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1.
Medicine (Baltimore) ; 103(29): e38837, 2024 Jul 19.
Article in English | MEDLINE | ID: mdl-39029082

ABSTRACT

Opioids exert analgesic effects by agonizing opioid receptors and activating signaling pathways coupled to receptors such as G-protein and/or ß-arrestin. Concomitant respiratory depression (RD) is a common clinical problem, and improvement of RD is usually achieved with specific antagonists such as naloxone; however, naloxone antagonizes opioid analgesia and may produce more unknown adverse effects. In recent years, researchers have used various methods to isolate opioid receptor-mediated analgesia and RD, with the aim of preserving opioid analgesia while attenuating RD. At present, the focus is mainly on the development of new opioids with weak respiratory inhibition or the use of non-opioid drugs to stimulate breathing. This review reports recent advances in novel opioid agents, such as mixed opioid receptor agonists, peripheral selective opioid receptor agonists, opioid receptor splice variant agonists, biased opioid receptor agonists, and allosteric modulators of opioid receptors, as well as in non-opioid agents, such as AMPA receptor modulators, 5-hydroxytryptamine receptor agonists, phosphodiesterase-4 inhibitors, and nicotinic acetylcholine receptor agonists.


Subject(s)
Analgesics, Opioid , Respiratory Insufficiency , Humans , Respiratory Insufficiency/chemically induced , Respiratory Insufficiency/drug therapy , Analgesics, Opioid/adverse effects , Analgesics, Opioid/therapeutic use , Receptors, Opioid/drug effects , Receptors, Opioid/metabolism , Receptors, Opioid/agonists , Narcotic Antagonists/therapeutic use , Narcotic Antagonists/pharmacology
2.
Neurosci Lett ; 771: 136459, 2022 02 06.
Article in English | MEDLINE | ID: mdl-35041907

ABSTRACT

Opioid analgesics are widely used to treat acute, postoperative, and chronic pain. However, opioid receptor activation can result in severe respiratory depression. In this study, we demonstrated that Tandospirone (TS), a selective serotonin-1A receptor partial agonist, is effective against opioid-induced respiratory depression. Fentanyl was used to establish a respiratory depression model in rodents. We observed the effects of TS on respiratory depression in rats by using plethysmographic recordings and arterial oxygen saturation. In addition, we evaluated the effects of TS on fentanyl-induced sedation and analgesia by using the loss of righting reflex (LORR) and hot-plate tests, respectively. Rats (n = 5) were treated with TS or saline 5 min prior to fentanyl administration. TS [2 mg/kg, intravenous (i.v.)] dose-dependently attenuated fentanyl-induced respiratory depression versus saline + fentanyl group. Furthermore, pre-treatment with TS (2 mg/kg, i.v.) increased arterial oxygen saturation to 76.5 ± 2.0% at 5 min after fentanyl injection, compared with 35.9 ± 2.5% in saline pre-treated rats (P < 0.001), whereas the time to induction of LORR (P > 0.99) and duration of LORR (P = 0.95) did not differ between the "TS + fentanyl" and "saline + fentanyl" group. The antinociceptive effect of fentanyl was not affected by the administration of TS (P = 0.99) in mice (n = 10). In conclusion, we found that TS, a novel non-benzodiazepine anxiolytic/antidepressant drug, could attenuate severe fentanyl-induced respiratory depression and did not affect the analgesic/sedative effect of fentanyl. The clinical application of TS could significantly improve pain management.


Subject(s)
Analgesics, Opioid/toxicity , Fentanyl/toxicity , Isoindoles/therapeutic use , Piperazines/therapeutic use , Pyrimidines/therapeutic use , Respiratory Insufficiency/drug therapy , Serotonin Receptor Agonists/therapeutic use , Animals , Female , Isoindoles/administration & dosage , Male , Mice , Nociception , Piperazines/administration & dosage , Pyrimidines/administration & dosage , Rats , Rats, Sprague-Dawley , Respiratory Insufficiency/etiology , Serotonin Receptor Agonists/administration & dosage
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