Arbutamine stimulation detects viable myocardium 4 weeks after coronary occlusion
A Kisanuki1, D S Segar, T Ryan
1Department of Medicine, Indiana University School of Medicine, Indianapolis, Indiana, USA.
Insights
Arbutamine effectively detects viable myocardium, especially at higher doses causing tachycardia. Its sensitivity for predicting recovery improves significantly 4 weeks after coronary occlusion.
Area of Science:
- Cardiology
- Myocardial Viability Assessment
- Pharmacology
Background:
- Dobutamine's inotropic effects aid hibernating myocardium detection.
- Other catecholamines' efficacy for assessing myocardial viability is unclear.
- Arbutamine possesses potent chronotropic effects, unlike dobutamine.
Purpose of the Study:
- To evaluate arbutamine's efficacy in detecting viable myocardium.
- To assess arbutamine's effectiveness in a canine model of hibernating myocardium.
- To compare arbutamine's diagnostic performance at different time points post-coronary ligation.
Main Methods:
- Stepwise arbutamine infusion (2.5-100 ng/kg/min) in a canine model.
- Assessment of contractile reserve using sonomicrometry and echocardiography.
- Evaluation of segment shortening, wall thickening, and wall motion score.
Main Results:
- Early post-ligation, sensitivity for predicting recovery was highest at 50 ng/kg/min (50% segment shortening, 20% wall thickening, 75% wall motion score).
- Late post-ligation (4 weeks), sensitivity improved significantly at 50 ng/kg/min (100% segment shortening, 80% wall thickening, 90% wall motion score).
- Myocardial perfusion reserve was only mildly reduced in the ischemic zone of dogs with functional recovery.
Conclusions:
- High-dose arbutamine, inducing tachycardia, can detect viable myocardium post-coronary occlusion.
- Arbutamine's sensitivity for predicting functional recovery is low early but improves by 4 weeks.
- Adequate perfusion reserve is associated with improved arbutamine test sensitivity.
Abstract:
At low doses, dobutamine has potent inotropic, but limited chronotropic, effects-properties that may be necessary for detection of hibernating myocardium. The efficacy of other catecholamines, which have more closely coupled inotropic and chronotropic effects, for the detection of viable myocardium is unknown. This study evaluated the efficacy of arbutamine, a catecholamine with potent chrono-tropic effects, for the detection of viable myocardium in a canine model of hibernating myocardium. Contractile reserve was assessed during stepwise arbutamine infusion (dosages of 2.5, 5, 10, 50, and 100 ng/kg/min) at 3 days (early) and 4 weeks (late) after coronary ligation. Segment shortening, wall thickening, and segmental wall motion were assessed by sonomicrometry and echocardiography. After 4 weeks of occlusion, functional recovery was assessed after revascularization. During the early arbutamine study, the sensitivity for predicting functional recovery was highest at a dosage of 50 ng/kg/min, which also produced tachycardia. The sensitivity was 50% for segment shortening, 20% for wall thickening, and 75% for wall motion score. The late arbutamine study had improved sensitivity. The sensitivity was 100% for segment shortening, 80% for wall thickening, and 90% for wall motion score at a dosage of 50 ng/kg/min. At the late arbutamine study, myocardial perfusion reserve in the ischemic zone of dogs with functional recovery was only mildly reduced (2.0 versus 2.6 in nonischemic zones, P =.53). After coronary occlusion, viable myocardium can be detected with high doses of arbutamine that produce tachycardia. However, the sensitivity of arbutamine stimulation for predicting functional recovery is low early after occlusion, but it is improved by 4 weeks after occlusion with adequate perfusion reserve.
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