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Effect of intravenous nitroglycerin on heparin dosage requirements in coronary artery disease
1College of Pharmacy, St. John's University, Jamaica, New York.
Insights
Intravenous nitroglycerin did not significantly increase heparin dosage requirements in coronary care unit patients. This study found no clinically significant heparin resistance induced by nitroglycerin, contrary to previous reports.
Area of Science:
- Cardiology
- Pharmacology
Background:
- Intravenous heparin and nitroglycerin are commonly used in acute coronary syndromes.
- Previous studies suggested nitroglycerin may induce heparin resistance, increasing dosage needs.
Purpose of the Study:
- To evaluate heparin dosage requirements in patients receiving both intravenous nitroglycerin and heparin.
- To determine if nitroglycerin administration influences heparin efficacy or dosage needs.
Main Methods:
- Sixty patients with myocardial infarction or unstable angina were studied.
- Activated partial thromboplastin time (APTT) ratios were used to assess therapeutic heparin levels (APTT/APTT-baseline >= 1.5).
- Heparin doses were analyzed in relation to nitroglycerin dosage and patient body weight.
Main Results:
- The initial therapeutic heparin dose was 1,014 +/- 151 units/hour, achieving an APTT ratio of 2.0 +/- 0.5.
- A significant correlation was found between initial therapeutic heparin dose and total and lean body weight.
- Patients receiving higher nitroglycerin doses showed a significant difference in initial therapeutic heparin dose, but not when standardized to body weight.
Conclusions:
- Clinically significant heparin resistance induced by nitroglycerin was not observed in this study.
- Heparin dosage requirements were not significantly affected by aspirin use, thrombolytic therapy, or nitroglycerin dose adjustments.
- Findings suggest nitroglycerin does not necessitate increased heparin dosing in this patient population.
Abstract:
Patients admitted to the coronary care unit who received both intravenous nitroglycerin and heparin were studied to evaluate heparin dosage requirements. Physicians ordered all nitroglycerin and heparin doses as well as coagulation studies without knowledge of this study. Activated partial thromboplastin time (APTT) values obtained during steady-state heparin administration were considered therapeutic if the ratio of APTT/APTT-baseline was > or = 1.5. Sixty patients with myocardial infarction or unstable angina were included in the study. The initial therapeutic heparin dose of 1,014 +/- 151 units/hour produced an APTT ratio of 2.0 +/- 0.5. At the time of the initial therapeutic dose, the nitroglycerin dose was 110 +/- 108 micrograms/min. There was a significant correlation between the initial therapeutic dose and both total (r = 0.56; p = 0.0001) and lean (r = 0.26; p < 0.05) body weight. Comparison of patients with nitroglycerin doses < and > or = 100 micrograms/min revealed a significant difference in the initial therapeutic dose (971 +/- 147 vs 1,077 +/- 136 U/hour, p < 0.01), but not the initial therapeutic dose standardized to total body weight (14.0 +/- 2.5 vs 13.5 +/- 2.7 U/kg/hour). Similarly, analysis of variance revealed a significant difference in the initial therapeutic dose (p < 0.05), but not the initial therapeutic dose standardized to weight among 5 different nitroglycerin dosage ranges (10 to 533 micrograms/min). Neither aspirin use, thrombolytic therapy nor decreasing or discontinuing the nitroglycerin dose significantly affected heparin requirements. Thus, contrary to prior reports, clinically significant heparin resistance induced by nitroglycerin was not found.
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