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M Kwast

Publications and source records attributed to M Kwast.

At least 19 recordsLinked to original sources

[Free formaldehyde determination in cosmetic products by the HPLC method].

In order to standardize the analytical methods and procedures with the ones used in the EU, a method of free formaldehyde determination in cosmetic products preserved with formaldehyde donors, recommended by Commission Directive (90/207/EEC of 4th April, 1990), has been tested. The free formaldehyde level is determined by HPLC using post column derivatisation with acetylacetone. Formaldehyde content was determined in 44 fortified samples of cosmetic emulsions and shampoos. Recoveries ranged from 94.8-97.5%. Relative Standard Deviation 1-2.3%.

Chromatography, High Pressure Liquid↗

[Formaldehyde determination in shampoos, bath preparations and dish washing liquids by colorimetric methods].

In the years 1992-1993 in cooperation with Province Sanitary-Epidemiological Stations 2415 samples of shampoos and bath preparations for adults and children as well as of dish washing liquids, imported and produced in Poland, were analysed. The colorimetric method either with the chromotropic acid or acetylacetone was used. Among polish preparations, only in 6% samples of cosmetic products for children the level of formaldehyde exceeded permitted level of 50 mg/kg. In all cosmetic products for adults as well as in all samples of dish washing liquids the content of formaldehyde was below permitted level 500 mg/kg. Among imported products, 40% of samples of cosmetics for children, 3%--for adults and 2% of dish washing liquids revealed formaldehyde level above permitted values. It is advisable to determine periodically formaldehyde content in particular cosmetic products, such as shampoos and bath preparations, mainly used by children.

Adult↗

[Formaldehyde determination using the colorimetric method with acetylacetone. II. Formaldehyde determination in cosmetic emulsions and certain household products].

Total formaldehyde content was determined by the colorimetric method with acetylacetone in cosmetic emulsions and household products. The commercial products not containing formaldehyde were fortified with 150 micrograms of the investigated compound. Recovery in this method was 93.3-102.6%. The method was found useful in routine determinations of formaldehyde in cosmetics and household products and can be used by the State Sanitary Inspections.

Chromatography, High Pressure Liquid↗

Effect of ethanol on cardiac beta-adrenoceptors.

Liquid diets are commonly used as vehicles for chronic administration of ethanol to rodents. After mice had consumed an ethanol-free liquid diet for either seven or eight days, the number of cardiac beta-adrenoceptors and the maximum response of adenylate cyclase to isoproterenol were decreased. This change was associated with a decrease in the number of high-affinity agonist binding sites. When mice were fed ethanol in the liquid diet, there was a further decrease in the number of cardiac low-affinity agonist (isoproterenol) binding sites, but no further change in the biochemical response to isoproterenol. The data suggest that stress and/or nutritional factors can alter the number, the coupling and the function of cardiac beta-adrenoceptors and that chronic ethanol ingestion enhances certain aspects of these changes.

Adenylyl Cyclases↗

Comparison of the effects of ethanol on beta-adrenergic receptors in heart and brain.

Low, physiologically-attainable concentrations of ethanol affect agonist binding to cerebral cortical and cardiac beta-adrenergic receptors. In cerebral cortex, ethanol decreases the affinity of the high-affinity state of the receptor for isoproterenol. This may reflect a direct action of ethanol on the receptor. Ethanol also potentiates the action of guanine nucleotides on agonist binding, suggesting a second site of action at Ns. In heart, ethanol increases the proportion of low-affinity binding sites, an effect which is similar to that of guanine nucleotides, and may also indicate an action of ethanol at Ns. After chronic ethanol ingestion, the total number of cardiac beta-adrenergic receptors is decreased, but the proportion of high-affinity sites is increased. This change could reflect an increased sensitivity to catecholamines. In cerebral cortex, chronic ethanol results in a single, low-affinity binding site for agonist, compatible with an "uncoupled" receptor. Such a change also occurs during homologous desensitization, and may result from increased norepinephrine turnover during chronic ethanol ingestion. The differential responses to ethanol of similar receptors in heart and brain exemplify the specificity of ethanol's actions on various organ systems.

Animals↗

Influence of thiamine deficiency on the response to ethanol in two inbred rat strains.

We investigated whether thiamine deficiency (TD), a frequent concomitant of chronic alcoholism, differentially modifies the response to ethanol in two inbred rat strains with highly different genetic susceptibilities to development of TD encephalopathy. Ethanol-induced (3 g/kg i.p.) behavioral impairment and hypothermia were studied after 2, 5 and 7 weeks of TD and after 6 weeks of repletion on normal diet. Controls of the M520/N (TD-sensitive) strain metabolized ethanol more rapidly, had a greater liver to body weight ratio, greater total body water, earlier and lower peak blood ethanol concentrations (BEC), diminished area under the BEC curve and lesser behavioral impairment and hypothermia (even at equivalent BEC values) than those of the F344/N (TD-resistant) strain. In both strains, TD resulted in reduced ethanol metabolic rate and liver to body weight ratio and equivalent ethanol-induced hypothermia and behavioral impairment at lower BEC. Lower and delayed peak BEC and unchanged area under the BEC curve suggest an increased volume of ethanol distribution during TD. Recovery appeared complete after 6 weeks of normal diet. Both strains lost an equivalent proportion of body weight during TD but M520/N rats had lesser decrements in ethanol metabolic rate, had greater reductions in liver weight, peak BEC and baseline body temperature and developed overt encephalopathy whereas F344/N rats did not. Therefore, in the chronic alcoholic, TD may modify ethanol's effects via pharmacokinetic and pharmacodynamic mechanisms. Relatively high ethanol tolerance of the strain with a genetic predisposition to TD encephalopathy is consistent with the hypothesized role of this avitaminosis in the pharmacogenetics of alcoholism.

Animals↗