Marked reutilization of free fatty acids during activated lipolysis in human skeletal muscle.
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P. Arner | J. Permert | B. Isaksson | C. Holm | J. Bolinder | S. Enoksson | E. Hagström-Toft | J. Nordahl | K. Hultenby | N. Pettersson | R. Wibom
[1] A. Jeukendrup,et al. Fat Metabolism During Exercise: A Review - Part II: Regulation of Metabolism and the Effects of Training , 1998, International journal of sports medicine.
[2] S. Rössner,et al. Catecholamine resistance in fat cells of women with upper-body obesity due to decreased expression of beta2-adrenoceptors , 1994, Diabetologia.
[3] P. Arner,et al. Action of glucagon and glucagon-like peptide-1-(7-36) amide on lipolysis in human subcutaneous adipose tissue and skeletal muscle in vivo. , 2001, The Journal of clinical endocrinology and metabolism.
[4] D. Langin,et al. Species-specific alternative splicing generates a catalytically inactive form of human hormone-sensitive lipase. , 1997, The Biochemical journal.
[5] M. Jensen,et al. Blood Glycerol Is an Important Precursor for Intramuscular Triacylglycerol Synthesis* , 1999, The Journal of Biological Chemistry.
[6] F. Reinholt,et al. Chondroclasts and Osteoclasts in Bones of Young Rats: Comparison of Ultrastructural and Functional Features , 1998, Calcified Tissue International.
[7] W. K. Palmer,et al. Lipase regulation of muscle triglyceride hydrolysis. , 1990, Journal of applied physiology.
[8] S. Rössner,et al. Evidence for a major role of skeletal muscle lipolysis in the regulation of lipid oxidation during caloric restriction in vivo. , 2001, Diabetes.
[9] E. Kraegen,et al. Influence of Dietary Fat Composition on Development of Insulin Resistance in Rats: Relationship to Muscle Triglyceride and ω-3 Fatty Acids in Muscle Phospholipid , 1991, Diabetes.
[10] A. Häkkinen,et al. Intramyocellular lipid is associated with resistance to in vivo insulin actions on glucose uptake, antilipolysis, and early insulin signaling pathways in human skeletal muscle. , 2001, Diabetes.
[11] B. Danielsson,et al. Domain-structure analysis of recombinant rat hormone-sensitive lipase. , 1996, The Biochemical journal.
[12] F. Reinholt,et al. Ultrastructural immunolocalization of osteopontin in metaphyseal and cortical bone. , 1991, Matrix.
[13] M. Elam,et al. Regulation and counterregulation of lipolysis in vivo: different roles of sympathetic activation and insulin. , 2003, The Journal of clinical endocrinology and metabolism.
[14] J. Horowitz,et al. Lipid metabolism during endurance exercise. , 2000, The American journal of clinical nutrition.
[15] M. Kjaer,et al. Hormone-sensitive lipase (HSL) expression and regulation in skeletal muscle. , 1998, Advances in experimental medicine and biology.
[16] F. Lönnqvist,et al. Catecholamine-induced lipolysis in adipose tissue of the elderly. , 1990, The Journal of clinical investigation.
[17] F. Lönnqvist,et al. A pathogenic role of visceral fat beta 3-adrenoceptors in obesity. , 1995, The Journal of clinical investigation.
[18] P. Arner,et al. Release of small amounts of free fatty acids from human adipocytes as determined by chemiluminescence. , 1993, Journal of lipid research.
[19] G. Dohm,et al. An in vitro human muscle preparation suitable for metabolic studies. Decreased insulin stimulation of glucose transport in muscle from morbidly obese and diabetic subjects. , 1988, The Journal of clinical investigation.
[20] R. Zechner,et al. Hormone-sensitive Lipase Deficiency in Mice Causes Diglyceride Accumulation in Adipose Tissue, Muscle, and Testis* , 2002, The Journal of Biological Chemistry.
[21] A. Kimmel,et al. On the Control of Lipolysis in Adipocytes , 1999, Annals of the New York Academy of Sciences.
[22] J. Kirkland,et al. Adipogenesis and aging: does aging make fat go MAD? , 2002, Experimental Gerontology.
[23] B. Goodpaster,et al. Role of muscle in triglyceride metabolism. , 1998, Current opinion in lipidology.
[24] L. Hagenfeldt,et al. Measurement of ATP production and respiratory chain enzyme activities in mitochondria isolated from small muscle biopsy samples. , 2002, Analytical biochemistry.
[25] P. Arner,et al. Automatic luminometric kinetic assay of glycerol for lipolysis studies. , 1989, Analytical biochemistry.
[26] K. Tokuyasu. A TECHNIQUE FOR ULTRACRYOTOMY OF CELL SUSPENSIONS AND TISSUES , 1973, The Journal of cell biology.
[27] C. Holm,et al. Molecular mechanisms regulating hormone-sensitive lipase and lipolysis. , 2003, Annual review of nutrition.
[28] S. Reynisdottir,et al. Mechanisms Involved in the Regulation of Free Fatty Acid Release from Isolated Human Fat Cells by Acylation-stimulating Protein and Insulin* , 1999, The Journal of Biological Chemistry.
[29] D. Galuska,et al. Decreased insulin-stimulated 3-0-methylglucose transport in in vitro incubated muscle strips from type II diabetic subjects. , 1991, Acta physiologica Scandinavica.
[30] Min-Seon Kim,et al. Lipolysis in skeletal muscle is decreased in high-fat-fed rats. , 2003, Metabolism: clinical and experimental.