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1.
J Pharmacol Exp Ther ; 363(1): 104-113, 2017 10.
Article in English | MEDLINE | ID: mdl-28778859

ABSTRACT

The increasing availability of prescription opioid analgesics for the treatment of pain has been paralleled by an epidemic of opioid misuse, diversion, and overdose. The development of abuse-deterrent formulations (ADFs) of conventional opioids such as oxycodone and morphine represents an advance in the field and has had a positive but insufficient impact, as most opioids are still prescribed in highly abusable, non-ADF forms, and abusers can tamper with ADF medications to liberate the abusable opioid within. The abuse liability of mu-opioid agonists appears to be dependent on their rapid rate of entry into the central nervous system (CNS), whereas analgesic activity appears to be a function of CNS exposure alone, suggesting that a new opioid agonist with an inherently low rate of influx across the blood-brain barrier could mediate analgesia with low abuse liability, regardless of formulation or route of administration. NKTR-181 is a novel, long-acting, selective mu-opioid agonist with structural properties that reduce its rate of entry across the blood-brain barrier compared with traditional mu-opioid agonists. NKTR-181 demonstrated maximum analgesic activity comparable to that of oxycodone in hot-plate latency and acetic-acid writhing models. NKTR-181 was distinguishable from oxycodone by its reduced abuse potential in self-administration and progressive-ratio break point models, with behavioral effects similar to those of saline, as well as reduced CNS side effects as measured by the modified Irwin test. The in vitro and in vivo studies presented here demonstrate that NKTR-181 is the first selective mu-opioid agonist to combine analgesic efficacy and reduced abuse liability through the alteration of brain-entry kinetics.


Subject(s)
Analgesics, Opioid/pharmacology , Morphinans/pharmacology , Substance-Related Disorders/prevention & control , Analgesics, Opioid/chemistry , Analgesics, Opioid/metabolism , Animals , Blood-Brain Barrier/drug effects , Blood-Brain Barrier/metabolism , Caco-2 Cells , Dose-Response Relationship, Drug , Drug Compounding , Humans , Male , Morphinans/chemistry , Morphinans/metabolism , Permeability , Rats , Rats, Sprague-Dawley , Receptors, Opioid, mu/metabolism , Time Factors
2.
J Med Chem ; 54(7): 2255-65, 2011 Apr 14.
Article in English | MEDLINE | ID: mdl-21375264

ABSTRACT

The development of a new series of p38α inhibitors resulted in the identification of two clinical candidates, one of which was advanced into a phase 2 clinical study for rheumatoid arthritis. The original lead, an lck inhibitor that also potently inhibited p38α, was a screening hit from our kinase inhibitor library. This manuscript describes the optimization of the lead to p38-selective examples with good pharmacokinetic properties.


Subject(s)
Drug Discovery/methods , Mitogen-Activated Protein Kinase 14/antagonists & inhibitors , Pyridones/pharmacology , Pyridones/pharmacokinetics , Pyrimidines/pharmacology , Pyrimidines/pharmacokinetics , Administration, Oral , Arthritis, Rheumatoid/drug therapy , Biological Availability , Cell Line , Clinical Trials as Topic , Humans , Mitogen-Activated Protein Kinase 14/chemistry , Models, Molecular , Protein Conformation , Protein Kinase Inhibitors/administration & dosage , Protein Kinase Inhibitors/chemistry , Protein Kinase Inhibitors/pharmacokinetics , Protein Kinase Inhibitors/pharmacology , Pyridones/administration & dosage , Pyridones/chemistry , Pyrimidines/administration & dosage , Pyrimidines/chemistry , Structure-Activity Relationship , Substrate Specificity
3.
J Med Chem ; 49(5): 1562-75, 2006 Mar 09.
Article in English | MEDLINE | ID: mdl-16509574

ABSTRACT

A novel class of highly selective inhibitors of p38 MAP kinase was discovered from high throughput screening. The synthesis and optimization of a series of 5-amino-N-phenyl-1H-pyrazol-4-yl-3-phenylmethanones is described. An X-ray crystal structure of this series bound in the ATP binding pocket of unphosphorylated p38alpha established the presence of a unique hydrogen bond between the exocyclic amine of the inhibitor and threonine 106 which likely contributes to the selectivity for p38. The crystallographic information was used to optimize the potency and physicochemical properties of the series. The incorporation of the 2,3-dihydroxypropoxy moiety on the pyrazole scaffold resulted in a compound with excellent drug-like properties including high oral bioavailability. These efforts identified 63 (RO3201195) as an orally bioavailable and highly selective inhibitor of p38 which was selected for advancement into Phase I clinical trials.


Subject(s)
Anti-Inflammatory Agents/chemical synthesis , Pyrazoles/chemical synthesis , p38 Mitogen-Activated Protein Kinases/antagonists & inhibitors , Adenosine Triphosphate/chemistry , Administration, Oral , Animals , Anti-Inflammatory Agents/chemistry , Anti-Inflammatory Agents/pharmacology , Arthritis, Experimental/drug therapy , Binding Sites , Biological Availability , Cell Line , Crystallography, X-Ray , Dogs , Female , Haplorhini , Humans , Interleukin-1/antagonists & inhibitors , Interleukin-1/biosynthesis , Interleukin-6/antagonists & inhibitors , Interleukin-6/biosynthesis , Models, Molecular , Pyrazoles/chemistry , Pyrazoles/pharmacology , Rats , Rats, Inbred Lew , Stereoisomerism , Structure-Activity Relationship , Tumor Necrosis Factor-alpha/antagonists & inhibitors , p38 Mitogen-Activated Protein Kinases/chemistry
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