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US Patent 10172810 Transmucosal ketamine delivery composition

Patent 10172810 was granted and assigned to PHARMACEUTICAL PRODUCTIONS, INC. on January, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
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PHARMACEUTICAL PRODUCTIONS, INC.
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Current Assignee
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PHARMACEUTICAL PRODUCTIONS, INC.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
101728100
Patent Inventor Names
John A. McCarty0
Date of Patent
January 8, 2019
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Patent Application Number
151481060
Date Filed
May 6, 2016
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Patent Citations Received
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US Patent 12064424 Moist oral compositions
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US Patent 11883527 Oral composition and method of manufacture
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US Patent 11889856 Oral foam composition
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US Patent 11969502 Oral products
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US Patent 12016369 Regenerated cellulose substrate for aerosol delivery device
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US Patent 11617744 Moist oral compositions
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US Patent 11672862 Oral products with reduced irritation
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US Patent 11712059 Beaded tobacco material and related method of manufacture
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Patent Primary Examiner
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My-Chau T. Tran
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Patent abstract

Disclosed are preparations and formulations of high thermodynamic activity lipophilic associations (LA), in which there is pairing between an ionizable pharmaceutical agent and a lipophilic species having ionic characteristics opposite to that of the pharmaceutical agent. Such lipophilic associations manifest high thermodynamic activity, as evidenced by their being predominantly in a liquid phase at room temperature or solvated in a lower-than-water dielectric solvent. Further the pharmaceutical agent being solubilized means that dissolution is not rate limiting to transmucosal absorption. This LA or LA-solvate is formulated into a low dielectric dosage form, from when, upon the dosage form's hydration, the pharmaceutical agent is driven through the mucosal tissue and into systemic circulation. The invention therefore provides an enhanced transmucosal drug delivery system for ionizable pharmaceutical agents at or near physiological pH.

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