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Testing the Efficacy of Pharmacological Agents in a Pericardial Target Delivery Model in the Swine
Published on: July 7, 2016
Phase 1 human trial of adenosine-potassium cardioplegia
S E Fremes1, S L Levy, G T Christakis
1Department of Pharmacy, University of Toronto, Canada. Stephen.Fremes@sunnybrook.utoronto.ca
Insights
Adenosine supplementation during cardiopulmonary bypass is safe for cardiac surgery patients. Doses of 15-25 mumol/L are recommended for further study, balancing efficacy with potential hypotension risks.
Area of Science:
- Cardiology
- Cardiac Surgery
- Pharmacology
Background:
- Adenosine is known for cardioprotection during ischemia-reperfusion.
- Its optimal dose in humans for cardioplegia is uncertain due to potential hypotension and AV block.
- Previous studies extensively explored adenosine's role in various ischemia-reperfusion models.
Purpose of the Study:
- To determine the safe and appropriate dosage of adenosine when added to cardioplegic solutions during coronary bypass surgery.
- To evaluate the incidence of systemic hypotension and atrioventricular (AV) block at different adenosine concentrations.
Main Methods:
- An open-label, nonrandomized phase 1 dose-ranging study was conducted in patients undergoing primary isolated coronary bypass surgery.
- Adenosine was added to antegrade warm blood potassium cardioplegia at escalating concentrations (0-50 mumol/L initially, then 0-25 mumol/L with a modified delivery system).
- Stopping rules were defined for significant hypotension and AV block, with phenylephrine use and pacing dependency as key indicators.
Main Results:
- Adenosine doses up to 25 mumol/L were well tolerated in the initial 4:1 blood-to-crystalloid cardioplegia system.
- A dose of 50 mumol/L led to significant hypotension during cardioplegic induction in 3 of 4 patients.
- In the 8:1 system, hypotension during induction was more prevalent at 15-25 mumol/L, but no permanent pacing was required, and no major adverse events like MI or stroke occurred in 56 patients.
Conclusions:
- Adenosine can be safely administered during cardiopulmonary bypass in cardiac surgery.
- Further research is recommended using adenosine at 15 to 25 mumol/L, with the specific dose dependent on the cardioplegia delivery system.
- The study provides a basis for future investigations into adenosine's clinical utility in cardiac surgery.
Background:
The cardioprotective role of adenosine in various models of ischemia-reperfusion, including adenosine supplementation to cardioplegic formulations, has been studied extensively. The appropriate dose of adenosine in humans is uncertain and could be limited by systemic hypotension or AV block.
Methods And Results:
An open-label, nonrandomized phase 1 adenosine dose-ranging study was performed. Patients scheduled for primary isolated coronary bypass surgery were eligible for the study. Antegrade warm blood potassium cardioplegia (ratio, 4:1, blood to crystalloid) was administered in the routine fashion, with adenosine added to the initial 1000-mL dose and final 500-mL dose. Patients were studied in blocks of 4 per concentration. An escalating adenosine dosage schedule was planned to produce blood cardioplegia concentrations from 0 to 250 mumol/L, and the blocks were tested sequentially. Stopping rules were defined for systemic hypotension (phenylephrine dose during cardiopulmonary bypass > or = 5.0 mg; phenylephrine dose during cardioplegic induction > or = 800 micrograms) and AV block (permanent pacemaker insertion; temporary pacing dependency for > 90 minutes after cardiopulmonary bypass). Doses of 1, 2.5, 5, 10, and 25 mumol/L were well tolerated. With 50 mumol/L, systemic hypotension occurred during cardioplegic induction in 3 of 4 patients versus 1 of 24 (P < .005) at all lower concentrations (880 +/- 217 versus 297 +/- 286 micrograms phenylephrine per patient). The studies were repeated with an 8:1 blood-to-crystalloid cardioplegia delivery system. Adenosine concentrations of 0 (n = 4), 15 (n = 12), 20 (n = 8), and 25 mumol/L (n = 4) were tested. Hypotension during cardioplegic induction was more prevalent (P = .05) with the higher doses (15 mumol/L, 394 +/- 189 micrograms, 1 of 12 patients; 20 mumol/L, 360 +/- 355 micrograms, 2 of 8 patients; 25 mumol/L, 600 +/- 478 micrograms, 2 of 4 patients). There were no differences with respect to systemic hypotension during cardiopulmonary bypass or for pacing > 90 minutes after discontinuation of cardiopulmonary bypass, and no patient required permanent pacing. There have been no deaths, Q-wave myocardial infarctions, intra-aortic balloon pump insertions, or cerebral infarctions in the total sample of 56 patients.
Conclusions:
Our initial investigations have shown that adenosine can be safely administered during cardiopulmonary bypass. The authors recommend that further studies are warranted using adenosine 15 to 25 mumol/L, depending on the delivery system.
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