PubMed HealthSearch

Biomedical subjects

J Górski

Publications and source records attributed to J Górski.

At least 19 recordsLinked to original sources

Plasma ammonia is the principal source of ammonia in sweat.

Sweat contains ammonia. However, neither its source nor factors affecting its concentration in the sweat are known. The aim of this study was to examine the effect of plasma concentrations of ammonia and urea on the concentration of ammonia in the sweat. Four groups of male volunteers were examined: one control, two after ingestion of ammonium chloride, three cirrhotic, hyperammonaemic, four uraemic. Sweat was collected from each subject from the palmar side of the forearm using gauze pads, after previous iontophoresis of pilocarpine. Ammonia and urea concentrations were determined in the sweat and in the plasma. It was found that elevated plasma ammonia concentration in healthy subjects after ingestion of ammonium chloride as well in the cirrhotic patients resulted in an increase of ammonia concentration in the sweat. High plasma and sweat urea concentration in the uraemic subjects did not affect the concentration of ammonia in the sweat. It was concluded that plasma ammonia was the principal source of ammonia in the sweat.

Administration, Oral

Adenosine deaminase activity in the human duodenal mucosa in relation to gastric acid secretion.

Adenosine deaminase (ADA) activity was estimated in mucosal specimens obtained endoscopically from the duodenal bulb. Three groups of subjects were studied: 1. 9 patients with achlorhydria, 2. 12 subjects with normal gastric acid secretion, 3. 5 patients with hypersecretion. Enzyme activity was measured by determination of ammonia liberated from the substrate according to the Chaney and Marbach method. In patients with hypersecretion the ADA activity was lower than in those with achlorhydria (p less than 0.001) and normal acid secretion (p less than 0.02). A significant negative correlation between ADA activity in the duodenal bulb mucosa and basal and maximal gastric acid outputs was found. The present study seems to indicate a possible relationship between gastric acid secretion and duodenal ADA activity.

Achlorhydria

Effect of exercise on adenosine deaminase activity in rat skeletal muscles.

Adenosine deaminase activity was shown to decrease in each skeletal muscle type (the slow-twitch oxydative, fast-twitch oxydative--glycolytic and fast-twitch glycolytic) at the beginning of exercise of moderate intensity and to return to the control when exercise was continued till exhaustion. 5 min occlusion of the femoral artery had no effect on the enzyme activity in either muscle. The reduction of the enzyme activity at the onset of exercise could result in reduction of adenosine breakdown and thus contribute to vasodilation at this stage of increased contractile activity of the muscles.

Adenosine Deaminase

Inhibition of glycogenesis in rat muscles partially depleted of glycogen.

This study aimed to examine the extent to which repletion of glycogen in muscles partially depleted of glycogen may be inhibited by contractions and epinephrine. Four experiments were carried out on untrained male Wistar rats. 1) Animals ran 150 min (1,200 m/h) on a treadmill set at +10 degrees incline. After 60, 90, and 120 min of running, they were given glucose (40% solution, 1 ml/100 g) by a stomach tube. 2) Rats ran on a treadmill set as above for 20 min at 3,200 m/h and then 2 h at 800 m/h. 3) In anesthetized rats, gastrocnemius-plantaris muscle group was made to contract isometrically by means of stimulation of the sciatic nerve. The nerve was stimulated with tetanic pulses (7 V, 0.05-ms duration, delivered in 100-ms trains at 100 Hz): first 15 min, 2 pulses/s, then 2 h, 1 pulse/2 s. 4) Epinephrine (0.5 mg/kg) was administered subcutaneously 10 min before onset of stimulation of the sciatic nerve. The nerve was stimulated 15 min with tetanic pulses (as above), 2 pulses/s. Next, rats were rested for 2 h. Level of glycogen was determined in samples of white and red gastrocnemius, plantaris, and soleus. Initial running or stimulation resulted in pronounced glycogen depletion in each muscle. Thereafter, either considerable or full repletion of glycogen occurred in the muscles despite continued contractile activity or the presence of epinephrine. The degree of repletion depended both on the type of muscle and the type of activation of glycogenolysis (running, stimulation of the nerve, epinephrine).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Sweat ammonia excretion during submaximal cycling exercise.

This study was undertaken to investigate whether part of the ammonia formed during muscular exercise was excreted with the sweat. Male medical students volunteered for the experiment. They exercised 30 min on a bicycle ergometer at 80 and 40% of the predetermined maximal O2 uptake (VO2max). Exercise at 80% VO2max was performed twice, at room temperature (20 degrees C) and in a cold room (0 degrees C), whereas exercise at 40% was performed only at room temperature (20 degrees C). Blood was collected from the antecubital vein immediately before and after exercise. Sweat was collected from the hypogastric region by use of gauze pads. It was shown that the plasma ammonia level was elevated after exercise at 80% VO2max and remained stable after exercise at 40% VO2max. The volume of sweat produced during exercise at 80% VO2max at 20 degrees C was 428 +/- 138 ml and at 0 degrees C 245 +/- 86 ml and during exercise at 40% VO2max was 183 +/- 69 ml. The ammonia concentration in the sweat after exercise at 80% VO2max at 20 degrees C was 7,140 mumol/l and at 0 degrees C 11,816 mumol/l. After exercise at 40% VO2max, it was 2,076 mumol/l. The total ammonia lost through the sweat during exercise at 80% VO2max was similar at both temperatures, despite the difference in the sweat volume (at 20 degrees C, 3,360 +/- 2,080 mumol; at 0 degrees C, 3,310 +/- 1,250 mumol). During exercise at 40% VO2max, it was 350 +/- 230 mumol. These results show that part of ammonia formed during exercise is lost with sweat. The amount lost increases with increased work rate and the plasma ammonia concentration.

Adult

[Mechanisms of accumulation of neutral lipids in the liver].

The process of triacylglycerol (TG) synthesis in the liver is described. Some factors influencing the biosynthetic pathways and the removal of TG from the liver are discussed. Clinical considerations regarding the problem of fatty liver are presented.

Animals

On the role of insulin in regulation of adenosine deaminase activity in rat tissues.

After administration of insulin adenosine deaminase activity was reduced in different skeletal muscle types, the heart and the liver. On the other hand profound reduction in the plasma insulin concentration (streptozotocin diabetes) resulted in elevation of the enzyme activity in the tissues. It is concluded that the local concentration of adenosine may be effected by the concentration of insulin in the plasma.

Adenosine Deaminase

Effect of hyperglycaemia on muscle glycogen mobilization during muscle contractions in the rat.

In the rat, muscle glycogen is mobilized during the first stage of exercise, despite normoglycaemia. The aim of the present study was to examine if this process could be prevented or reduced by hyperglycaemia. Three experiments were carried out: in the first, rats were forced to run on a treadmill; in the second the gastrocnemius muscle group was made to contract by stimulation of the sciatic nerve and in the third adrenaline was administered subcutaneously. Each group was divided into two subgroups: control and enriched with glucose (hyperglycaemic). It was shown that hyperglycaemia has no effect on running-induced glycogen mobilization in hind-limb muscles of different fibre composition but prevented it totally in diaphragm muscle. Hyperglycaemia also did not affect the glycogen mobilization induced by stimulation of the sciatic nerve. However, it delayed and reduced markedly the glycogenolytic effect of adrenaline. It is concluded that increased glycogenolysis in muscles at the beginning of exercise may be a consequence of a delay in the activation of glucose transporting mechanisms in muscle cells.

Animals

Adenosine deaminase activity in the human gastric mucosa in relation to acid secretion.

Adenosine deaminase (ADA) activity was estimated in human gastric mucosal specimens taken endoscopically. Three groups of patients were studied: 6 subjects with achlorhydria, 11 patients with normal gastric acid secretion and 6 patients with hypersecretion. The activity of ADA in mucosal homogenates was measured by determination of the ammonia liberated from the substrate. It was found that in the subjects with normal or increased gastric acid secretion, ADA activities were higher in specimens taken from the gastric fundus than in slices coming from the antral region. In the fundic mucosa the highest ADA activity was noted in patients with hypersecretion. Moreover, in this gastric region a positive correlation between ADA activity and basal or maximal acid output values was found. It is concluded that ADA might be involved in the regulatory system of gastric acid secretion.

Achlorhydria

Alanine and aspartate aminotransferase activities in muscles of diabetic rats.

Activities of alanine and aspartate aminotransferase in different muscle types and in the liver of streptozotocin diabetic rats were studied 1,2 and 3 days after administering of streptozotocin. It was shown that the activity of both enzymes was elevated in the "white" layer of the vastus lateralis, in the liver and in the heart, whereas it remained unchanged in the "red" layer of the same muscle, in the soleus and the diaphragm. It is concluded that the effect of acute insulin deficiency on the aminotransferase activity in skeletal muscles depends on the muscle fiber composition and does not appear in muscles with a high oxidative potential. These results indicate that muscle fiber composition should be taken into account when evaluating the role of insulin in amino acid metabolism in the muscle.

Alanine Transaminase

The role of insulin in the control of triacyglycerol (TG) in the rat skeletal muscles.

The role of insulin in the control of triacyglycerol (TG) in different types of skeletal muscle has not been fully recognized so the aim of the present study was to fill this gap. The experiments were carried out on control rats, those fed with olive oil or fed with the oil and treated with insulin and on streptozotocin diabetic animals at rest and there after exercise till exhaustion. The level of TG was measured in the white and red layers of the vastus lateralis, the soleus and the diaphragm. It was found that acute feeding with olive oil had no effect on TG level in either muscle type examined. Insulin administered to rats fed with oil increased TG level in the red vastus. Streptozotocin diabetes caused an increase in TG level in muscles with high oxidative potential. Exercise lowered the level of TG only in the red vastus of the diabetic rats. It is concluded that insulin may increase muscle TG level. Accumulation of TG in muscles of rats with acute diabetes is likely to be a result of the high plasma free fatty acid concentration. Acute insulin deficiency did not affect the muscle TG response to exercise.

Animals

Failure to demonstrate the effect of glucose on insulin removal by perfused rat liver.

The effect of glucose on insulin removal by perfused liver of fed and fasted rats has been studied. The perfusion medium contained glucose at a concentration of 300 mg/dl or no glucose. It has been found that glucose has no effect on insulin removal in either group and that fasting had no effect on this process. It is concluded that blood glucose concentration does no influence insulin removal by the liver.

Animals

[Effect of physical exercise on the fate of drugs in the body].

A data from the literature on the effect of physical exercise on the fate of drugs in the body have been collected. An intensive exercise and training produce several important changes in the physiological and metabolic function of the tissues and organs, especially kidneys, liver and circulatory system. Therefore, absorption, metabolism, and elimination of numerous drugs are modified. An intensive physical exercise increases or decreases blood levels of drugs and effect their elimination. It should be stressed that the data on these problems are incomplete and related to various groups of drugs, different modes of application, and various models of exercise testing. It seems, however, that physical exercise should be considered and additional, besides genetic factors, diet or patient's age, factor affecting the fate of drugs in the body.

Exercise

Effect of exposure to cold and fasting on the placental glycogen and triglyceride content in the rat.

The effect of exposure to cold (+2 degrees C, 3 and 24 h) and fasting (1, 2 and 3 days) on placental glycogen and triglyceride content was investigated in rats pregnant for 20 days. The stimuli did not affect the level of glycogen in the placenta. The level of triglycerides remained unchanged in the rats exposed to cold. It rose after only one day of fasting and then levelled out on the 2nd and 3rd days. Fasting, but not exposure to cold produced hypoglycemia and elevation of the plasma free fatty acids level. We conclude that activation of the adrenergic system during exposure to cold does not interfere with the glycogen and triglyceride content of the placenta. Prolonged hypoglycemia also does not affect the placental glycogen level although it increases the accumulation of neutral fat.

Animals

Effect of isoproterenol on the plasma C-peptide and insulin levels in humans.

There are conflicting reports on the effect of stimulation of the beta-adrenergic receptors on insulin removal by the liver. It was, therefore, the aim of the present study to clarify that problem. Four experiments have been carried out on a group of 8 healthy female volunteers: (1) isoproterenol was infused intravenously, (2) glucose was infused intravenously, (3) isoproterenol was infused with glucose, and (4) infusion of isoproterenol and glucose was preceded by administration of propranolol (the beta-adrenergic blocking agent). The concentration of C-peptide and insulin was determined in plasma from the antecubital vein. It has been found that stimulation of the beta-adrenergic receptors with isoproterenol reduces insulin removal by the human liver. This effect of isoproterenol is prevented by blockade of the beta-adrenergic receptors with propranolol.

Adrenergic beta-Agonists

Triacylglycerol and glycogen contents in the human gastric mucosa: effect of histamine H2, muscarinic and gastrin receptors blockade.

Triacylglycerol and glycogen contents in the gastric mucosa were studied in 20 patients with duodenal ulcer before and after two-week treatment with cimetidine, pirenzepine or proglumide. Determinations of both metabolic substrates were performed in mucosal slices taken from gastric corpus and antrum during endoscopic examination: the results were expressed per mg of protein. Concentrations of triacylglycerol were significantly elevated after treatment with any of the blocking agents: in the gastric corpus by 88% after cimetidine application, 69% after pirenzepine and 102% after proglumide; in the antrum by 76, 59 and 132%, respectively. No significant changes in the mucosal contents of glycogen were observed. It is concluded that an increase in the mucosal concentration of triacylglycerol can be connected with an inhibition of the gastric acid secretion following treatment with receptor-blocking drugs.

Adult

Gastric cancer with special references to WHO and Laurén's classifications: glycogen and triacylglycerol concentrations in the tumor.

In eighty patients with histologically verified gastric carcinoma the concentrations of glycogen and triacylglycerols were evaluated in specimens taken endoscopically from the tumor and the surrounding unchanged gastric mucosa. The results were analyzed in relation to the histological type of carcinoma according to WHO's and Laurén's classifications. The control group consisted of sixteen patients with superficial chronic gastritis. An elevated glycogen concentration was found in tumors of all types of gastric carcinoma; its level in the neoplasm was significantly higher also in relation to unchanged gastric mucosa surrounding the tumor. A particularly high glycogen level was present in the slow growing well-differentiated cancers, e.g. papillary and tubular adenocarcinomas or intestinal-type carcinoma. Reversely, in the fast growing and poorly differentiated cancers, e.g. undifferentiated or diffuse-type carcinoma, the glycogen contents were lower. Also triacylglycerol concentrations in the tumors as well as in the surrounding unchanged gastric mucosa were significantly higher than those in the control gastric mucosa specimens; no significant difference in triacylglycerol concentrations was observed between groups of patients with various types of carcinoma. It was concluded that (1) glycogen concentrations in the neoplastic tissue are cancer-growth related and characteristic for each kind of carcinoma, (2) an elevated triacylglycerol content in the tumor is probably a result of general lipid changes in the host.

Adenocarcinoma