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Biomedical subjects

J Viikari

Publications and source records attributed to J Viikari.

At least 253 records · Page 14Linked to original sources

Serum triglycerides and cholesterol and serum high-density lipoprotein cholesterol in highly physically active men.

The influence of extensive physical activity upon plasma lipids, in particular HDL cholesterol, was investigated. The material consisted of 23 regularly training men (mean age 44 years, average exercise 83 km running or skiing weekly), 15 healthy men (mean age 47 years), 10 young men (mean age 22 years), 12 healthy women (mean age 32 years) and 18 hyperlipidaemic patients. The exercise increased serum HDL cholesterol and FFA concentrations and decreased triglyceride levels significantly, but had no significant effect upon serum cholesterol concentration. There was a positive correlation between the amount of weekly exercise in km and plasma HDL cholesterol concentration. Exercising more than 70 km/week increased plasma HDL concentration clearly above the normal level. The advantages of an increase in plasma HDL cholesterol are discussed.

Adult↗

Elevation of high-density lipoprotein in epileptic patients treated with phenytoin.

Previous observations have shown that serum alpha (high-density) lipoprotein (HDL) cholesterol is increased by some agents which also act as liver microsomal inducers. Against this background we measured the serum HDL and other lipoprotein and apolipoprotein A levels in 28 epileptic patients who received phenytoin as the only medication. In comparison with healthy controls of similar age and sex, the phenytoin users had significantly higher HDL cholesterol (p less than 0.001) and apolipoprotein A-I (p less than 0.01) levels. Highest values of both parameters were found in patients whose serum phenytoin concentration was within the therapeutic range. HDL cholesterol levels were above the control mean +2 S.D. in 43% of the phenytoin users. Hypertriglyceridemia was more common among male phenytoin users than in control males (33 vs. 16%). It is suggested that phenytoin increases the secretion of nascent HDL particles (and probably also that of VLDL) by the liver and that this could be associated with the induction of hepatic microsomes. Since HDL is inversely reversely related to risk of coronary heart disease, the observed increase of this lipoprotein may be an example of a beneficial side-effect of a drug.

Adult↗

The effect of vigorous physical activity at work on serum lipids with a special reference to serum high-density lipoprotein cholesterol.

Serum lipid concentrations of lumberjacks whose occupational physical activity is most vigorous were compared with those of electricians. The lumberjacks had significantly higher serum HDL-cholesterol and significantly lower triglyceride and free fatty acid concentrations but there were no significant differences in total cholesterol levels. The favourable effect of vigorous physical activity at work on lipid metabolism is, however, epidemiologically not seen, obviously due to negative risk factors in lumberjacks' life.

Adult↗

Insulin, growth hormone and catecholamines as regulators of energy metabolism in the course of surgery.

Six patients subjected to major surgery (esophageal resection, group I) and eight patients undergoing moderate surgery (exploratory laparotomy, group II) were investigated in order to study the effects of surgery and glucose infusion on the blood glucose, plasma FFA, serum insulin and growth hormone concentrations as well as on the urinary excretion of adrenaline, noradrenaline and nitrogen. In the patients undergoing esophageal resection, blood samples were taken at short intervals during five 24-hour periods, covering a time span from the second preoperative to the tenth postoperative day. In the case of exploratory laparotomy four such periods up to fifth postoperative day were similarly investigated. For adrenaline, noradrenaline and nitrogen, urine was collected in two 12-hour samples for each 24-hour period in order to roughly estimate the "day" and "night" excretions. The results and conclusions can be summarized as follows: A rapid rise in blood glucose and plasma FFA concentrations occurred after the beginning surgery. The zeniths of the curves were recorded about 4--6 hours after the skin incision in both patient groups, despite the different duration of the operations. This suggests that the regulatory mechanism is spontaneously active for a certain time after being initially triggered. Insulin secretion was usually suppressed 4--5 hours after the beginning of surgery. A marked increase of insulin secretion occurred after this time, the rise of IRI being associated with a fall of BG and FFA. Maximum insulin secretion was recorded during the night after surgery. Because excretion of noradrenaline was maximal during this time in group I, noradrenaline activity is perhaps a less likely explanation of the suppression of insulin. The response of growth hormone secretion to surgery and anesthesia was not uniform. Trauma apparently causes no constant rise, whereas a rather regular elevation of serum GH levels follows the fall in BG and plasma FFA concentrations, In group I there was a decrease of insulin and GH secretion and the number of insulin and GH "peaks" in the postoperative period, possibly reflecting a weakening of central stimuli after major surgery. The same was not always noted in group II, in which the mean secretion of insulin was postoperatively somewhat elevated compared to the preoperative values. Urine analyses revealed no day--night rhythmicity in catecholamine excretion except possibly on the day of operation, when the "day" samples contained absolutely and proportionately more adrenaline than the "night" samples.

Aged↗

Effect of clofibrate and calcium in type II A hyperlipoproteinaemia.

In type II A hyperlipoproteinaemia, treatment with cholestyramine (12 g), calcium clofibrate (2 g) and a combination of calcium clofibrate and calcium carbonate (2 + 2 g) reduced the cholesterol concentration. The combination of calcium and clofibrate was at least as effective as cholestyramine. Calcium clofibrate decreased very low density and low density lipoprotein cholesterol, triglycerides and phospholipids, whereas no changes were found in high density lipoproteins. Cholestyramine decreased low density lipoprotein lipids.

Calcium↗

Effect of hyperlipidaemic diet and clofibrate treatment on rat erythrocyte lipids.

Lipids of rat plasma and erythrocytes were analysed during hyperlipidaemic diet and clofibrate treatment. The diet increased the plasma cholesterol and phospholipid concentrations after 3 weeks' lipid feeding. Clofibrate in a dose of 200 mg/kg body weight did not inhibit the increase in plasma cholesterol and phospholipid contents, but significantly decreased the concentration of plasma triglycerides. The lipid diet slightly increased the erythrocyte cholesterol and phospholipid concentrations without affecting the red cell morphology or reticulocytosis. After 1 week's treatment, clofibrate in a dose of 200 mg/kg body weight caused a 2-fold increase in the cholesterol content and a rise in the cholesterol-phospholipid ratio of red blood cells of rats fed the hyperlipidaemic diet. These results suggest that the erythrocyte cell membrane can increase its cholesterol content and possibly play a role in cholesterol transport.

Animals↗