Literature DB >> 30915997

Opioid-induced respiratory depression in humans: a review of pharmacokinetic-pharmacodynamic modelling of reversal.

Marijke Hyke Algera1, Jasper Kamp1, Rutger van der Schrier1, Monique van Velzen1, Marieke Niesters1, Leon Aarts1, Albert Dahan2, Erik Olofsen1.   

Abstract

BACKGROUND: Opioids are potent painkillers but come with serious adverse effects ranging from addiction to potentially lethal respiratory depression. A variety of drugs with separate mechanisms of action are available to prevent or reverse opioid-induced respiratory depression (OIRD).
METHODS: The authors reviewed human studies on reversal of OIRD using models that describe and predict the time course of pharmacokinetics (PK) and pharmacodynamics (PD) of opioids and reversal agents and link PK to PD.
RESULTS: The PKPD models differ in their basic structure to capture the specific pharmacological mechanisms by which reversal agents interact with opioid effects on breathing. The effect of naloxone, a competitive opioid receptor antagonist, is described by the combined effect-compartment receptor-binding model to quantify rate limitation at the level of drug distribution and receptor kinetics. The effects of reversal agents that act through non-opioidergic pathways, such as ketamine and the experimental drug GAL021, are described by physiological models, in which stimulants act at CO2 chemosensitivity, CO2-independent ventilation, or both. The PKPD analyses show that although all reversal strategies may be effective under certain circumstances, there are conditions at which reversal is less efficacious and sometimes even impossible.
CONCLUSIONS: Model-based drug development is needed to design an 'ideal' reversal agent-that is, one that is not influenced by opioid receptor kinetics, does not interfere with opioid analgesia, has a rapid onset of action with long-lasting effects, and is devoid of adverse effects.
Copyright © 2019 British Journal of Anaesthesia. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  breathing; naloxone; opioids; pharmacodynamics; pharmacokinetics; respiratory depression

Mesh:

Substances:

Year:  2019        PMID: 30915997     DOI: 10.1016/j.bja.2018.12.023

Source DB:  PubMed          Journal:  Br J Anaesth        ISSN: 0007-0912            Impact factor:   9.166


  29 in total

1.  Antinociceptive, reinforcing, and pruritic effects of the G-protein signalling-biased mu opioid receptor agonist PZM21 in non-human primates.

Authors:  Huiping Ding; Norikazu Kiguchi; David A Perrey; Thuy Nguyen; Paul W Czoty; Fang-Chi Hsu; Yanan Zhang; Mei-Chuan Ko
Journal:  Br J Anaesth       Date:  2020-08-17       Impact factor: 9.166

2.  Dual mechanisms of opioid-induced respiratory depression in the inspiratory rhythm-generating network.

Authors:  Nathan A Baertsch; Nicholas E Bush; Nicholas J Burgraff; Jan-Marino Ramirez
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7.  Quantitative Pupillometry as a Predictor of Pediatric Postoperative Opioid-Induced Respiratory Depression.

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9.  Novel Opioids: Systematic Web Crawling Within the e-Psychonauts' Scenario.

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10.  High Efficacy by GAL-021: A Known Intravenous Peripheral Chemoreceptor Modulator that Suppresses BKCa-Channel Activity and Inhibits IK(M) or Ih.

Authors:  Te-Ling Lu; Zi-Han Gao; Shih-Wei Li; Sheng-Nan Wu
Journal:  Biomolecules       Date:  2020-01-25
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