Preclinical Assessment of the Analgesic Pharmacology of NKTR-181 in Rodents

吗啡 类阿片 药理学 效力 兴奋剂 羟考酮 芬太尼 止痛药 (+)-纳洛酮 部分激动剂 麻醉剂拮抗剂 医学 化学 受体 伤害 内科学 体外 生物化学
作者
Caroline Machado Kopruszinski,Juliana Swiokla,Yeon Sun Lee,Edita Navratilova,Laurie A. VanderVeen,Miao Yang,Yi Liu,Takahiro Miyazaki,W. Schmidt,Jonathan Zalevsky,Frank Porreca
出处
期刊:Cellular and Molecular Neurobiology [Springer Science+Business Media]
卷期号:41 (5): 949-960 被引量:10
标识
DOI:10.1007/s10571-020-00816-3
摘要

Pharmacological evaluation of the mu-opioid receptor (MOR) agonist properties of NKTR-181 in rodent models. Graded noxious stimulus intensities were used in rats to establish the antinociceptive potency and efficacy of NKTR-181 relative to morphine, fentanyl, and oxycodone. Characteristics of MOR agonist actions, as measured by antinociceptive tolerance and cross-tolerance, as well as opioid-induced hyperalgesia (OIH) and naloxone-precipitated withdrawal in NKTR-181- and morphine-dependent in mice, were compared. NKTR-181 showed dose- and time-related antinociception with similar maximal effects to morphine in the rat and mouse hot-water tail-flick test. No sex or species differences were observed in NKTR-181 or morphine antinociception. Rats treated with NKTR-181 and morphine exhibited decreases in both potency and maximal efficacy as nociceptive stimulus intensity was increased from a water temperature of 50 °C to 54 °C. Evaluation of antinociception at a high stimulus intensity revealed that oxycodone and fentanyl exhibited greater efficacy than either NKTR-181 or morphine. The relative potency difference between NKTR-181 and morphine across all tail-flick studies was determined to be 7.6-fold (90% confidence interval, 2.6, 21.5). The peak antinociceptive effect of NKTR-181 was delayed compared to that of the other opioids and cumulative drug effects were not observed. Repeated treatment with escalating, approximately equi-analgesic doses of NKTR-181 or morphine, produced antinociceptive tolerance and cross-tolerance. Under these pharmacological conditions, OIH and naloxone-precipitated physical dependence were similar for NKTR-181 and morphine. NKTR-181 had a slower onset, but similar efficacy, to morphine in the models studied supporting reduced abuse potential while maintaining analgesic effect in comparison with current opioids.

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