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Mechanisms of tissue damage in the postprandial state.

Abstract

There is increasing evidence that the postprandial state is an important contributing factor to the development of atherosclerosis. In diabetes, the postprandial phase is characterised by a rapid and large increase in blood glucose levels and the possibility that the postprandial hyperglycaemic peaks may be relevant to the pathophysiology of late diabetic complications has recently received much attention. The oral glucose tolerance test, although highly non-physiological, has commonly been used as the model of the postprandial state. Epidemiological studies have shown that, when impaired, oral glucose tolerance is associated with an increased risk of cardiovascular disease, with the glycaemia two hours after the glucose challenge a direct and independent risk factor. Moreover, the possibility that postprandial hyperglycaemia is also a risk factor for cardiovascular disease in diabetic patients has been reported. Most of the cardiovascular risk factors are modified in the postprandial phase in patients with diabetes and are directly affected by an acute increase in glycaemia. The mechanisms through which acute hyperglycaemia exerts its effects may be identified as labile non-enzymatic glycation and production of free radicals. It is likely that the two mechanisms co-operate in causing the disorders induced by acute hyperglycaemia. Correcting the postprandial hyperglycaemia can form part of the strategy for the prevention and management of cardiovascular disease in diabetes.

Authors

No affiliation info available

Pub Type(s)

Journal Article
Review

Language

eng

PubMed ID

11594300

Citation

Ceriello, A. "Mechanisms of Tissue Damage in the Postprandial State." International Journal of Clinical Practice. Supplement, 2001, pp. 7-12.
Ceriello A. Mechanisms of tissue damage in the postprandial state. Int J Clin Pract Suppl. 2001.
Ceriello, A. (2001). Mechanisms of tissue damage in the postprandial state. International Journal of Clinical Practice. Supplement, (123), 7-12.
Ceriello A. Mechanisms of Tissue Damage in the Postprandial State. Int J Clin Pract Suppl. 2001;(123)7-12. PubMed PMID: 11594300.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Mechanisms of tissue damage in the postprandial state. A1 - Ceriello,A, PY - 2001/10/12/pubmed PY - 2001/11/3/medline PY - 2001/10/12/entrez SP - 7 EP - 12 JF - International journal of clinical practice. Supplement JO - Int J Clin Pract Suppl IS - 123 N2 - There is increasing evidence that the postprandial state is an important contributing factor to the development of atherosclerosis. In diabetes, the postprandial phase is characterised by a rapid and large increase in blood glucose levels and the possibility that the postprandial hyperglycaemic peaks may be relevant to the pathophysiology of late diabetic complications has recently received much attention. The oral glucose tolerance test, although highly non-physiological, has commonly been used as the model of the postprandial state. Epidemiological studies have shown that, when impaired, oral glucose tolerance is associated with an increased risk of cardiovascular disease, with the glycaemia two hours after the glucose challenge a direct and independent risk factor. Moreover, the possibility that postprandial hyperglycaemia is also a risk factor for cardiovascular disease in diabetic patients has been reported. Most of the cardiovascular risk factors are modified in the postprandial phase in patients with diabetes and are directly affected by an acute increase in glycaemia. The mechanisms through which acute hyperglycaemia exerts its effects may be identified as labile non-enzymatic glycation and production of free radicals. It is likely that the two mechanisms co-operate in causing the disorders induced by acute hyperglycaemia. Correcting the postprandial hyperglycaemia can form part of the strategy for the prevention and management of cardiovascular disease in diabetes. SN - 1368-504X UR - https://www.unboundmedicine.com/medline/citation/11594300/Mechanisms_of_tissue_damage_in_the_postprandial_state_ L2 - https://medlineplus.gov/hyperglycemia.html DB - PRIME DP - Unbound Medicine ER -