 1000 IU/ml) of interferons showed a growth inhibition, which reaches the maximum after a 6-day treatment, at the highest dose used. Furthermore, we studied the effect of both beta-IFN and alpha-IFN on the level of glucocorticoid receptors. This was enhanced more than 30% with respect to control in HL-60 cells exposed for 24 hours to concentrations of beta-IFN that ranged from 100 to 1000 IU/ml. The increase of the receptor amount was seen even if cells were treated for 5 days, and was not accompanied by a modification of antigen expression of HL-60 cells. alpha-IFN did not modify the glucocorticoid receptor level substantially in our experimental conditions. Our data indicate that both beta-IFN and alpha-IFN regulate HL-60 cell proliferation. Additional studies are required to clarify if modifications of the receptor level induced by beta-IFN could be related to the modulation of hormone-sensitivity in this model.

Antigens↗

[Metabolic emergencies in oncology: hypercalcemia. I. Pathogenesis].

The acute metabolic abnormalities associated with cancer may cause symptoms that require urgent medical treatment and may constitute a more dangerous threat to life than the cancer itself. Hypercalcaemia is probably the most common metabolic complication of neoplastic disease (occurring in up to 30% of cancer patients) and its timely treatment may often save the patient and may permit subsequent chemotherapy. In this communication we focused our attention on the pathogenetic mechanism (part 1), diagnosis and subsequent treatment of this metabolic disorder (part 2).

Bone Neoplasms↗

Efficacy and toxicity of 5-fluorouracil and folates in advanced colon cancer.

From February 1987 to December 1988, 34 patients with histologically confirmed advanced colorectal carcinoma were entered in a phase II trial with 5-fluorouracil (5-FU) and folinic acid, for evaluation of treatment effectiveness and toxicity. Our data confirmed that the association 5-FU and folates represents an effective and moderately tolerated palliative treatment, with diarrhea being the only dose-limiting toxicity.

Clinical Trials as Topic↗

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↗

Insulin independence after islet transplantation into type I diabetic patient.

Effective clinical trials of islet transplantation have been limited by the inability to transplant enough viable human islets into patients with type I (insulin-dependent) diabetes mellitus to eliminate their exogenous insulin requirement. We report the first type I diabetic patient with an established kidney transplant on basal cyclosporin immunosuppression who was able to eliminate the insulin requirement after human islet transplantation into the portal vein. We successfully isolated approximately 800,000 islets that were 95% pure from 1.4 cadaver pancreases containing 121 U of insulin. Islets were proven viable by in vitro insulin response to glucose challenge. After 7 days of 24 degrees C culture, the islets were transplanted into the portal vein under local anesthesia. Seven days of Minnesota antilymphoblast globulin (20 mg/kg) administration followed the islet transplantation, with maintenance of the cyclosporin. Blood glucose was kept under strict control via intravenous insulin for 10 days posttransplantation, when all insulin therapy was stopped. Off insulin, the average 24-h blood glucose level remained less than 150 mg/dl, with the fasting glucose level at 115 +/- 6 mg/dl and the 2-h postprandial level at 141 +/- 8 mg/dl for 22 days posttransplantation (the time of this study). The C-peptide values post-Sustacal testing, although initially rising slower, exceeded the normal range, with peak values of 1.0-1.8 pmol/ml. This preliminary result represents the first essential step required to determine the feasibility of islet transplantation by future clinical trials.

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↗

Pharmacokinetic-pharmacodynamic relationships of oral hypoglycaemic agents. An update.

Oral hypoglycaemic drugs, sulphonylureas and biguanides, occupy an important place in the treatment of Type II (non-insulin-dependent) diabetic patients who fail to respond satisfactorily to diet therapy and physical exercise. Although the precise mechanisms of action of these compounds are still poorly understood, there is sufficient agreement that sulphonylureas have both pancreatic and extrapancreatic effects, whereas biguanides have predominantly extrapancreatic actions. By using labelled compounds or measuring the circulating concentrations, the main pharmacokinetic properties of oral hypoglycaemic agents have been assessed and, in some cases, their pharmacokinetic-pharmacodynamic relationships have been evaluated. A correlation between diabetes control and plasma sulphonylurea or biguanide concentrations is generally lacking at the steady-state, with the possible exception of long-acting agents; after either oral or intravenous dosing, the reduction of plasma glucose is usually related to the increased circulating drug concentrations. The toxic effects of oral hypoglycaemic drugs are more frequent in the elderly and in the presence of conditions that may lead to drug accumulation or potentiation (increased dosage, use of long-acting compounds, hepatic and renal disease, interaction with other drugs); however, a relationship between toxic effects and drug plasma levels has been reported only for biguanides.

Administration, Oral↗

Effects of metformin therapy on plasma amino acid pattern in patients with maturity-onset diabetes.

Plasma amino acid concentrations and metformin levels were measured by high-performance liquid chromatography in a group of diabetic patients on therapy with the biguanide drug. Diabetic patients treated with metformin showed higher concentrations of plasma glutamate, asparagine, alanine, methionine and tryptophan, and lower levels of ornithine in comparison with normal subjects, and higher levels of alanine when compared to diet-treated diabetic patients. No correlation emerged between amino acid concentrations and metformin dose or plasma concentration. It is concluded that besides the various metabolic abnormalities that are known to occur during metformin treatment, patients on therapy with metformin also show multiple changes of plasma amino acid pattern.

Aged↗