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Circadian variation in ischemic threshold. A mechanism underlying the circadian variation in ischemic events
A A Quyyumi1, J A Panza, J G Diodati
1Cardiology Branch, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Md 20892.
Insights
Coronary artery disease patients experience a circadian pattern in cardiac events. This study reveals increased coronary vascular resistance in the morning, potentially triggering cardiac events.
Area of Science:
- Cardiology
- Circadian Biology
- Vascular Physiology
Background:
- Circadian variations in cardiac events are observed in coronary artery disease (CAD).
- The role of coronary vascular tone in these circadian patterns remains unclear.
- Ischemic threshold, an indicator of coronary vascular resistance, was used to assess vascular tone.
Purpose of the Study:
- To investigate the circadian variation in ischemic threshold in patients with stable CAD.
- To determine if changes in coronary vascular tone contribute to the circadian pattern of cardiac events.
Main Methods:
- Two groups of CAD patients underwent treadmill exercise tests at different times of day.
- Ischemic threshold was measured as heart rate or rate-pressure product at 1-mm ST depression.
- Post-ischemic forearm vascular resistance was measured using strain-gauge plethysmography.
Main Results:
- A significant circadian variation in ischemic threshold was observed, being lower in the morning and evening.
- Post-ischemic forearm blood flow also showed a circadian variation, lower in the morning and at night.
- A strong correlation was found between forearm blood flow and ischemic threshold.
Conclusions:
- Lower morning ischemic threshold suggests increased ischemia-induced coronary vascular resistance.
- Parallel variations in forearm and coronary resistance indicate generalized (neural or humoral) factors.
- Increased morning coronary tone may contribute to transient ischemia and acute cardiac events.
Background:
There is a circadian pattern in the occurrence of cardiac events in patients with coronary artery disease. Whether changes in coronary vascular tone contribute to these phenomena is unknown. We measured the ischemic threshold, defined as either the heart rate or rate-pressure product at 1-mm ST segment depression during treadmill exercise and used it as an index of the lowest coronary vascular resistance; the premise was that when ischemic threshold became lower, coronary vascular resistance was higher, and vice versa.
Methods And Results:
Fifteen patients (group A) with stable coronary artery disease underwent four identical treadmill exercise tests in 24 hours, and ischemic threshold was measured as the heart rate at the onset of 1-mm ST depression. Before each treadmill test, postischemic forearm vascular resistance was measured after 5 minutes of forearm occlusion, using strain-gauge plethysmography. Sixteen additional patients (group B) underwent two treadmill tests at 8 AM and 1 PM, and ischemic threshold was measured as the heart rate-blood pressure product at 1-mm ST depression. A circadian variation was noted: In group A, the heart rate-derived ischemic threshold was lower at 8 AM and 9 PM compared with noon and 5 PM (p less than 0.03). Also, in group B, the rate-pressure product-derived ischemic threshold was 8 +/- 2% lower at 8 AM compared with 1 PM (p = 0.008). A circadian variation parallel to the observed variation in ischemic threshold was also noted in the postischemic forearm blood flow, which was lower in the morning and at night (p less than 0.004). There was a strong correlation between postischemic forearm blood flow and ischemic threshold (p less than 0.0001), such that ischemic threshold was lower at the time of day when postischemic forearm blood flow was lower, and vice versa.
Conclusions:
A lower ischemic threshold in the morning suggests that the ischemia-induced coronary vascular resistance is increased at this time, a finding supported by a similar variation in postischemic forearm vascular resistance. Parallel changes in forearm and coronary resistance suggest that generalized (neural or humoral factors) rather than local factors are responsible for the observed circadian changes. Increased coronary tone in the mornings may not only contribute to the higher incidence of transient ischemia but may help trigger acute cardiac events at this time.
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