Home LiteratureArticle Details
PMID: 3301899 Published · ppublish English Comparative Study Journal Article

Skeletal muscle capillary density and fiber type are possible determinants of in vivo insulin resistance in man.

The Journal of clinical investigation ·Vol. 80 ·No. 2 ·1987-08-00 ·Pages 415-24

Lillioja S, Young AA, Culter CL, Ivy JL, Abbott WG, Zawadzki JK, Yki-Järvinen H, Christin L, Secomb TW, Bogardus C

Abstract

We have compared the capillary density and muscle fiber type of musculus vastus lateralis with in vivo insulin action determined by the euglycemic clamp (M value) in 23 Caucasians and 41 Pima Indian nondiabetic men. M value was significantly correlated with capillary density (r = 0.63; P less than or equal to 0.0001), percent type I fibers (r = 0.29; P less than 0.02), and percent type 2B fibers (r = -0.38; P less than 0.003). Fasting plasma glucose and insulin concentrations were significantly negatively correlated with capillary density (r = -0.46, P less than or equal to 0.0001; r = -0.47, P less than or equal to 0.0001, respectively). Waist circumference/thigh circumference ratio was correlated with percent type 1 fibers (r = -0.39; P less than 0.002). These results suggest that diffusion distance from capillary to muscle cells or some associated biochemical change, and fiber type, could play a role in determining in vivo insulin action. The association of muscle fiber type with body fat distribution may indicate that central obesity is only one aspect of a more generalized metabolic syndrome. The data may provide at least a partial explanation for the insulin resistance associated with obesity and for the altered kinetics of insulin action in the obese.

MeSH Terms
Adipose Tissue/physiology Capillaries/anatomy & histology Fasting Humans Indians, North American Insulin/blood Insulin Resistance Muscles/blood supply,physiology Obesity/physiopathology Whites
Chemicals
Insulin
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Lillioja S
Young A A
Culter C L
Ivy J L
Abbott W G
Zawadzki J K
Yki-Järvinen H
Christin L
Secomb T W
Bogardus C
References (50)
50 references, click to expand
  1. In vivo kinetics of insulin action on peripheral glucose disposal and hepatic glucose output in normal and obese subjects.
    J Clin Invest. 1986 Aug;78(2):472-81 PMID: 3525609
  2. Myosin isozyme distribution in rodent hindlimb skeletal muscle.
    J Appl Physiol (1985). 1986 Jun;60(6):1923-31 PMID: 2941406
  3. The number and distribution of capillaries in muscles with calculations of the oxygen pressure head necessary for supplying the tissue.
    J Physiol. 1919 May 20;52(6):409-15 PMID: 16993405
  4. Chronic hyperglycemia is associated with impaired glucose influence on insulin secretion. A study in normal rats using chronic in vivo glucose infusions.
    J Clin Invest. 1986 Mar;77(3):908-15 PMID: 3512603
  5. Skeletal muscle fibres and muscle enzyme activities in monozygous and dizygous twins of both sexes.
    Acta Physiol Scand. 1977 Aug;100(4):385-92 PMID: 199045
  6. The specificity of the histochemical method for adenosine triphosphatase.
    J Histochem Cytochem. 1955 May;3(3):170-95 PMID: 14381606
  7. Muscle fibre type populations of human leg muscles.
    Histochem J. 1975 May;7(3):259-66 PMID: 123895
  8. Distribution and binding of insulin in the dog hindlimb.
    Am J Physiol. 1971 Dec;221(6):1672-80 PMID: 4330902
  9. Enzyme patterns in single human muscle fibers.
    J Biol Chem. 1978 Nov 25;253(22):8269-77 PMID: 152314
  10. Immunoassay of endogenous plasma insulin in man.
    J Clin Invest. 1960 Jul;39:1157-75 PMID: 13846364
  11. Reduced hepatic insulin extraction in obesity: relationship with plasma insulin levels.
    J Clin Endocrinol Metab. 1983 Mar;56(3):608-11 PMID: 6337182
  12. The effect of chronic sulfonylurea therapy on hepatic glucose production in non-insulin-dependent diabetes.
    Diabetes. 1982 Apr;31(4 Pt 1):333-8 PMID: 6759249
  13. Heterogeneity of insulin action in muscle: influence of blood flow.
    Am J Physiol. 1986 Oct;251(4 Pt 1):E422-30 PMID: 3532818
  14. Lean body mass in obesity.
    Int J Obes. 1983;7(2):99-107 PMID: 6862762
  15. The effect of insulin on the disposal of intravenous glucose. Results from indirect calorimetry and hepatic and femoral venous catheterization.
    Diabetes. 1981 Dec;30(12):1000-7 PMID: 7030826
  16. The ultrastructure of the cardiac Purkinje strand in the dog: a morphometric analysis.
    Proc R Soc Lond B Biol Sci. 1983 Jan 22;217(1207):191-213 PMID: 6132390
  17. Metabolic profiles of three fiber types of skeletal muscle in guinea pigs and rabbits.
    Biochemistry. 1972 Jul 4;11(14):2627-33 PMID: 4261555
  18. Data on the distribution of fibre types in thirty-six human muscles. An autopsy study.
    J Neurol Sci. 1973 Jan;18(1):111-29 PMID: 4120482
  19. Effects of endurance training on muscle fibre ATP-ase activity, capillary supply and mitochondrial content in man.
    J Physiol. 1979 Sep;294:419-32 PMID: 159945
  20. Relationship between skeletal muscle insulin resistance, insulin-mediated glucose disposal, and insulin binding. Effects of obesity and body fat topography.
    J Clin Invest. 1984 Oct;74(4):1515-25 PMID: 6148358
  21. Hyperinsulinemia of obesity is due to decreased clearance of insulin.
    Am J Physiol. 1983 Aug;245(2):E155-9 PMID: 6349380
  22. Relationship between degree of obesity and in vivo insulin action in man.
    Am J Physiol. 1985 Mar;248(3 Pt 1):E286-91 PMID: 3883799
  23. Variability of histochemical and morphometric data from needle biopsy specimens of human quadriceps femoris muscle.
    J Neurol Sci. 1984 Jan;63(1):85-100 PMID: 6230417
  24. Forearm glucose uptake during the oral glucose tolerance test in normal subjects.
    Diabetes. 1973 Jun;22(6):442-58 PMID: 4713669
  25. Body weight, skeletal muscle morphology, and enzyme activities in relation to fasting serum insulin concentration and glucose tolerance in 48-year-old men.
    Diabetes. 1981 Jan;30(1):19-25 PMID: 7014301
  26. Coupling between dietary changes, reduced body weight, muscle fibre size and improved glucose tolerance in middle-aged men with impaired glucose tolerance.
    Acta Med Scand. 1982;212(3):99-106 PMID: 6756050
  27. The sizes and numbers of cells in visceral organs in human obesity.
    Am J Clin Pathol. 1970 Aug;54(2):251-3 PMID: 5453216
  28. Insulin dose-response characteristics among individual muscle and adipose tissues measured in the rat in vivo with 3[H]2-deoxyglucose.
    Diabetes. 1984 Feb;33(2):153-9 PMID: 6363169
  29. Influences of glucose loading and of injected insulin on hepatic glucose output.
    Ann N Y Acad Sci. 1959 Sep 25;82:420-30 PMID: 13833973
  30. Glucose storage is a major determinant of in vivo "insulin resistance" in subjects with normal glucose tolerance.
    J Clin Endocrinol Metab. 1986 May;62(5):922-7 PMID: 3514652
  31. Heterogeneity of insulin action in individual muscles in vivo: euglycemic clamp studies in rats.
    Am J Physiol. 1985 May;248(5 Pt 1):E567-74 PMID: 3887942
  32. Sexuality after stroke with hemiplegia. I. Aspects of sexual function.
    Scand J Rehabil Med. 1983;15(2):55-61 PMID: 6867636
  33. Splanchnic and peripheral disposal of oral glucose in man.
    Diabetes. 1983 Jul;32(7):675-9 PMID: 6862113
  34. Relationship between obesity and maximal insulin-stimulated glucose uptake in vivo and in vitro in Pima Indians.
    J Clin Invest. 1984 Mar;73(3):800-5 PMID: 6368588
  35. The displacement of insulin from blood capillaries.
    Diabetologia. 1969 Dec;5(6):416-9 PMID: 5372895
  36. Passage of insulin and inulin across vascular membranes in the dog.
    Diabetes. 1968 Nov;17(11):668-72 PMID: 5687342
  37. An adoption study of human obesity.
    N Engl J Med. 1986 Jan 23;314(4):193-8 PMID: 3941707
  38. Capillary density in skeletal muscle of man.
    Acta Physiol Scand. 1975 Oct;95(2):203-5 PMID: 127508
  39. Coated charcoal immunoassay of insulin.
    J Clin Endocrinol Metab. 1965 Oct;25(10):1375-84 PMID: 5320561
  40. New morphological evidence for a mechanism of lymph formation in skeletal muscle.
    Microvasc Res. 1984 Jul;28(1):95-112 PMID: 6748962
  41. Glucose clamp technique: a method for quantifying insulin secretion and resistance.
    Am J Physiol. 1979 Sep;237(3):E214-23 PMID: 382871
  42. Capillary supply of the quadriceps femoris muscle of man: adaptive response to exercise.
    J Physiol. 1977 Sep;270(3):677-90 PMID: 198532
  43. The capillary barrier to circulating insulin.
    Diabetes Care. 1982 May-Jun;5(3):158-61 PMID: 6756835
  44. Effect of differences in glucose tolerance on insulin's ability to regulate carbohydrate and free fatty acid metabolism in obese individuals.
    J Clin Endocrinol Metab. 1986 Jun;62(6):1081-8 PMID: 3517028
  45. Body fat in adult man.
    Physiol Rev. 1953 Jul;33(3):245-325 PMID: 13088292
  46. The third phase of in vitro insulin secretion. Evidence for glucose insensitivity.
    Diabetes. 1986 Mar;35(3):370-3 PMID: 3512347
  47. Relationships between insulin secretion, insulin action, and fasting plasma glucose concentration in nondiabetic and noninsulin-dependent diabetic subjects.
    J Clin Invest. 1984 Oct;74(4):1238-46 PMID: 6384267
  48. Muscle capillary supply and fiber type characteristics in weight and power lifters.
    J Appl Physiol Respir Environ Exerc Physiol. 1984 Jan;56(1):35-8 PMID: 6693333
  49. Enhanced muscle glucose metabolism after exercise: modulation by local factors.
    Am J Physiol. 1984 Jun;246(6 Pt 1):E476-82 PMID: 6430094
  50. Hyperglycaemia as an inducer as well as a consequence of impaired islet cell function and insulin resistance: implications for the management of diabetes.
    Diabetologia. 1985 Mar;28(3):119-21 PMID: 3888754
Article Info
Journal
The Journal of clinical investigation
Abbr.
J Clin Invest
ISSN
0021-9738
Published
1987-08-00
Pages
415-24
Language
English
Region
United States
NLM ID
7802877
PMCID
PMC442253
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com