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C-Peptide reserve in insulin-dependent diabetes. Comparative responses to glucose, glucagon and tolbutamide.

Residual beta cell secretory capacity was assessed in short term (2 months to 2 years) and long term (5 to 8 years) insulin-dependent diabetics by measurement of serum C-peptide immunoreactivity during three provocative tests: glucose, tolbutamide, and glucagon. Minimal C-peptide secretion could be detected in only one out of seven long term diabetics by the stimulatory tests. All seven short-term diabetics responded to at least one provocative test of beta cell reserve, although these responses were blunted. The greatest C-peptide responses occurred after glucagon administration (mean increase 0.62 pmol/ml) in short-term responders. Patients who responded to one test did not necessarily respond to another stimulus. There was no correlation between basal C-peptide levels and the ability to provoke further C-peptide secretion by any of the three tests. C-peptide responses did not correlate with % Haemoglobin A1c, mean fasting blood glucose levels, or mean blood glucose concentrations during an oral glucose tolerance test. The data indicate that stimulation tests are only useful in assessing endogenous beta cell reserve in patients with diabetes of less than 5 years duration. In diabetics of longer duration there is little insulin reserve above basal levels.

Adolescent↗

The effects of pinacidil and tolbutamide in feline pial arteries in situ.

The vasomotor effect of the K+ channel opener pinacidil was investigated in feline pial arteries of the parietal cortex. Perivascular microapplication (5 microliters in 40 sex) and an image splitting method for the measurement of vascular diameter were employed. Pinacidil (10(-11) - 10(-7) M) induced concentration-dependent dilatations at 10(-9) M and higher concentrations. A maximal dilatation of about 42% was achieved at 10(-8) M, the dilatation at 10(-7) M was reduced to 22%. The sulphonylurea tolbutamide exerted per se no effect in pial arteries but it blocked concentration-dependently the pinacidil induced dilatation. This is consistent with the presence of ATP-sensitive K+ channels in pial arteries which are closed under resting conditions.

Animals↗

Changes in histochemically detectable calcium and zinc during tolbutamide-induced degranulation and subsequent regranulation of rat pancreatic islets.

Secretory granules of pancreatic B-cells contain high concentrations of zinc and calcium. The effect of gradual degranulation (induced by tolbutamide over a period of 3 days) and the subsequent regranulation (over a period of 4 days) on the histochemically detectable zinc (Zn) and calcium (Ca) content of B-cells was investigated. Zn was stained by dithizone, Ca by glyoxal-bis-(2-hydroxyanil), (GBHA), and B-granules by aldehyde fuchsin (AF). The staining intensities were determined cytophotometrically. A decrease of the granulation by 50% causes a comparable decrease of the Zn content. Almost complete degranulations, however, hardly further diminished the Zn content. Regranulation restores the Zn content parallel to the granulation. The presence of 40% of the initial Zn content in degranulated B-cells suggests the existence of a non-granular Zn fraction. The Zn content of B-cells may be partly involved in the storage of insulin as a Zn-insulin complex in the secretory vesicles. A-cells, however, contain even more (+ 30%) Zn than B-cells. Degranulation of B-cells is accompanied by a moderate decrease of the zinc content of the A-cells. The function of Zn in A-cells is completely unknown. Degranulation of B-cells causes the GBHA-Ca content to decrease to a very low level parallel to the AF-positive granulation. During regranulation the GBHA-Ca content restores parallel to the granulation and reaches after complete regranulation a slightly higher level than in untreated control rats. Almost complete disappearance of CBHA-Ca in the B-cells is accompanied by a decrease of the total islet calcium content of 33%. The results indicate that GBHA stains a Ca fraction which is mainly localized to the secretory granules. The stainability of granular Ca by GBHA is probably based on: a) the high Ca concentration in the granules, b) the presence of ionized Ca in the granules, due to the low intragranular pH, and c) on the properties of GBHA, which stains, under conditions used, only ionized (possibly also readily ionizable) Ca.

Animals↗

Calcium, zinc and other elements in islet and exocrine tissue of the rat pancreas as measured by histochemical methods and electron-probe micro-analysis, Effects of fasting and tolbutamide.

Fasting for 24 or 72 h causes a strong decrease of pancreatic islet calcium content as detected by glyoxal-bis-(2-hydroxyanil), (GBHA). There is strong evidence that GBHA only detects ionized calcium and not total calcium (Wolters et al., 1979). Fasting does not influence the zinc content as detected by dithizone (DZN), and aldehyde-fuchsin (AF) staining intensity is only slightly decreased. After degranulation of islets by tolbutamide (which reduced the insulin content of the pancreas to 10% of the control value) the staining intensities of GBHA, DZN and AF were strongly depressed. Calcium (as well as other elements) were also measured by electron-probe micro-analysis (EPMA). It appeared that 24 or 72 h of fasting did neither affect the total content of Ca nor of Na, P, S, and K of the islets significantly. In exocrine tissue the Ca content increased gradually as a result of fasting. Thus, after 72 h of fasting the Ca content was 25% higher than in fed controls. On the other hand after 72 h of fasting the K content appeared to be decreased. EPMA revealed that after degranulation of islets the Ca content decreased markedly (35%). S appeared to be decreased by only 14%, whereas the content of the other elements was not changed. The results show that GBHA-detectable Ca is only a part of EPMA-detectable Ca. The GBHA-Ca "pool" which contains ionized Ca, is subjected to changes when the animals are fasted, the total Ca content as measured by EPMA does not change. Thus, at least two distinguishable pools of Ca exist within the islets (GBHA-detectable and not-GBHA-detectable). It is suggested that as a result of fasting Ca passes from one pool to another.

Animals↗

Physiologically based pharmacokinetics of drug-drug interaction: a study of tolbutamide-sulfonamide interaction in rats.

A blood flow rate-limited pharmacokinetic model was developed to study the effect of sulfonamide on the plasma elimination and tissue distribution of 14C-tolbutamide (TB) in rats. The sulfonamides (SA) used were sulfaphenazole (SP), sulfadimethoxine (SDM), and sulfamethoxazole (SMZ). The tissue-to-plasma partition coefficients (Kp) of all tissues studied, i.e., lung, liver, heart, kidney, spleen, G.I. tract, pancreas, brain, muscle, adipose tissue, and skin, increased in the presence of SA, but except for brain, liver, and spleen, the tissue-to-plasma unbound concentration ratio (Kp,f) of other tissues did not show a significant alteration. This suggested that the tissue binding of TB is not affected by SA and that the increase of Kp is due mainly to the displacement of plasma protein-bound TB by SA. The concentrations of TB in several tissues and plasma were predicted by a physiologically based pharmacokinetic model using in vitro plasma binding and metabolic parameters, the plasma-to-blood concentration ratio and the tissue-to-plasma unbound concentration ratios having been determined from both the tissue and plasma concentrations of TB at the beta-phase after intravenous administration of TB and the plasma free fraction. The predicted concentration curves of TB in each tissue and in plasma showed good agreement with the observed values except for the brain, for which the predicted concentrations were lower than the observed values in the early time period. In the SP- and SDM-treated rats, the predicted free concentration of TB in the target organ, the pancreas, at 6 h was six times higher than that of the control rats. From these findings, it is suggested that physiologically based pharmacokinetic analysis could be generally useful to predict approximate plasma and tissue concentrations of a drug in the presence of drug-drug interaction.

Animals↗

Favorable effects of glibenclamide in a patient exhibiting idiosyncratic hepatotoxic reactions to both chlorpropamide and tolbutamide.

A middle-aged diabetic woman after four weeks of chlorpropamide treatment developed cholestatic hepatitis with systemic manifestations of idiosyncratic reaction. After recovery, unintended rechallenge with the same drug induced a brisk exacerbation of the symptoms and signs that reversed completely following chlorpropamide withdrawal. Tolbutamide medication was subsequently well tolerated for several weeks, followed by another flare of cholestatic liver lesion and cutaneous eruption with eosinophilia (after each reaction the patient was treated with insulin). Eventually glibenclamide (glyburide) was instituted resulting in very satisfactory control of diabetes, with no untoward reaction.

Adult↗

Hyperinsulinism and insulin resistance in polycystic ovarian syndrome: a verification using oral glucose, I.V. Glucose and tolbutamide.

Twenty-six female in-patients, aged 14-34 years, suffering from polycystic ovarian syndrome (PCOS) were investigated. Sixteen normal women, matched with patients for age and weight, were used as controls. Both glucose and insulin curves and areas, insulin/glucose area ratio [insulin resistance index (IA/GA)] were studied by oral glucose tolerance test (OGTT), i.v. glucose tolerance test (IVGTT) and tolbutamide test (TT). Plasma insulin and insulin area values of the patients were significantly higher than those of controls. Insulin/glucose area ratios were significantly higher in patients when compared to controls. A correlation was found in some patients (subgroup A) between insulin/glucose area ratio and urinary dehydroepiandrosterone output after the TT. The presence of hyperinsulinism and insulin resistance in our patients suffering from PCOS was confirmed even in the absence of obesity. A relationship between androgens and hyperinsulinism and insulin resistance may thus be confirmed in patients with PCOS.

Adolescent↗

Interaction among zinc, glucose, and insulin in normal individuals during glucose and tolbutamid perfusion.

Reports in the literature have shown that acute or chronic zinc administration may cause hyperglycemia, with a fall in serum or insular insulin occurring in experimental animals. On the other hand, under conditions of both acute and chronic hyperglycemia, an increase, a decrease, or a normal level of blood zinc has been observed in studies conducted on humans. Thus, the objective of the investigation described here was to determine the relationship existing among zinc, glucose, and insulin under acute conditions. Thirty-six subjects of both sexes (mean age, 23 yr) were tested at 7:00 A.M. after a 12-h fast. Two antecubital veins of both forearms were punctured and maintained with physiological saline. Three experiments were performed in which zinc was administered orally, and hypertonic glucose and tolbutamid were administered intravenously. Blood samples were then collected over a period ranging from 93 to 240 min after the basal times of -30 and 0 min. Hyperzincemia did not cause changes in plasma glucose or insulin either in the absence of or during perfusion of glucose. Hyperglycemia, hypoglycemia, and hyperinsulinemia did not modify serum zinc levels. These results demonstrate that acute zinc administration did not change carbohydrate metabolism and that sudden variations in glucose and insulin levels did not modify the serum profile of zinc.

Administration, Oral↗

Evaluation of hepatic dysfunction in endotoxin pretreated rats using tolbutamide as a marker.

The pharmacokinetics of tolbutamide (TB) have been studied in endotoxin pretreated rats with the aim of evaluating TB as a marker for endotoxin effects. Endotoxin dose of 10 mg/kg resulted in a 50% rate of mortality. TB was i.v. administered 24 h. after endotoxin dosing. Clearance (Cl) decreased by approximately 2/3 of its value, area under the curve (AUC) and half-life (t1/2) in the pretreated animals were an average 1.5 times the values for the respective controls. Volume of distribution (Vd) increased by 10% approximately. These findings suggest that endotoxin pretreatment may cause hepatic damage by producing a decrease in Cl and an increase in the t1/2 of TB. But, SGOT levels in pretreated animals were not significantly different. This phenomenon may be explained by the increase in plasma protein binding of TB during endotoxin pretreatment, which decreases the free fraction of the drug in plasma available for metabolism. Endotoxin increased tmax of hydroxy-TB, while no change in Cmax was observed. Since tmax is inversely related to the formation and elimination rates of hydroxy-TB, an increase in tmax may be due to the decrease in both elimination rates. No change in Cmax may be due to the decrease in the rate of formation which is equivalent to the decrease in the rate of elimination of hydroxy-TB.

Animals↗

Characterization of protein kinases from bovine parotid glands. The effect of tolbutamide and its derivative on these partially purified enzymes.

1. Four fractions of protein kinase (EC 2.7.1.37) activity (Peak IH, IIH, IIIC and IVC) have been resolved and partially purified from the 100 000 X g supernatant fraction of bovine parotid glands by DEAE-cellulose and phosphocellulose chromatographies. 2. The protein kinases of Peak IH and IIH were adenosine 3',5'-monophosphate (cyclic AMP) -dependent and had similar enzymic properties. The enzyme activities of Peak IIIC and IVC were cyclic-AMP independent, but there were some distinct differences between their properties. The protein kinase in Peak IIIC was activated by 0.2 M NaCl or KCl and phosphorylated casein preferentially as the substrate, utilizing only ATP as a phosphate donor. On the other hand, the protein kinase in Peak IVC was inhibited by univalent salts and preferred phosvitin to casein, utilizing either ATP or GTP as a phosphate donor. 3. Tolbutamide increased the Km value for ATP and the dissociation constant for cyclic AMP, resulting in the inhibition of cyclic-AMP dependent protein kinase activity in the presence of cyclic AMP. Tolbtamide and its carboxy derivative, 1-butyl-3-p-carboxyphenylsulfonylurea, exerted almost no inhibitory effect on either the cyclic-AMP dependent protein kinase activities in the absence of cyclic AMP or on the cyclic-AMP independent protein kinase activities.

Adenosine Triphosphate↗

Hydroxylation of the antimalarial drug 58C80 by CYP2C9 in human liver microsomes: comparison with mephenytoin and tolbutamide hydroxylations.

58C80 [2-(4-t-butylcyclohexyl)-3-hydroxy-1,4-naphthoquinone] is an experimental naphthoquinone antimalarial drug which undergoes extensive alkyl hydroxylation to a single t-butylhydroxy metabolite in man in vivo and also in human liver microsomes, where this is catalysed primarily by a 54 kDa CYP2C9 form of cytochrome P450, P450hB20-27. Microsomal 58C80 hydroxylation (58OH) activity showed a marked inter-individual variation in a bank of 39 individual human livers but did not correlate with the immunoquantified levels of either of two microsomal proteins (54 and 50 kDa, respectively) recognised by a polyclonal antibody against CYP2C9 (P450hB20-27). Neither 58OH activity nor the concentrations of the CYP2C9-immunorelated proteins showed any relationship with the individuals' age, sex, cigarette smoking habit, alcohol consumption or clinical drug treatment, including long term antiepileptic therapy with phenobarbitone or phenytoin. 58OH activity did not correlate with either TBOH (tolbutamide hydroxylation) or MPOH (S-mephenytoin 4'-hydroxylation) activities, while 58C80 inhibited both TBOH and MPOH in human liver microsomes non-competitively (Ki = 30 and 175 microM for TBOH and MPOH, respectively). 58C80 could be a useful model substrate for measuring human CYP2C activity in vitro.

Antimalarials↗

Pro-arrhythmic effect of nicorandil in isolated rabbit atria and its suppression by tolbutamide and quinidine.

Nicorandil, a potent vasodilator substance which exerts its effects through complex mechanisms including KATP channel activation, has so far been reported to exert antiarrhythmic but not pro-arrhythmic cardiac activity. We now examined the effects of 10(-4) M nicorandil on spontaneously active or electrically driven isolated rabbit atria. Nicorandil (a) significantly reduced the action potential duration at both 50% (by approximately 45%) and 80% (by approximately 30%) repolarization and the effective refractory period (by approximately 25%) and (b) reproducibly induced short periods of tachycardia either in normal Tyrode solution after a single extra-stimulus or in low-potassium media in the absence of extra-stimulation. Quinidine (10(-5) M) or the KATP channel inhibitor, tolbutamide (10(-5) M), suppressed the nicorandil-induced arrhythmias. It is suggested that the pro-arrhythmic effect of nicorandil results from its KATP channel opener activity and occurs essentially when the underlying conditions facilitate re-entry.

Action Potentials↗

Tolbutamide suppresses anoxic outward current of hippocampal neurons.

In hippocampal slices, 2-3 min of hypoxia often evokes a hyperpolarisation or outward current. In the presence of tetrodotoxin and kynurenic acid (to minimize indirect effects of the drugs), we applied two sulphonylureas to detect a possible involvement of ATP-sensitive K (KATP) channels. In all 9 cells tested, tolbutamide (TOLB, 0.1-1 mM) greatly reduced both the hypoxic current (by 81.3 +/- 9.4%) and the conductance increase (by 77.2 +/- 10.2%). By contrast, glibenclamide (GLIB, 10-30 microM) tested on 5 cells, had no comparable effects. We therefore conclude that if KATP channels play a role in the hypoxic response, they are likely to be of the low affinity type found in neocortical and hypothalamic neurons.

Adenosine Triphosphate↗

Mutagenic evaluation of tolbutamide and glybenclamide on the bone marrow cells of mice.

Mutagenicity of tolbutamide (TB) and glybenclamide (GL) was evaluated in vivo by the micronucleus test (MNT) in mice. Various doses of either TB or GL, as suspension in 1% gum-acacia, were orally administered to the animals, twice, at an interval of 24 h. 6 h after the second treatment, bone-marrow smears were prepared, stained and examined for the occurrence of micronucleated erythrocytes. Animals receiving the vehicle only, served as control. TB only at two higher dose levels induced significant increase in the percentage of micronucleated erythrocytes over that of the control, but GL failed to do so.

Animals↗

Troglitazone inhibits type 2KATP channel activity and depolarises tolbutamide-sensitive neurones in the rat ventromedial hypothalamus.

Patch-clamp recording techniques were used to examine the effect of troglitazone upon visually identified neurones contained in slices from the rat ventromedial hypothalamus. Bath application of 1-50 microM troglitazone depolarised tolbutamide-sensitive neurones in a poorly reversible manner. In outside-out patches, troglitazone inhibited KATP channel activity when added to the bath solution. It is concluded that troglitazone is a novel modulator of the type 2 KATP channel.

Adenosine Triphosphate↗

Inhibition of ethinyloestradiol and tolbutamide metabolism by quinoline derivatives in vitro.

The effects of the quinoline derivatives amodiaquine (AQ), chloroquine (CQ), mefloquine (MQ), primaquine (PQ), quinine (Q) and quinidine (QD) on in vitro hepatic metabolism has been studied using as substrates ethinyloestradiol (EE2) and tolbutamide (TOL). The 2-hydroxylation of EE2 and the hydroxylation of TOL were determined in the presence of variable concentrations of each compound. MQ, PQ, AQ and Q significantly inhibited EE2 metabolism at each of the concentrations studied (0.1, 0.2 and 0.5 mM) as shown by an increase in the percentage of unmetabolised EE2. QD significantly inhibited metabolism at 0.2 and 0.5 mM but CQ was without effect. In terms of recovery of 2-OHEE2, PQ was the most potent inhibitor. At an inhibitor concentration of 0.5 mM the order of potency was PQ greater than or equal to MQ greater than or equal to Q greater than or equal to QD greater than or equal to AQ greater than or equal to CQ. TOL hydroxylase activity in control microsomes was 1.52 +/- 0.33 nmol. min-1 X mg protein-1. The order of potency of the inhibitors (0.5 mM) was PQ greater than or equal to MQ greater than or equal to Q greater than or equal to QD greater than or equal to AQ greater than or equal to CQ. These data provide further evidence of the inhibitory potential of some of the quinoline derivatives. PQ, MQ, and to a lesser extent Q produce the most marked inhibitory effects. QD and AQ are of intermediate potency and CQ is essentially non-inhibitory.

Animals↗

[Basal C peptide levels in response to intravenous tolbutamide in the detection of incorrect insulin therapy (or prolonged misuse)].

Fifty nine insulin dependant diabetics were hospitalised for a trial withdrawal of insulin: 17 patients rapidly showed signs of lack of insulin, 18 did not develop cetoacidosis but could not be stabilised on diet and oral hypoglycemic agents, 24 were stabilised without insulin. A statistical study (multifactorial analysis of correlations, plotting of ROC graphs) validated the classification of these diabetics into 3 groups. It also showed that in patients with hypoglycemia, the values of C-protein, and after intravenous injection of tolbutamide, were good predictive factors for insulin-dependance: all patients with basal C-protein less than 1,9 ng/ml could not be stabilised without insulin; when the basal C-protein greater than or equal to 1,9 ng/ml and the amplitude of response at the 5th min was greater than or equal to 0,4 ng/ml, the diabetes could be stabilised by diet and oral hypoglycemic agents in 90 p. 100 of cases. This institutes an easy, reliable and economic method of detecting abusive insulin therapy.

Adolescent↗