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Published on: December 2, 2014
Increased arterial stiffness in normoglycemic normotensive offspring of type 2 diabetic parents
Cristina Giannattasio1, Monica Failla, Anna Capra
1Clinica Medica, Milano-Bicocca University and S. Gerardo Hospital, Monza, Italy. cristina.giannattasio@unimib.it
Insights
Individuals with a family history of type 2 diabetes exhibit early arterial stiffening, even before metabolic or blood pressure changes occur. This suggests reduced arterial distensibility is an initial sign of diabetes predisposition.
Area of Science:
- Cardiovascular Research
- Metabolic Disease Research
- Vascular Biology
Background:
- Diabetes mellitus is linked to decreased arterial distensibility.
- Early detection of arterial changes in diabetes is not well understood.
- Genetic predisposition may influence vascular health.
Purpose of the Study:
- To investigate early arterial mechanical property alterations in individuals with a predisposition to type 2 diabetes.
- To assess if arterial stiffening precedes metabolic and hemodynamic changes.
Main Methods:
- Studied healthy offspring of parents with type 2 diabetes (n=54) and matched controls (n=55).
- Measured carotid artery distensibility, diameter, and wall thickness using echo tracking and Doppler.
- Assessed pulse pressure, blood pressure, glucose, HbA1c, and insulin sensitivity.
Main Results:
- Offspring showed reduced carotid artery distensibility (-30%) and increased pulse pressure (+21.8%) compared to controls.
- Carotid artery stiffening occurred despite normal blood pressure, glucose, and HbA1c levels.
- No significant differences in carotid wall thickness were observed between groups.
Conclusions:
- Individuals predisposed to type 2 diabetes exhibit carotid artery stiffening early in life.
- Arterial mechanical property alterations can precede overt metabolic and hemodynamic changes in diabetes.
- Reduced arterial distensibility may be an early indicator of diabetes risk.
Abstract:
Diabetes is associated with a reduction of arterial distensibility. Limited information exists regarding whether or how early this appears in the course of the disease. We studied 54 normoglycemic, normotensive, healthy offspring of 2 parents with type 2 diabetes mellitus and 55 age- and sex-matched healthy control subjects. Carotid diastolic diameter and systodiastolic change were measured by echo tracking (Wall Track System) and wall thickness by echocolor Doppler (Sonos 5500, Philips). Pulse pressure was measured by a semiautomatic device positioned on the brachial artery and arterial distensibility calculated by Reneman formula. Blood pressure, blood glucose, glycohemoglobin, and insulin sensitivity (homeostasis model assessment index) were normal or only slightly elevated and by and large similar in the 2 groups. Compared with control subjects, offspring of diabetic parents showed similar carotid diameters at diastole and a reduced increase in carotid diameter at systole (-16%), a reduced carotid artery distensibility (-30%), and an increased pulse pressure (+21.8%), all differences being statistically significant (P<0.05) and persisting in subgroups with elevated or normal body mass index values (<25 and >or=25 kg/m(2)). Carotid artery wall thickness was not different between the 2 groups. Thus, subjects with predisposition to diabetes show carotid artery stiffening even in the absence of blood pressure alterations, as well as substantial alterations of glucose metabolism, body mass index, and changes in carotid wall thickness. This suggests that, in diabetes, alterations in arterial mechanical properties represent an early phenomenon, which may occur in the absence of metabolic and blood pressure alterations.
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