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Lipoprotein-lipase activity in subcutaneous, adipose tissue in healthy subjects: variation of activity in a population of 60-year-old men.

The lipoprotein-lipase activity (LPLA) in the abdominal, subcutaneous, adipose tissue was studied in a random sample (n = 69) of 60-year-old men. A new method for the quantification of LPLA was applied. The mean value was 67 mU/g when expressed per gram (wet weight) of adipose tissue. Several subjects within the lower part of the range of adipose-tissue LPLA values had low concentrations of serum-triglycerides (S-TG). There was no correlation between the LPLA and S-TG concentrations in the fasting state. Among the 69 subjects, four had newly detected diabetes mellitus and had significantly lower LPLA in the adipose tissue than the control group. The fat-cell size and the LPLA per gram of adipose tissue were not correlated. Thus, obesity without diabetes mellitus does not imply a low LPLA concentration in adipose tissue. The variation of the concentration of adipose-tissue LPLA in the fasting state in this population was explained only to a minor extent by the variation of S-insulin and blood-glucose parameters, when analysed statistically by a stepwise multiple-regression technique.

Abdominal Muscles

Vasodilatation and modulation of vasoconstriction in canine subcutaneous adipose tissue caused by activation of beta-adrenoceptors.

The present experiments were undertaken to study the balance between vascular alpha- and beta-adrenoceptors in canine subcutaneous adipose tissue during sympathetic nerve stimulation and noradrenaline injections. Propranolol potentiated and prolonged the vasoconstrictor response to close i.a. injections of noradrenaline. The vasoconstriction induced by brief nerve stimulation (0.5 to 8 Hz) was, however, unaltered by the beta-adrenoceptor blockade. During prolonged nerve stimulation the vasoconstrictor response was well maintained at 1.5 Hz but at 4 Hz there was a gradual escape. The escape phenomenon at 4 Hz was diminished by propranolol. The beta1-selective antagonist practolol, like propranolol, potentiated and prolonged the vasoconstriction induced by noradrenaline injections and reduced the vasoconstrictor escape during prolonged nerve stimulation at 4 Hz. Furthermore, the vasodilatation induced by noradrenaline injection or nerve stimulation during alpha-adrenoceptor blockade was diminished by practolol. Practolol also blocked the lipolytic response to noradrenaline and nerve stimulation. The beta2-selective antagonist H35/25 blocked the effects of the beta2-selective agonist salbutamol but failed to alter noradrenaline as well as nerve stimulation induced vascular and lipolytic beta-adrenoceptor responses. The present results provide further support for the hypothesis that vascular beta-adrenoceptors in adipose tissue are humoral (noninnervated), preferentially activated by circulating noradrenaline. Moreover, both vascular and lipolytic beta-adrenoceptors activated by noradrenaline in adipose tissue are best classified as beta1-adrenoceptors.

Adipose Tissue

Metabolism of mono- and diacylglycerols in subcutaneous adipose tissue of obese and normal-weight subjects.

Tissue monoacylglycerols (MG), diacylglycerols (DG), free fatty acids (FFA), and cyclic AMP (cAMP) and release of FFA and glycerol have been studied in vitro in subcutaneous adipose tissue of 6 obese and 7 normal-weight subjects. The tissue was incubated without or with 6 X 10(-5) mol/l of isoprenaline (ISNA). The DG level and the fat cell volume were strongly interrelated (r=+0.95, p less than 0.001). The concentration of DG was increased (p less than 0.05) in obesity. The changes in DG and MG were significantly interrelated (r=+0.65, p less than 0.05) during basal incubation. ISNA increased the DG concentration in a way that was correlated (r=+0.81, p less than 0.001) with the ISNA-induced glycerol release. This indicates that 1) the basal metabolic activities of MG and DG lipase are similar and 2) DG lipase is an important rate limiting factor in lipolysis. Without ISNA, tissue FFA and the release of FFA and glycerol were significantly increased in the obese patients. As a mean, MG and DG did not accumulate in the basal state in the two patient groups. The findings indicate that basal lipolysis was increased in obesity. This was probably due to increased basal metabolic activity of triacylglycerol lipase, since the basal cAMP levels were similar in the two patient groups. In the presence of ISNA, the production of FFA and the glycerol release were similar in both patient groups, as was the increase in tissue DG. Also the ISNA-induced maximal level of cAMP was similar in the two groups. With ISNA, a small increment of MG was observed in adipose tissue of the normal-weight subjects. Taking all metabolites into account, the rate of lipolysis as well as the activation of triacylglycerol lipase via cAMP in the presence of ISNA appeared to be unaltered in obesity. Separate experiments with 1-14C-glycerol provided further evidence for the existence of a MG pathway for the esterification of FFA.

Adipose Tissue

Effects of p-chlorophenoxyisobutyrate on free fatty acid mobilization from canine subcutaneous adipose tissue in situ.

1. The mechanism whereby p-chlorophenoxyisobutyrate (CPIB) lowers plasma non-esterified fatty acid concentrations has been studied in dogs by measuring the associated changes in adipose tissue metabolism. 2. CPIB lowered arterial concentrations of non-esterified fatty acids during isoprenaline infusion by a mean value of 41%. 3. This was accompanied by a proportionate decrease (45%) in the release of non-esterified fatty acids from subcutaneous adipose tissue in situ, and by a lesser reduction (22%) in than of glycerol. 4. Adipose tissue blood flow was unchanged by CPIB. 5. These findings indicate that the lowering effect of CPIB on non-esterified fatty acid concentrations derives principally from decreased mobilization rather than from increased tissue uptake of the fatty acids, and that this reflects both inhibited lipolysis and enhanced re-esterification of the fatty acids in adipose tissue.

Adipose Tissue

Site differences in the fatty acid composition of subcutaneous adipose tissue of obese women.

1. Adipose tissue samples were obtained by needle biopsy from three subcutaneous sites (thigh, abdomen and upper arm) in twenty-two obese women. The fatty acid composition was determined using gas-liquid chromatography and the results presented relate to eleven component fatty acids. 2. The fatty acid composition of adipose tissue obtained from the arm and abdomen was remarkably similar, with the exception of the levels of lauric acid. 3. The analyses showed that the majority of the saturated fatty acids were present in smaller proportions whilst the majority of unsaturated fatty acids were present in larger proportions in the thigh than in the two other sites. Highly significant inter-site differences were demonstrated for six of the major fatty acids and also for both the total amounts of saturated and unsaturated fatty acids and their ratios. 4. No marked differences in the fatty acid composition of adipose tissue from obese subjects were revealed during this study when compared with previously reported results obtained from 'normal-weight' subjects.

Abdomen

[Study of atherosclerosis in different geographical zones of the Soviet Union. 1. Comparative study of fatty acid composition of subcutaneous adipose tissue].

Gas-liquid chromatography was used for the study of the fat-acid composition of the subcutaneous tissue in males, aged 20 to 70 years, who had died in accidents. The investigation was conducted in the cities of Samarkand, Tashkent, Riga and Moscow. A significantly higher relative level of linoleic acid in the subcutaneous tissue of the native population of Central Asia than in the non-native residents of the same regions was found (19.4 and 13.7%, respectively). It is accounted for by a high consumption of cotton oil rich in linoleic acid by the native population of Uzbekistan. No significant differences in the proportion of linoleic, oleic and other fatty acids in the adipose tissue of the Russian population of Samarkand and Tashkent, as well as Riga and Moscow were found. No differences were either found in the composition of the adipose tissue of the native and non-native residents of Riga. The lower incidence of atherosclerosis among the native population of Central Asia in comparison with the non-native population of the same region and the population of the Baltic region is emphasized.

Adipose Tissue

Distribution of m-xylene to subcutaneous adipose tissue in short-term experimental human exposure.

When volunteers were exposed in three different patterns of exposure to approximately 3.7--8.2 mumol/l (90--200 ppm, constant or time-weighted average concentration) of m-xylene for five consecutive days plus one day after the weekend, approximately 3.7--8.0% of the total body uptake was estimated to be distributed to the adipose tissue on the basis of m-xylene determinations made from subcutaneous fat. Distribution seemed to be affected by the exposure pattern; a proportionately greater distribution to subcutaneous fat occurred when the volunteers performed physical exercise part of the time, particularly when the peak xylene concentrations in the air coincided with the exercise. The median elimination half-time of m-xylene from subcutaneous fat was 58 h (range 25--128 h). A positive correlation was found between the individual elimination half-times of m-xylene in subcutaneous fat and the relative fat mass of the individuals in two exposure groups, but not in one.

Adipose Tissue

[Fat of the subcutaneous adipose tissue in spontaneous panniculitisi (Weber-Christian disease)].

Histochemical investigations of fat in nodes of lesions of the subcutaneous fatty tissue in 25 patients with spontaneous panniculitis were carried out. It was shown that the disease was not accompanied by accumulation in the subcutaneous fatty tissue of such lipids as cholesterol, phosphoglycerides or glycolipids. Changes in triglycerides with formation of fatty acids were observed in fatty cells already in the presence of a developed cellular reaction in the subcutaneous fatty tissue and apparently could not be considered as a trigger mechanism in pathogenesis of spontaneous panniculitis. The revealing of aldehydes and lipids in fatty cells and in lipophages may indicate to an oxidative character of the processes developing in fat in spontaneous panniculitis. A suggestion is put forward that in pathogenesis of panniculitis a certain role could be played by an impairment of oxidation processes of fat with excessive accumulation of peroxides of lipids.

Adipose Tissue

Enzymes regulating glycogen metabolism in swine subcutaneous adipose tissue. I. Phosphorylase and phosphorylase phosphatase.

Glycogen phosphorylase from swine adipose tissue was purified nearly 700-fold using ethanol precipitation, DEAE-cellulose adsorption, AMP-agarose affinity chromatography, and agarose gel filtration. The purified enzyme migrated as one major and several minor components during polyacrylamide gel electrophoresis. Activity was associated with the major component and at least one of the minor components. The molecular weight of the disaggregated, reduced, and alkylated enzyme, estimated by polyacrylamide gel electrophoresis performed in the presence of sodium dodecyl sulfate, was 90,000. Stability of the purified enzyme was considerably increased in the presence of AMP. The isoelectric pH of the enzyme in crude homogenates was 6.3. The sedimentation coefficient of the purified enzyme (7.9 S) and that in crude homogenates (7.3 S) was determined by sucrose density gradient sedimentation. Optimal pH for activity was between pH 6.5 and 7.1. Apparent Km values for glycogen and inorganic phosphate were 0.9 mg/ml and 6.6 mM, respectively. The Ka for AMP was 0.21 mM. Enzyme activity was increased by K2SO4, KF, KCl, and MgCl2 and decreased by NaCl, Na2SO4, D-glucose, and ATP. Inhibition by glucose was noncompetitive with the activator AMP; inhibition by ATP was partially competitive with AMP. The purified enzyme was activated by incubation with skeletal muscle phosphorylase kinase. Enzyme in crude homogenates was activated by the addition of MgCl2 and ATP; activation was not blocked by addition of protein kinase inhibitor, suggesting that phosphorylase kinase in homogenates of swine adipose tissue is present largely in an activated form. Deactivation of phosphorylase a by phosphorylase phosphatase was studied using enzyme purified approximately 200-fold from swine adipose tissue by ethanol precipitation, DEAE-cellulose chromatography, and gel filtration. The Km of the adipose tissue phosphatase for skeletal muscle phosphorylase a was 6 muM. The purified swine adipose tissue phosphorylase, labeled with 32-P, was inactivated and dephosphorylated by the adipose tissue phosphatase. Dephosphorylation of both skeletal muscle and adipose tissue substrates was inhibited by AMP and glucose reversed this inhibition. Several lines of evidence suggest that AMP inhibition was due to an action on the substrate rather than on the enzyme. We have previously reported that the system for phosphorylase activation in rat fat cells differs in some important characteristics from that in skeletal muscle. However, both swine fat phosphorylase and phosphorylase phosphatase have major properties very similar to those described for the enzymes from skeletal muscle.

Adenosine Monophosphate

Enzymes regulating glycogen metabolism in swine subcutaneous adipose tissue. II. Glycogen synthase.

Glycogen synthase from swine adipose tissue was purified to apparent homogeneity using ethanol precipitation, DEAE chromatography, and affinity chromatography utilizing glucosamine 6-phosphate as the ligand. The purified enzyme migrated as a single protein component during electrophoresis on polyacrylamide gels at pH 7.3 although some protein failed to enter the running gel. Enzyme incubated with sodium dodecyl sulfate (SDS) migrated as one component (mol wt similar to 90,000) on SDS-polyacrylamide gel electrophoresis. The enzyme was relatively unstable at all stages of the purification procedure, but stability was increased in the presence of glucose 6-phosphate, UDPG, or glycerol. The isoelectric point of the purified enzyme and of enzyme activity in crude homogenates was pH 4.8. The sedimentation coefficient of the enzyme in crude homogenates was 8.5 S. The pH-activity profile showed an optimum at pH 7.8 in the absence of glucose 6-phosphate but no definable optimum between pH 7.0 and 9.2 in its presence. The Km of glycogen synthase I for UDPG was 250 muM in the absence and 37 muM in the presence of glucose 6-phosphate; the K-a for glucose 6-phosphate was 18 mu-M. The K-m of glycogen synthase D for UDPG was 130 mu-M in the presence of glucose 6-phosphate; the Ka for glucose 6-phosphate was 1 mM. The anions sulfate and phosphate activated the enzyme when assays were performed in the absence of glucose 6-phosphate. Fluoride produced activation of enzyme assayed either in the presence or in the absence of glucose 6-phosphate.

Adipose Tissue

Effect of human chorionic gonadotropin on blood free fatty acids, glucose and on the release of free fatty acids from subcutaneous adipose tissue in various groups of newborn and adults.

After administration of human chorionic gonadotropin (HCG; 500 IU/kg intramuscularly), the blood concentration of free fatty acids increases within 30 min in 1-day-old full-term, premature and small-for-data newborns. This effect does not appear in 1-day-old newborns of diabetic mothers with insulin-dependent diabetes, in 7-day-old newborns nor in adults. Glucose concentration rises in all groups of newborns, and no effect is observed in adults. In the in vitro study, HCG increases lipolysis in newborns' adipose tissue. This effect was not observed in adults.

Adipose Tissue

Activity of some enzymes of carbohydrate metabolism in human subcutaneous adipose tissue in newborns, infants and adults. I. Activity of pyruvate kinase, lactate dehydrogenase, glucose-6-phosphate dehydrogenase and phosphogluconate dehydrogenase.

The activity of glucose-6-phosphate dehydrogenase, phosphogluconate dehydrogenase, pyruvate kinase (PK) and lactate dehydrogenase (LDH) was measured in human adipose tissue (AT) of newborns aged 0-2 and 2-48 h, of 3- to 5-month-old infants and of adults. AT was sampled by means of a special needle from the gluteal region without anesthesia. We observed significantly higher activity of the two pentose phosphate shunt enzymes when calculated on protein content and wet weight basis in newborns as compared to infants and adults. There were no differences for PK and LDH between newborns and adults when the values were calculated for the soluble protein. The protein concentration of the AT decreased significantly during the development.

Adipose Tissue

Mechanisms for inhibition of free fatty acid mobilization by nicotinic acid and sodium salicylate in canine subcutaneous adipose tissue in situ.

Mechanisms for reduced free fatty acids (FFA) mobilization effected by nicotinic acid (NA) and sodium salicylate (SS) were studied in canine adipose tissue in situ. Both drugs inhibited adipose tissue lipolysis as evidenced by reduced release of glycerol. In addition, although the total amount of FFA re-esterified was not significantly changed, the amount of FFA re-esterified relative to the amount of FFA liberated intracellularly was significantly increased by both drugs. These effects were most pronounced during isoprenaline-stimulated lipolysis. Thus NA and SS reduced mobilization of FFA from canine adipose tissue through a combined effect on re-esterification and lipolysis.

Adipose Tissue