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Biomedical subjects

H Szafran

Publications and source records attributed to H Szafran.

At least 19 recordsLinked to original sources

[The role of estrogens in hormonal regulation of lipid metabolism in women].

In the view of lipid metabolism, adipose tissue and liver are the most important tissues for 17-beta-estradiol, the main estrogen in women's body. The lack of estrogens in women after menopause may cause coronary heart disease. It is considered, that 25 to 50% of positive effect of estrogens which are given to postmenopausal women is connected with their action on lipid metabolism. Blood plasma parameters which characterize lipid metabolism return to their physiological values during estrogens therapy. Estrogens are transferred to adipose tissue cells and liver cells by endocrine and paracrine way. They are also produced in these cells from androgens. In adipocytes 17-beta-estradiol can be stored as its esters with long-chain fatty acids. It was proved that estrogens receptors are present in adipocytes and hepatocytes but their density is much lower than in gonads. On the cellular level estrogens regulate mRNA production for particular proteins among which there are proteins involved in lipid metabolism. In adipose tissue 17-beta-estradiol has a direct effect on lipoprotein lipase (LPL) and hormone-sensitive lipase (HSL). In the case of the first enzyme its synthesis is faster, while the synthesis of the latter is slower. On the other hand, indirect action of estrogens on adipose tissue is connected with the stimulation of the releasing of other hormones which increase HSL activity. To this group of hormones there belong catecholamines, growth hormone (GH) and glucagon. In liver 17-beta-estradiol regulates the rate of synthesis of structural apolipoproteins for VLDL and HDL. 17-beta-estradiol reduces the rate of apoB-100 synthesis, while stimulates apoA-I and apoA-II synthesis. HDL fraction containing apoA-I and apoA-II is necessary for chylomicrons and VLDL degradation as well as direct and indirect cholesterol transport to liver. Moreover, in hepatocytes estrogens stimulate the synthesis of apoC-III, while they decrease the synthesis of hepatic lipase (HL). In conclusion, 17-beta-estradiol by regulating lipid metabolism in adipocytes and hepatocytes modulates the concentration of lipid substances in plasma. The lack of 17-beta-estradiol leads likely to various lipid metabolism disorders in women after menopause. Estrogens therapy in these postmenopausal women may result in the improvement of lipid metabolism.

Adipose Tissue↗

Sequential hydrolysis of three acyl ester bonds in triolein molecule by human gastric juice lipase.

Specificity of gastric juice lipase concerning the sequential hydrolysis of three acyl ester bonds of triolein molecule has been compared with that of pancreatic lipase. The rates of the individual hydrolytic steps were calculated by applying the method based on the amounts of chromatographically separated hydrolysis products present upon the incubation of tritium-labelled triolein with a lipolytic enzyme. It was found that in the case of gastric lipase the rates of all three steps of triolein hydrolysis are similar, whereas in the case of pancreatic lipase the last step proceeds at a much slower rate than the preceding ones.

Gastric Juice↗

Blood serum immunoreactive gastrin level in infants with hypertrophic pyloric stenosis.

Blood serum immunoreactive gastrin level (IRG) was measured in infants with hypertrophic pyloric stenosis before and after corrective surgery and in a control group children of corresponding age. No significant difference in IRG level was found between the stenotic infants and the control group. In the stenotic infants IRG values were higher at the seventh day after than before the operation and significantly higher in those infants in whom gain of body weight was noted during that time as compared with the infants without gain of weight. These observations remain in agreement with the view that the main role of gastrin in infants is trophic action on the mucosa of the upper gastrointestinal tract.

Body Weight↗

Esterolytic activity of blood serum in infants with hypertrophic pyloric stenosis.

Esterolytic activity of blood serum was determined in infants with hypertrophic pyloric stenosis and in healthy control children. The substrates hydrolyzed mainly by arylesterase (EC. 3.1.1.2), i.e. p-nitrophenyl esters of acetic, propionic and butyric acid were used. It was found that in infants with hypertrophic pyloric stenosis the rate of p-nitrophenyl propionate hydrolysis was significantly higher than that of the acetate or butyrate. In control group children all three substrates were hydrolysed at similar rates, and these were significantly lower than in infants with hypertrophic pyloric stenosis.

Carboxylic Ester Hydrolases↗