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Published in: Diabetologia 3/2013

01-03-2013 | Article

Postprandial microvascular function deteriorates in parallel with gradual worsening of insulin sensitivity and glucose tolerance in men with the metabolic syndrome or type 2 diabetes

Authors: R. E. van Genugten, E. H. Serné, M. W. Heymans, D. H. van Raalte, M. Diamant

Published in: Diabetologia | Issue 3/2013

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Abstract

Aims/hypothesis

Hyperinsulinaemia-induced whole-body glucose uptake during a euglycaemic–hyperinsulinaemic clamp is partly mediated by increased capillary density. We hypothesised that physiological insulinaemia in response to a mixed meal may also enhance microvascular function, and that this may be impaired in insulin-resistant individuals and patients with type 2 diabetes.

Methods

Twelve men with uncomplicated type 2 diabetes, 13 with metabolic syndrome and 12 age-matched healthy normoglycaemic controls, mean age 57 ± 6 years, underwent skin capillary video microscopy before and 60 and 120 min following a standardised mixed meal to measure baseline capillary density (BCD) and capillary density during post-occlusive peak reactive hyperaemia (PRH), also termed capillary recruitment. Oral glucose insulin sensitivity (Matsuda index) and postprandial hyperglycaemia (2 h AUCglucose) were calculated.

Results

Fasting BCD was similar among groups, but fasting PRH was lowest in diabetes (p < 0.05). Postprandially, both BCD and PRH increased in all groups (p < 0.001); however, the meal-related increase in BCD was significantly lower in diabetes and metabolic syndrome vs controls (both p < 0.05). At all time points, postprandial PRH was lower in both diabetes and metabolic syndrome vs controls (both p < 0.05). In pooled analysis, postprandial mean PRH correlated with Matsuda index (r = 0.386, p = 0.018) and inversely with 2 h AUCglucose (r = −0.336, p = 0.042).

Conclusions/interpretation

Gradual deterioration in meal-related capillary recruitment was paralleled by decreasing insulin sensitivity and postprandial hyperglycaemia, as assessed in healthy normoglycaemic men, men with the metabolic syndrome and those with type 2 diabetes. These findings suggest that in both impaired glucose tolerance and in overt diabetes microvascular dysfunction might contribute to postprandial dysglycaemia.

Trial registration:

ClinicalTrials.gov NCT00721552
Appendix
Available only for authorised users
Literature
1.
go back to reference Baron AD (1994) Hemodynamic actions of insulin. Am J Physiol 267:E187–E202PubMed Baron AD (1994) Hemodynamic actions of insulin. Am J Physiol 267:E187–E202PubMed
2.
go back to reference Barrett EJ, Wang H, Upchurch CT, Liu Z (2011) Insulin regulates its own delivery to skeletal muscle by feed-forward actions on the vasculature. Am J Physiol Endocrinol Metab 301:E252–E263PubMedCrossRef Barrett EJ, Wang H, Upchurch CT, Liu Z (2011) Insulin regulates its own delivery to skeletal muscle by feed-forward actions on the vasculature. Am J Physiol Endocrinol Metab 301:E252–E263PubMedCrossRef
3.
go back to reference Serne EH, Stehouwer CD, ter Maaten JC et al (1999) Microvascular function relates to insulin sensitivity and blood pressure in normal subjects. Circulation 99:896–902PubMedCrossRef Serne EH, Stehouwer CD, ter Maaten JC et al (1999) Microvascular function relates to insulin sensitivity and blood pressure in normal subjects. Circulation 99:896–902PubMedCrossRef
4.
go back to reference Serne EH, Ijzerman RG, Gans RO et al (2002) Direct evidence for insulin-induced capillary recruitment in skin of healthy subjects during physiological hyperinsulinemia. Diabetes 51:1515–1522PubMedCrossRef Serne EH, Ijzerman RG, Gans RO et al (2002) Direct evidence for insulin-induced capillary recruitment in skin of healthy subjects during physiological hyperinsulinemia. Diabetes 51:1515–1522PubMedCrossRef
5.
go back to reference de Jongh RT, Serne EH, Ijzerman RG, de Vries G, Stehouwer CD (2004) Impaired microvascular function in obesity: implications for obesity-associated microangiopathy, hypertension, and insulin resistance. Circulation 109:2529–2535PubMedCrossRef de Jongh RT, Serne EH, Ijzerman RG, de Vries G, Stehouwer CD (2004) Impaired microvascular function in obesity: implications for obesity-associated microangiopathy, hypertension, and insulin resistance. Circulation 109:2529–2535PubMedCrossRef
6.
go back to reference Meijer RI, de Boer MP, Groen MR et al (2012) Insulin-induced microvascular recruitment in skin and muscle are related and both are associated with whole body glucose uptake. Microcirculation 19:494–500 Meijer RI, de Boer MP, Groen MR et al (2012) Insulin-induced microvascular recruitment in skin and muscle are related and both are associated with whole body glucose uptake. Microcirculation 19:494–500
7.
go back to reference Vincent MA, Clerk LH, Lindner JR et al (2006) Mixed meal and light exercise each recruit muscle capillaries in healthy humans. Am J Physiol Endocrinol Metab 290:E1191–E1197PubMedCrossRef Vincent MA, Clerk LH, Lindner JR et al (2006) Mixed meal and light exercise each recruit muscle capillaries in healthy humans. Am J Physiol Endocrinol Metab 290:E1191–E1197PubMedCrossRef
8.
go back to reference Keske MA, Clerk LH, Price WJ, Jahn LA, Barrett EJ (2009) Obesity blunts microvascular recruitment in human forearm muscle after a mixed meal. Diabetes Care 32:1672–1677PubMedCrossRef Keske MA, Clerk LH, Price WJ, Jahn LA, Barrett EJ (2009) Obesity blunts microvascular recruitment in human forearm muscle after a mixed meal. Diabetes Care 32:1672–1677PubMedCrossRef
9.
go back to reference Serne EH, de Jongh RT, Eringa EC, Ijzerman RG, Stehouwer CD (2007) Microvascular dysfunction: a potential pathophysiological role in the metabolic syndrome. Hypertension 50:204–211PubMedCrossRef Serne EH, de Jongh RT, Eringa EC, Ijzerman RG, Stehouwer CD (2007) Microvascular dysfunction: a potential pathophysiological role in the metabolic syndrome. Hypertension 50:204–211PubMedCrossRef
10.
go back to reference Liu Z, Liu J, Jahn LA, Fowler DE, Barrett EJ (2009) Infusing lipid raises plasma free fatty acids and induces insulin resistance in muscle microvasculature. J Clin Endocrinol Metab 94:3543–3549PubMedCrossRef Liu Z, Liu J, Jahn LA, Fowler DE, Barrett EJ (2009) Infusing lipid raises plasma free fatty acids and induces insulin resistance in muscle microvasculature. J Clin Endocrinol Metab 94:3543–3549PubMedCrossRef
Metadata
Title
Postprandial microvascular function deteriorates in parallel with gradual worsening of insulin sensitivity and glucose tolerance in men with the metabolic syndrome or type 2 diabetes
Authors
R. E. van Genugten
E. H. Serné
M. W. Heymans
D. H. van Raalte
M. Diamant
Publication date
01-03-2013
Publisher
Springer-Verlag
Published in
Diabetologia / Issue 3/2013
Print ISSN: 0012-186X
Electronic ISSN: 1432-0428
DOI
https://doi.org/10.1007/s00125-012-2783-y

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