Patent classifications
C07D489/06
NON-PEPTIDE OPIOID RECEPTOR MODULATORS
Non-peptide MOR opioid receptor modulators are provided. The compounds exhibit predominantly central activity and are used to treat e.g. substance use disorders, and pain.
Polymorphic forms of naltrexone
This invention relates to the discovery of novel polymorphic forms of naltrexone, including solvates, hydrates, anhydrous and other crystalline forms and combinations thereof. These novel forms of naltrexone impart advantages in pharmaceutical formulations incorporating them, including sustained release, or long acting, formulations.
Polymorphic forms of naltrexone
This invention relates to the discovery of novel polymorphic forms of naltrexone, including solvates, hydrates, anhydrous and other crystalline forms and combinations thereof. These novel forms of naltrexone impart advantages in pharmaceutical formulations incorporating them, including sustained release, or long acting, formulations.
Polymorphic Forms of Naltrexone
This invention relates to the discovery of novel polymorphic forms of naltrexone, including solvates, hydrates, anhydrous and other crystalline forms and combinations thereof. These novel forms of naltrexone impart advantages in pharmaceutical formulations incorporating them, including sustained release, or long acting, formulations.
Polymorphic Forms of Naltrexone
This invention relates to the discovery of novel polymorphic forms of naltrexone, including solvates, hydrates, anhydrous and other crystalline forms and combinations thereof. These novel forms of naltrexone impart advantages in pharmaceutical formulations incorporating them, including sustained release, or long acting, formulations.
Polymorphic forms of naltrexone
This invention relates to the discovery of novel polymorphic forms of naltrexone, including solvates, hydrates, anhydrous and other crystalline forms and combinations thereof. These novel forms of naltrexone impart advantages in pharmaceutical formulations incorporating them, including sustained release, or long acting, formulations.
Polymorphic forms of naltrexone
This invention relates to the discovery of novel polymorphic forms of naltrexone, including solvates, hydrates, anhydrous and other crystalline forms and combinations thereof. These novel forms of naltrexone impart advantages in pharmaceutical formulations incorporating them, including sustained release, or long acting, formulations.
POLYMORPHIC FORMS OF NALTREXONE
This invention relates to the discovery of novel polymorphic forms of naltrexone, including solvates, hydrates, anhydrous and other crystalline forms and combinations thereof. These novel forms of naltrexone impart advantages in pharmaceutical formulations incorporating them, including sustained release, or long acting, formulations.
POLYMORPHIC FORMS OF NALTREXONE
This invention relates to the discovery of novel polymorphic forms of naltrexone, including solvates, hydrates, anhydrous and other crystalline forms and combinations thereof. These novel forms of naltrexone impart advantages in pharmaceutical formulations incorporating them, including sustained release, or long acting, formulations.
MORPHINAN DERIVATIVE AND MEDICAL USAGE THEREOF
The purpose of the present invention is to provide a compound useful as a prophylactic or therapeutic agent for various diseases and symptoms related to orexin receptors, and a medical usage of the same.
The present invention provides a morphinan derivative represented by the general formula (I) below or a pharmaceutically acceptable acid addition salt thereof, the morphinan derivative having excellent selectivity for and antagonism against orexin receptors and excellent therapeutic and prophylactic effects on drug dependence, and an orexin receptor antagonist and a therapeutic or prophylactic agent for drug dependence each containing it as an active ingredient.
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