4
Views
8
CrossRef citations to date
0
Altmetric
Original Article

Oxidation of Palmitate by Human Skeletal Muscles in Vitro Method and Normal Values

, &
Pages 413-418 | Received 18 Oct 1974, Accepted 10 Mar 1975, Published online: 28 Aug 2009

References

  • Andres R., Cader G., Zeiler K. The quantitatively minor role of carbohydrate in oxidative metabolism by skeletal muscle in intact man in the basal state. Measurements of oxygen and glucose uptake and carbon dioxide and lactate production in the forearm. J. clin. Invest. 1956; 35: 671
  • Baldwin K. M., Klinkerfuss G. H., Terjung R. L., Molé P. A., Holloszy J. O. Respiratory capacity of white, red and intermediate muscle: adaptive response to exercise. Amer. J. Physiol. 1972; 222: 373
  • Barnard R. J., Peter J. R. Effect of training and exhaustion on hexokinase activity of skeletal muscle. Biochemical and histochemical properties. J. appl. Physiol. 1970; 28: 762
  • Bass A., Brdiczka D., Eyer P., Hofer S., Pette D. Metabolic differentiation of distinct muscle types at the level of enzymatic organization. Europ. J. Biochem. 1969; 10: 198
  • Carlson L. A. Determination of serum glyce-rides. Acta Soc. Med. upsalien. 1959; 64: 208
  • Ann-Gret Bjø Dahllöf, Urntorp P., Holm J., Schersten T. Metabolic activity of skeletal muscle in patients with peripheral arterial insufficiency. Effect of physical training. Europ. J. clin. Invest. 1974; 4: 9
  • Dole V. P. A relation between non-esterified fatty acids in plasma and the metabolism of glucose. J. clin. Invest. 1956; 35: 150
  • Frayn K. N., Adnitt P. I., Turner P. The use of human skeletal muscle in vitro for biochemical and pharmacological studies of glucose uptake. Clin. Sci. 1973; 44: 55
  • Fritz I., Davies D., Holltorp R., Dundee H. Fatty acid oxidation by skeletal muscle during rest and activity. Amer. J. Physiol. 1958; 194: 379
  • Goodman D. S. The interaction of human serum albumin with long-chain fatty acid anions. J. Amer. chem. Soc. 1958; 80: 3892
  • Hagenfeldt J., Wahren J., Pernow B., Crone-Strand R., Ekeström S. Free fatty acid metabolism of leg muscles during exercise in patients with obliterative iliac and femoral artery disease before and after reconstructive surgery. J. clin. Invest. 1972; 51: 3061
  • Havel R. J., Naimark A., Borchgrevink C. F. Turnover rate and oxidation of free fatty acids in the blood plasma in man during exercise. Studies during continuous infusion of palmitate-1-14C. J. clin. Invest. 1963; 42: 1054
  • Havel R. J., Pernow B., Jones N. L. Uptake and release of free fatty acids and other metabolites in legs of exercising man. J. appl. Physiol. 1967; 23: 90
  • Holloszy J. O. Biochemical adaption in muscle. Effects of exercise on mitochondrial oxygen uptake and respiratory enzyme activity in skeletal muscle. J. biol. Chem. 1967; 242: 2278
  • Holm J. Skeletal muscle metabolism with peripheral arterial insufficiency. Thesis, 1972
  • Holm J., Björntorp P., Schersten T. Metabolic activity in human skeletal muscle. Effect of peripheral arterial insufficiency. Europ. J. clin. Invest. 1972; 2: 321
  • Holm J., Dahllöf Ann-Gret, Scherstén T. Metabolic activity of skeletal muscle in patients with peripheral arterial insufficiency. Effect of arterial reconstructive surgery. Scand. J. clin. Lab. Invest. 1975; 35: 81
  • Holm J., Schersten T. In vitro metabolism of glucose by human skeletal muscle. Method and normal values. Scand. J. clin. Lab. Invest. 1972; 29: 99
  • Holm J., Scherstén T. Metabolic changes in skeletal muscle after physical conditioning and in arterial insufficiency. Swed. J. Defence Med. 1974; 2: 71
  • Kiessling K. H., Piehl K., Lundquist C. G. Effect of physical training on ultrastructural features in human skeletal muscle. Muscle Metabolism during Exercise, B. Pernow, B. Saltin. Plenum Press, New York 1971; 97
  • Lundholm K., Bylund, Ann-Christin, Holm J., Smeds S., Schersten T. Metabolic studies in human skeletal muscle tissue. Evaluation of an in vitro preparation intended for clinical metabolic studies. Europ. Surg. Res. 1975; 7: 65
  • Masoro E. J. Physiological Chemistry of Lipids in Mammals. W. B. Saunders Co., Philadelphia 1968; 214
  • Masoro E. J., Roweell L. B., McDonald R. N., Steiert B. Skeletal muscle lipids. Non-utilization of intracellular lipid esters as an energy source for contractile activity. J. biol. Chem. 1966; 241: 2626
  • Molé P. A., Oscai L. B., Holloszy J. O. Adaptation of muscle to exercise. Increase in levels of palmityl-CoA synthetase, carnitine-palmityl-transferase and palmityl-CoA dehydrogenase in the capacity to oxidize fatty acids. J. clin. Invest. 1971; 50: 2323
  • Morgan T. E., Short F. A., Cobb L. A. Alterations in human skeletal muscle, lipid composition and metabolism induced by physical conditioning. Medicine and Sport, E. Jokl. Karger, Basel/New York 1969; vol. III: 116
  • Nilsson S., Schersten T. Importance of bile acids for phospholipid secretion into human hepatic bile. Gastroenterology 1969; 57: 525
  • Nolte J., Pette D., Bachmaier B., Kiefhaber P., Schneider H., Seriba P. C. Enzyme response to thyrotoxicosis and hypothyroidism in human liver and muscle: comparative aspects. Europ. J. clin. Invest. 1972; 2: 141
  • Paul P., Issekutz B. Role of extramuscular energy sources in the metabolism of the exercising dog. J. appl. Physiol. 1967; 22: 612
  • Rannels E., Hjalmarson A., Morgan H. Effects of noncarbohydrate substrates on protein synthesis in muscle. Amer. J. Physiol. 1974; 226: 528
  • Sperry W. N., Webb N. A. A revision of the Schoenheimer-Sperry method for cholesterol determination. J. biol. Chem. 1950; 187: 97
  • Svennerholm L., Vanier M. T. The distribution of lipids in human nervous system. II. Lipid composition of human fetal and infant brain. Brain Res. 1972; 47: 457
  • Taylor A. V., Thaier R., Row S. Human skeletal muscle glycogen synthetase activity with exercise and training. Canad. J. Physiol. Pharmacol. 1972; 50: 411
  • Trout D. L., Estes E. H., Friedberg J. S. Titration of free fatty acids of plasma: a study of current method and a new modification. J. Lipid Res. 1960; 1: 199
  • Wahren I., Ahlborg G., Felig P., Jorfeldt L. Glucose metabolism during exercise in man. Muscle Metabolism during Exercise, B. Pernow, B. Saltin. Plenum Press, New York 1971; 189
  • Varnauskas E., Björntorp P., Fahlén M., Prerowsky I., Stenberg I. Effects of physical training on exercise, blood flow and enzymatic activity in skeletal muscle. Cardiov. Res. 1970; 4: 418

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.