Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Acetohexamide”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 163 records · Page 9Linked to original sources

Sulfonylurea stimulates liver fructose-2,6-bisphosphate formation in proportion to its hypoglycemic action.

The effects of 5 sulfonylureas on fructose-2,6-bisphosphate (F-2,6-P2) formation using isolated perfused rat liver were examined. All sulfonylureas examined stimulated dose-dependent formation of the activator in a limited range of the concentration. A maximum effect on F-2,6-P2 formation was observed at the concentration of 10(-3) M of tolbutamide or chlorpropamide, at 10(-4) M of gliclazide or acetohexamide and at 10(-6) M of glibenclamide. These concentrations of sulfonylurea correspond with those in blood when therapeutical doses of the drug are administered orally. Sulfonamide and biguanide did not show any stimulatory effect on F-2,6-P2 level. The results demonstrate that stimulation of liver F-2,6-P2 formation is a common characteristic of sulfonylureas and suggest strongly that one of the extrapancreatic actions of sulfonylurea is stimulation of F-2,6-P2 formation followed by enhancement of glycolysis and inhibition of gluconeogenesis in the liver.

Acetohexamide↗

The role of metabolites in bioequivalency assessment. I. Linear pharmacokinetics without first-pass effect.

The estimation of bioequivalency using metabolite data was investigated for immediate release formulations with drugs exhibiting linear pharmacokinetics and no first-pass effect. This was accomplished by generating parent drug and metabolite plasma level profiles assuming formation and excretion rate-limited pharmacokinetic models with absorption rate constants obtained from bivariate normal distributions and designated random errors. Simulation results indicated that bioequivalence determination using Cmax of parent drug and metabolite was independent of the metabolite models as evaluated by confidence interval approach. However, a clear difference with respect to the outcome of bioequivalence evaluation arises depending upon the utilization of Cmax values for the parent drug and metabolite. The major reason for this disparity was attributed to the minimal effect of the absorption process for the parent drug on the formation of the metabolite. This phenomenon results in an apparent lower intrasubject variability for Cmax of the metabolite and, in turn, a tighter confidence interval for Cmax of the metabolite in comparison with the parent drug. The simulated results have been found to be in agreement with the bioequivalency data for acetohexamide, allopurinol, procainamide, and sulindac. In all cases, the interval of the 90% confidence limit for Cmax of the metabolite is always smaller than that of the parent drug, regardless of the drug pharmacokinetics and the level of error contained in the data.

Acetohexamide↗

The effect of sulfonylurea drugs on rabbit myocardial contractility, canine purkinje fiber automaticity, and adenyl cyclase activity from rabbit and human hearts.

Long-term clinical studies have associated tolbutamide therapy with an increased incidence of cardiovascular deaths. The effects of this and other sulfonylurea drugs on contractility and rate of isolated rabbit atria, automaticity of isolated dog Purkinje fibers, and adenyl cyclase activity in particulate preparations of rabbit and human hearts were studied. At concentrations that are attained clinically, tolbutamide (10 mg/100 ml) increased contractility of driven rabbit atria to 124+/-5% of control, acetohexamide (3.9 mg/100 ml) to 140+/-5%, chlorpropamide (8.3 mg/100 ml) to 139+/-6%, and tolazamide (3.1 mg/100 ml) to 119+/-6%. These effects were accentuated in the presence of 2.5 x 10(-4) M theophylline and were not blocked by 1 x 10(-5) M propranolol. Adenyl cyclase was activated by each of these drugs at concentrations below those which increase contractility. The drugs also increased the rate and slope of phase 4 depolarization in spontaneously beating Purkinje fibers, but did not alter the spontaneous rate of isolated rabbit atria. Since inotropic and chronotropic stimulation can be deleterious in some clinical settings, these findings may be of significance in interpretation of cardiovascular mortality data.

Acetohexamide↗

[Physiological, genetic and pathological factors regulating the reductive metabolism of drugs with a ketone group].

In this review, we describe the physiological, genetic and pathological factors regulating the reductive metabolism of drugs with a ketone group. Acetohexamide (AH) was chosen as a model drug with a ketone group. Species differences of AH reductase activity were observed in liver cytosol and microsomes of animals tested. AH reductase activity in liver microsomes of rats was much higher in males than females. The activity was not detectable until 4 weeks of age after birth in both sexes, but increased markedly at puberty only in males. AH reductase activity in liver microsomes of male rats was decreased by testectomy, and restored by the treatment with testosterone propionate, indicating that the sex-related difference and postnatal development of the activity are regulated by androgens. There was a strain difference of AH reductase activity in liver microsomes of male rats. Of rat strains tested, only Wistar-Imamichi strain was found to lack male-specific microsomal enzyme activity. The inheritance pattern of AH reductase activity in liver microsomes of rats was determined by mating the genetic deficiency Wistar-Imamichi strain with Fischer-344 strain. Streptozotocin-induced diabetes significantly decreased AH reductase activity in liver microsomes of male rats. Furthermore, the physiological role of AH reductase present in liver microsomes of male rats was examined. We propose the possibility that the male-specific microsomal enzyme physiologically functions as a 20 beta-hydroxysteroid dehydrogenase.

20-Hydroxysteroid Dehydrogenases↗

The effects of long-term therapy with oral hypoglycemic agents on the oral glucose tolerance test dynamics in male chemical diabetics.

The effect of fixed doses of oral hypoglycemic agents and placebo (diet alone) on the blood glucose, serum insulin, triglyceride, and cholesterol responses during oral glucose tolerance tests done annually for up to four years' follow-up was studied, in a double-blind manner, in five groups of mild male chemical diabetics. The drugs used were chlorpropamide (100 mg. O.D.), tolbutamide (500 mg. b.i.d.), phenformin (50 mg. O.D.), acetohexamide (250 mg. O.D.), and placebo. Each subject was given an individualized diet aimed at attaining and maintaining ideal weight. Comparison by chi-square analysis between the placebo group and each of the drug groups showed (a) no significant differences with regard to the number of subjects with normal glucose tolerance in each of the tests and (b) no change in the insulin secretion dynamics. Comparison between the initial test and each of the subsequent tests within each group showed (a) a greater number of subjects with normal glucose tolerance in the first follow-up test in the chlorpropamide group only, (b) no change in the insulin secretion dynamics except in the chlorpropamide group, where there was an increased insulin/glucose ratio in the first follow-up test, and (c) no change in the fasting serum triglyceride and cholesterol levels.

Acetohexamide↗

Binding study of sulfonylureas and phenothiazines to bovine serum albumin using difference spectrophotometry.

2-(4'-Hydroxybenzeneazo)benzoic acid is a spectrophotometric probe which shows absorption spectrum changes upon binding to protein. Difference absorption spectra of this probe were used as an indirect measurement of the binding of selected sulfonylurea and phenothiazine drugs to bovine serum albumin. The results obtained using the spectrophotometric probe were similar to data obtained from other methods, especially fluorescent methods. Of the four sulfonylureas studied, tolbutamide showed the highest binding affinity, followed by glyburide, glipizide, and acetohexamide, in that order. The data collected for phenothiazine drugs indicated that chlorpromazine has the highest affinity, followed in order by trifluoperazine, perphenazine, fluphenazine, and promazine. Correlation of these results with chemical composition indicated that the interaction of phenothiazine drugs with bovine serum albumin was of a hydrophobic nature.

Animals↗

Hypoglycemic activity of oral hypoglycemics with increased hydrophilicity.

The effect of increasing the hydrophilicity of acetohexamide and tolbutamide with hydroxypropyl methylcellulose and methylcellulose on drug dissolution and hypoglycemic activity in rats was examined. The dissolution rate of both drugs was increased according to the type and concentration of the polymer. The oral absorption of both drugs was improved, as indicated by potentiation of the reduction in blood glucose in rats. The efficiency of the polymer in increasing the dissolution rates of of the drugs correlated with hydrophilicity of the polymer.

Administration, Oral↗

The measurement of drug consumption. Drugs for diabetes in Northern Ireland, Norway and Sweden.

The consumption of insulin and oral antidiabetic drugs was measured at the gross sales level in Sweden and Norway and at the prescription level in Northern Ireland. ""Agreed daily doses'' were used as units of comparison, which defined as follows: insulin 40 I.U., tolbutamide 1 g, acetohexamide 500 mg etc. Consumption was expressed as the number of ""agreed daily doses'' per 1,000 inhabitants per day. This provided a rough estimate of the number of subjects for whom the drug had been prescribed per 1,000 population. The data were collected during the three months April-June 1971. Marked differences in the consumption of antidiabetic drugs were found between the three countries and also between areas within each country. The consumption of insulin was similar in Norway and Northern Ireland (3.5 and 3.9 agreed daily doses per 1,000 inhabitants per day), but almost twice as high in Sweden. In Norway much lower use was found in certain rural areas. The variation in the consumption of oral antidiabetic drugs was even more marked. Surprisingly, consumption was considerably higher in Sweden (15.8) than in the nearby Norway (7.3), and was even lower in Northern Ireland (4.3). The major use was of sulphonylureas, especially chlorpropamide. Within the countries there was marked regional variation in the choice of individual biguanides and sulphonylureas. The data are discussed in relation to such factors as the incidence of diabetes, the sole use of dietary treatment etc. It is concluded that studies in depth, which link the actual use of drugs by patients to diagnosis, diabetic symptoms and clinical outcome of treatment are necessary in order to explore the reasons behind the marked geographical differences and to define a rational drug policy. However, the methods described in the study may be used for early detection of gross national differences in drug utilization, the further investigation of which may reveal to be of great public health interest.

Diabetes Mellitus↗

Nonenzymatic glucosylation of human serum albumin and its influence on binding capacity of sulfonylureas.

To estimate the functional change occurring in human serum albumin by nonenzymatic glucosylation, glucosylated human serum albumin was prepared by in vitro incubation with glucose. The rate of glucosylation proceeded as a first-order reaction. The binding of sulfonylureas to serum albumin was determined by equilibrium gel filtration. Through this method, it was possible to estimate the binding capacity of a low water solubility drug with a high affinity to protein. The amounts of the sulfonylureas bound to glucosylated HSA decreased by 44% with tolazamide and acetohexamide, 50% with glibenclamide, and 52% with tolbutamide, compared to human serum albumin (HSA). This suggests that a high concentration of glucosylated HSA in diabetic patients may possibly cause an increase in free drug concentration exceeding normal levels. This study shows that the decrease in the binding capacity of sulfonylureas with protein is due to the modification of albumin molecules by the covalent binding of glucose.

Chromatography, Affinity↗

Reduction of drug ketones by dihydrodiol dehydrogenases, carbonyl reductase and aldehyde reductase of human liver.

In this study, we compared the enzymatic reduction of 10 drugs with a ketone group by homogeneous carbonyl reductase, aldehyde reductase and three dihydrodiol dehydrogenases of human liver cytosol. At least one and in some cases all of the three dihydrodiol dehydrogenases reduced each of the ten drugs. Among these naloxone, naltrexone, befunolol, ethacrynic acid and ketoprofen were substrates specific for the dehydrogenases. The other drugs--haloperidol, metyrapone, loxoprofen, daunorubicin and acetohexamide--were highly reduced by carbonyl reductase and/or aldehyde reductase. The dihydrodiol dehydrogenases also showed lower Km values for haloperidol and loxoprofen than did carbonyl reductase. The results indicate that the three dihydrodiol dehydrogenases, as well as the two reductases, are implicated in the reduction of ketone-containing drugs in human liver cytosol.

Alcohol Oxidoreductases↗

Studies on the biochemical aspects of the 'disulfiram-like' reaction induced by oral hypoglycemics.

In vitro experiments, using rat liver homogenates, were designed to examine certain of the proposed enzymatic mechanisms for the interaction of oral hypoglycemic drugs with monoamine and ethanol metabolism. The oxidative degradation of tryptamine was studied by measuring indoleacetic acid (IAA) production and conclusions were drawn with regard to the activity of monoamine oxidase, aldehyde dehydrogenase and ethanol dehydrogenase. Acetohexamide, hydroxyhexamide, tolazamide, tolbutamide and chlorpropamide failed to reveal any specific inhibition of the three enzymes. Ethanol (0.2% w/v) and disulfiram decreased IAA formation, as did a lack of available aldehyde dehydrogenase and NAD, but these reductions were not enhanced by the hypoglycemic agents. The results suggest that the 'disulfiram-like' reaction which occurs in certain patients imbibing ethanol while receiving oral hypoglycemic drugs, depends upon some factor(s) other than, or additional to, a specific interference with monoamine and/or ethanol metabolism.

Administration, Oral↗

Characterization of the binding sites for [3H]glibenclamide in rat liver membranes.

The specific binding sites for sulfonylureas in the rat liver membrane fraction were demonstrated and characterized. [3H]Glibenclamide binding to the liver membrane was specific, time- and temperature-dependent, and reversible. Scatchard analysis showed a single class binding site. The dissociation constant (Kd) for glibenclamide was 1.1 microM and the binding capacity (Bmax) was 50 pmol/mg protein. [3H]Glibenclamide binding could be displaced by other sulfonylureas. Half-maximal inhibition of binding (IC50) for glimepiride, gliclazide, acetohexamide, tolbutamide and chlorpropamide was 4.2 microM, 74 microM, 0.33 mM, 0.60 mM, 1.2 mM, respectively. Each value is close to the reported blood concentration when a therapeutic dose of each drug is administered orally. The order of IC50 values is coincident with the order of potency of the clinical hypoglycemic effect of these drugs. We had shown that these concentrations of sulfonylureas stimulate 6-phosphofructo-2-kinase in the liver or hepatocytes and inhibit phosphoenolpyruvate carboxykinase in the hepatoma cells. The specific binding sites demonstrated here may play some roles when sulfonylureas affect carbohydrate metabolism in the liver.

Animals↗

Further studies on 20beta-hydroxysteroid dehydrogenase with carbonyl reductase-like activity present in liver microsomes of male rats.

Further characterizations of 20beta-hydroxysteroid dehydrogenase (20beta-HSD) present in liver microsomes of male rats were examined. A significant relationship was observed between 20beta-HSD and acetohexamide reductase (AHR) activities in liver microsomes of male rats. The hepatic microsomal 20beta-HSD and AHR preferentially required NADPH as a cofactor. When NADPH was replaced by NADH, NADP or NAD at the same concentration, these reductase activities were little detected. The hepatic microsomal 20beta-HSD and AHR activities in streptozotocin-induced diabetic rats were much lower than those in the corresponding controls. The hepatic microsomal 20beta-HSD and AHR activities appeared as one main peak, respectively, on DEAE-Sephacel column chromatography, and the peak of 20beta-HSD activity was in good agreement with that of AHR activity. Based on these results, we conclude that 20beta-HSD present in liver microsomes of male rats functions as AHR, and exhibits a carbonyl reductase-like activity.

Alcohol Oxidoreductases↗

Oral hypoglycemic agent update.

The treatment of diabetes is still a problem more than a half-century after the discovery of insulin. Patients are now living significantly longer but until the development of oral hypoglycemic agents, the only direct treatment modalities were exercise, diet, and insulin. Before evaluating the effectiveness of treatment, a therapeutic goal must be determined. While there are no absolutely "hard" facts proving that "good control" is beneficial in preventing chronic complications of diabetes, increasing accumulation of "soft" data strongly suggests that normal blood glucose levels are most desirable, when possible, but not at the cost of severe or disabling hypoglycemic reactions. The development of the oral agents was a great public health advance in that many persons with early diabetes, but fearful of insulin injections, had less dread of "the pills" and sought treatment. The oral agents simplified care but this very simplification process often undermined the need for proper diet and good fundamental care. This often led to mediocre diabetes care. While useful, the oral agents have marked limitations and in some are effective only temporarily. The presently available oral agents are sulfonylureas and require a viable beta-cell system for success. This limits the number of diabetics responsive to such treatment. The general indications for tolbutamide, chlorpropamide, acetohexamide and tolazamide are in maturity-onset diabetics, generally beyond the age of 40 with diabetes of less than 10 years. They are contraindicated in juvenile-onset diabetics, in pregnant women, and usually in patients undergoing major surgery, and can become ineffective during periods of extreme stress or during severe infection. They can lower blood glucose levels if used in proper doses in properly selected patients. Contrary to several decades of documentation, it has become popular to suggest that the oral agents are not effective. They can be effective but for many reasons apparently were not in their use by the U.G.D.P. researchers. This might not be the fault of the oral agent used. If ineffective, they should be discontinued. Many, but not all, patients may respond to diet therapy, which is then the treatment of choice. Obviously insulin, though difficult to use for many persons and in itself able to induce several severe reactions if not used properly, is the only treatment (with diet) for the severe diabetic. There is a large spectrum of patients inbetween in whom the oral agents may be useful. The use of phenformin (phenethyl-biguanide) has been effectively curtailed because of many reported cases of lactic acidosis, and while it is doubtful that phenformin alone, in the absence of complicating factors, is the causative factor, it is capable of being an augmenting influence when other conditions, such as decreased kidney function, prevail...

Administration, Oral↗

Analysis of synthetic anti-diabetic drugs in adulterated traditional Chinese medicines by high-performance capillary electrophoresis.

Four synthetic anti-diabetic drugs, acetohexamide (ACE), chlorpropamide (CHL), glibenclamide (GLI) and tolbutamide (TOL), which can be found as adulterants in traditional Chinese medicines (TCMs) were assayed simultaneously using high-performance capillary electrophoresis (HPCE) in 4 min with UV detection at 200 nm. The electrolyte was a buffer solution containing 100 mM phosphate buffer (NaH2PO4/Na2B4O7, pH 7.5). Applied voltage was 15.0 kV and temperature was 30 degrees C. 2-(4-Hydroxyphenyl) ethyl ammonium chloride (HEA) was used as an internal standard. The effects of buffer concentration, pH and supplied voltage on separation were investigated. The relative standard deviations (R.S.D.) of these anti-diabetic drugs for intra-day and inter-day analyses were 0.23-4.27 and 1.23-6.33%, respectively. The recoveries of the synthetic drug adulterants in traditional Chinese medicinal formula ranged from 81.3 to 105.5%. GLI was found and determined in a real sample of TCM.

Buffers↗

Detection of hypoglycemic drugs in human urine using micellar electrokinetic chromatography.

Micellar electrokinetic chromatography (MEKC) is evaluated as a potential analytical method for the separation and detection of a series of sulfonylurea drugs used in the treatment of hyperglycemia. These drugs are often surreptitiously abused, producing extremely low blood glucose levels and symptoms indistinguishable from those associated with an insulin-secreting tumor. Separation buffer containing 50 mM sodium dodecyl sulfate (SDS) was found to be adequate for the MEKC separation of the third generation drugs (glipizide and glyburide) but not the second generation drugs (acetohexamide chlorpropamide, tolazamide, and tolbutamide). At a pH of 8.5 in the presence of 20 mM borate/20 mM phosphate and 150 mM SDS, all seven components were adequately resolved with an analysis time of 17 min. Altering the concentration of the buffering components to either 5 mM borate/5 mM phosphate or 40 mM borate alone reduced the analysis time to less than 10 min with no observable loss in resolution. A series of other micelle-forming surfactants were evaluated, and only sodium cholate provided an improvement over the SDS-based system. Optimal separation was obtained with 75 mM sodium cholate and led to complete analysis with baseline resolution of all seven components in less than 8 min. These conditions were shown to be adequate for the detection of the hypoglycemic drugs spiked into normal urine and in patients taking these drugs. The precision associated with nine consecutive injections of six samples (n = 54) was found to be acceptable with percent coefficient of variance for absolute migration times (MTabs) for all peaks averaging 0.89 with peak area and peak height being 8.49 and 8.26, respectively. The between-sample precision was found to average 0.92% for MTabs and 8.56% and 8.45%, respectively, for the relative peak area and peak height. With a detection limit for the drugs in urine (following extraction) in the 50 ng/mL range, the potential exists for an MEKC-based assay for the detection of sulfonylurea drugs in urine.

Chromatography, High Pressure Liquid↗

Effects of antineoplastics, antibiotics and antidiabetics on acetaldehyde metabolism after alcohol ingestion.

The main purpose of this study was to evaluate the inhibitory effects of 5-fluorouracil antineoplastics, cephem antibiotics containing the methyltetrazolylthiol (MTT) group and antidiabetics on aldehyde dehydrogenase (ALDH) activity in vivo and in vitro. In in vivo experiments, rats were given a 100 mg/kg dose of drugs (10 mg/kg for glibenclamide) orally or intraperitoneally. When each drug was administered singly immediately after an oral administration of 1.5 g/kg ethanol, only carmofur, an antineoplastic, produced marked increases in blood acetaldehyde concentrations. This action was also noted when ethanol was ingested 15 h after administration. The remaining drugs did not increase blood acetaldehyde concentrations. When rats were treated with carmofur at 12 h intervals for 3 consecutive days and were given 1.5 g/kg ethanol after the final treatment, blood acetaldehyde concentrations were elevated more significantly than with a single administration of carmofur. Furthermore, daily administration of cephem antibiotics containing the MTT group, latamoxef, cefamandole, cefoperazone and cefbuperazone, significantly increased blood acetaldehyde concentrations. Daily administration of sulfonylurea antidiabetics, chlorpropamide and acetohexamide, slightly increased blood acetaldehyde concentrations. Drugs causing increases in blood acetaldehyde concentrations when administration was combined with ethanol ingestion also inhibited ALDH activity in vitro. The results of the in vitro experiments roughly correlated with those of the in vivo experiments. The inhibitory effects of drugs on ALDH activity were in the following order: carmofur >> cephem antibiotics containing the MTT group > sulfonylurea antidiabetics.

Acetaldehyde↗

The relationship between the pharmacokinetics and pharmacodynamic effects of oral hypoglycaemic drugs.

Oral hypoglycaemic drugs have widely differing pharmacokinetic properties. Possible pharmacodynamic benefits include greater efficacy and fewer adverse effects. In general, it has not been possible to demonstrate unequivocal differences in clinical efficacy between the sulphonylureas during long term use, although there are clear differences in potency. These differences have been emphasised to the extent that the term 'second-generation' has been used for the most potent sulphonylureas, but there is little to suggest that potency is of any therapeutic significance. Trials to study differences in efficacy have rarely been of acceptable design. They have often used fixed doses of drugs, begging the question of whether true potency ratios have been established for chronic treatment. They have rarely involved substantial numbers of patients in double-blind crossover studies with a suitable washout period. Trials which show that there is a clear relationship between drug concentrations in blood and drug effects (whether therapeutic effects or adverse effects such as severe hypoglycaemia) are generally lacking. Qualitative and semiquantitative analysis of adverse effects supports the concept that drugs with a long half-life (e.g. chlorpropamide), renally excreted active metabolites (e.g. acetohexamide) or unusual properties (e.g. glibenclamide, which accumulates progressively in islet tissue) are more likely to cause prolonged hypoglycaemia, which may be fatal. The major adverse effect of treatment with biguanides is lactic acidosis, and this probably occurs more commonly in patients treated with phenformin than those treated with metformin because of pharmacogenetic variation in phenformin metabolism. The available evidence therefore favours the use of drugs with a short elimination half-life which are extensively metabolised and which have no active metabolites.

Administration, Oral↗