Mechanisms of respiratory depression induced by the combination of buprenorphine and diazepam in rats

The safety profile of buprenorphine has encouraged its widespread use. However, fatalities have been attributed to benzodiazepine/buprenorphine combinations, by poorly understood mechanisms of toxicity. Mechanistic hypotheses include (i) benzodiazepine-mediated increase in brain buprenorphine (pharm...

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Veröffentlicht in:British journal of anaesthesia : BJA 2022-03, Vol.128 (3), p.584-595
Hauptverfasser: Vodovar, Dominique, Chevillard, Lucie, Caillé, Fabien, Risède, Patricia, Pottier, Géraldine, Auvity, Sylvain, Mégarbane, Bruno, Tournier, Nicolas
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Sprache:eng
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Zusammenfassung:The safety profile of buprenorphine has encouraged its widespread use. However, fatalities have been attributed to benzodiazepine/buprenorphine combinations, by poorly understood mechanisms of toxicity. Mechanistic hypotheses include (i) benzodiazepine-mediated increase in brain buprenorphine (pharmacokinetic hypothesis); (ii) benzodiazepine-mediated potentiation of buprenorphine interaction with opioid receptors (receptor hypothesis); and (iii) combined effects of buprenorphine and benzodiazepine on respiratory parameters (pharmacodynamic hypothesis). We studied the neuro-respiratory effects of buprenorphine (30 mg kg−1, i.p.), diazepam (20 mg kg−1, s.c.), and diazepam/buprenorphine combination in rats using arterial blood gas analysis, plethysmography, and diaphragm electromyography. Pretreatments with various opioid and gamma-aminobutyric acid receptor antagonists were tested. Diazepam impact on brain 11C-buprenorphine kinetics and binding to opioid receptors was studied using positron emission tomography imaging. In contrast to diazepam and buprenorphine alone, diazepam/buprenorphine induced early-onset sedation (P
ISSN:0007-0912
1471-6771
DOI:10.1016/j.bja.2021.10.029