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Published on: May 31, 2016
Lower-extremity arterial calcification as a correlate of coronary artery calcification
Tina Costacou1, Nathan D Huskey, Dan Edmundowicz
1Department of Epidemiology, Graduate School of Public Health, University of Pittsburgh, Pittsburgh, PA, USA.
Insights
Lower-extremity arterial calcification (LEAC) in type 1 diabetes is linked to male sex, longer diabetes duration, and autonomic neuropathy (AN). LEAC also predicts later coronary artery calcification (CAC) and AN.
Area of Science:
- Cardiology
- Diabetology
- Vascular Medicine
Background:
- Coronary artery calcification (CAC) assesses coronary atherosclerosis.
- Arterial calcification in the tunica media is common in diabetes, predicting mortality.
- The relationship between lower-extremity arterial calcification (LEAC) and CAC is not well understood.
Purpose of the Study:
- Identify risk factors for LEAC in type 1 diabetes.
- Determine the association between LEAC and subsequent CAC.
- Investigate LEAC's relationship with diabetes complications.
Main Methods:
- Prospective cohort study of 190 individuals with childhood-onset type 1 diabetes.
- Radiographs of ankles/feet for LEAC assessment at 4-year follow-up.
- Electron beam tomography for CAC assessment at 10-year follow-up.
Main Results:
- Male sex, diabetes duration, and autonomic neuropathy (AN) independently predicted LEAC.
- LEAC correlated with the presence of CAC 6 years later.
- LEAC independently predicted AN but not other diabetes complications.
Conclusions:
- LEAC shares risk factors with CAC but is an independent correlate of later CAC and AN.
- Factors beyond traditional vascular risk factors may influence CAC extent.
- LEAC may serve as an indicator for cardiovascular risk in type 1 diabetes.
Abstract:
Coronary artery calcification (CAC) has been used as a testing modality for coronary atherosclerosis burden. In diabetes, arterial calcification in the tunica media is common and predicts renal and cardiovascular mortality. It is unknown whether the 2 calcification processes are related. We identified risk factors associated with lower-extremity arterial calcification (LEAC) and determined its relationship to the presence of CAC 6 years later and the incidence of complications in type 1 diabetes mellitus. A random sample of 190 participants from the Pittsburgh Epidemiology of Diabetes Complications Study, a prospective cohort of childhood-onset type 1 diabetes mellitus, received radiographs of their ankles and feet at the 4-year follow-up examination (1990-1992) and was followed up for approximately 6 years. At the 10-year examination, 121 of these individuals received an electron beam tomography scan. Male sex (odds ratio [OR] = 12.72, P < .0001), diabetes duration (OR = 4.53, P < .0001), and autonomic neuropathy (AN; OR = 5.92, P = .007) independently increased the odds of LEAC. Controlling for other known risk factors (duration and high-density lipoprotein cholesterol), we found that LEAC correlated with the presence of CAC 6 years later (OR = 1.12, P = .03), although adjusting for neuropathy attenuated this relationship (P = .08). LEAC also independently predicted AN but not the onset of other diabetes complications. Although arterial calcification in the lower extremities and the heart share many of the same risk factors, LEAC is an independent correlate of the later presence of CAC and AN. Thus, factors related to the calcification process in addition to vascular risk factors may play a role in determining the extent of CAC.
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