IP Library Granted Patent US 11,400,052
Granted Patent B2
US 11,400,052 · App. 16/688,797 · Granted Aug 2, 2022

Alcohol-resistant drug formulations

Inventors: Edwin Walsh (Dublin, IE); Clark Patrick Allphin (Seattle, WA)
Assignee: Jazz Pharmaceuticals Ireland Limited
A61K9/2866A61K9/2846A61K45/06
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,400,052
App. No.
16/688,797
Granted
Aug 2, 2022
Kind
B2
Abstract

The invention relates to modified release oral formulations of therapeutic agents, including gamma hydroxybutyrate (GHB), paracetamol, codeine or oxycodone, which are resistant to alcohol induced dose dumping. Provided are formulations that have improved resistance to rapid release of the active ingredient in the presence of increasing amounts of alcohol. Also provided are formulations that can reduce or prevent the release of the active ingredient following exposure to alcohol-containing media. The invention also relates to methods of making the formulations, and methods of their use for the treatment of sleep disorders such as apnea, sleep time disturbances, narcolepsy, cataplexy, sleep paralysis, hypnagogic hallucination, sleep arousal, insomnia, and nocturnal myoclonus.

Claims (59)

1. A pharmaceutical formulation comprising a film coated drug carrier core, wherein the drug carrier core comprises gamma hydroxybutyrate (GHB) or a pharmaceutically acceptable salt thereof, and wherein the film coating comprises a polymer blend of cellulose and polymethacrylate polymer disposed over the drug carrier core;

wherein the polymer blend comprises at least two alcohol-soluble polymers; at least one alcohol-soluble polymer and at least one alcohol-insoluble polymer; or at least two alcohol-insoluble polymers;

wherein the polymer blend provides an enteric dissolution; and

wherein the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in a second stage of a two-stage dissolution test is decreased after the formulation is exposed to about 5% to about 40% v/v ethanol in a first stage as compared to the release rate of the therapeutic agent from the formulation in the second stage when the formulation is not exposed to ethanol in the first stage; wherein the first stage of the two-stage dissolution test is in 0.1N HCl buffer and the second stage is in Tris pH 6.8 buffer.

2. A method of treatment or prophylaxis of a disease, disorder or symptom comprising administration of a formulation of claim 1 to a patient in need thereof, wherein the disease, disorder or symptom is selected from the group consisting of sleeping disorders, drug abuse, alcohol and/or opiate withdrawal, a reduced level of growth hormone, anxiety, analgesia, effects in certain neurological disorders, Parkinson's Disease, depression, fibromyalgia, endocrine disturbances and tissue protection following hypoxia/anoxia, stroke, myocardial infarction, an increased level of intracranial pressure, excessive daytime sleepiness, cataplexy, sleep paralysis, apnea, narcolepsy, sleep time disturbances, rapid eye movement (REM) sleep behavior disorder (RBD), hypnagogic hallucinations, sleep arousal, insomnia, idiopathic hypersomnia, essential tremor and nocturnal myoclonus.

3. A pharmaceutical formulation comprising a film coated drug carrier core, wherein the drug carrier core comprises gamma hydroxybutyrate (GHB) or a pharmaceutically acceptable salt thereof, and wherein the film coating comprises a polymer blend of cellulose and polymethacrylate polymer disposed over the drug carrier core;

wherein the polymer blend comprises at least two alcohol-soluble polymers; at least one alcohol-soluble polymer and at least one alcohol-insoluble polymer; or at least two alcohol-insoluble polymers;

wherein the polymer blend provides an enteric dissolution; and

wherein not more than 0% to about 40% of the GHB or a pharmaceutically acceptable salt thereof is released from the formulation within about 1 hour of exposure to an acidic aqueous buffer comprising about 5% v/v to about 20% v/v ethanol.

4. A pharmaceutical formulation comprising a film coated drug carrier core, wherein the drug carrier core comprises gamma hydroxybutyrate (GHB) or a pharmaceutically acceptable salt thereof, and wherein the film coating comprises a polymer blend of cellulose and polymethacrylate polymer disposed over the drug carrier core;

wherein the polymer blend comprises at least two alcohol-soluble polymers; at least one alcohol-soluble polymer and at least one alcohol-insoluble polymer; or at least two alcohol-insoluble polymers;

wherein the polymer blend provides an enteric dissolution; and

wherein a release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation when about 5% v/v to about 35% v/v ethanol is present in 0.1 N HCl buffer dissolution media is within about 1% to about 10% of the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in the absence of ethanol for about 60 minutes in 0.1 N HCl buffer dissolution media.

5. The formulation of claim 1 , wherein the polymer blend comprises ethyl cellulose and at least one polymethacrylate.

6. The formulation of claim 1 , wherein the polymer blend comprises at least one polymer with pH-dependent dissolution and at least one polymer with pH-independent dissolution properties.

7. The formulation of claim 6 , wherein the polymer with pH-independent dissolution properties is selected from the group consisting of ethyl cellulose, ethyl acrylate methyl methacrylate co-polymer, ethyl acrylate-methyl methacrylate-trimethylammonioethyl methacrylate chloride co-polymer, and combinations thereof.

8. The formulation of claim 6 , wherein the polymer with pH-dependent dissolution properties is selected from the group consisting of methacrylic acid-ethyl acrylate co-polymer, methacrylic acid methyl methacrylate co-polymer, methyl acrylate-methyl methacrylate-methacrylic acid co-polymer, and combinations thereof.

9. The formulation of claim 6 , wherein the polymer with pH-dependent dissolution properties is a methacrylic acid-ethyl acrylate co-polymer, and wherein the ratio of methacrylic acid to ethyl acrylate is about 1:1.

10. The formulation of claim 1 , wherein the film coating is a first coating and the formulation further comprises a second coating comprising at least one polymer, wherein the second coating is disposed over the first coating.

11. The formulation of claim 10 , wherein the second coating comprises a blend of at least two polymers.

12. The formulation of claim 11 , wherein the blend of at least two polymers comprises ethyl cellulose and methacrylic acid-ethyl acrylate co-polymer.

13. The formulation of claim 10 , wherein the second coating further comprises a polysaccharide gum selected from the group consisting of acacia gum, guar gum, tragacanth gum, xanthan gum, and mixtures thereof.

14. The formulation of claim 10 , wherein the polymer in the second coating is a cellulose polymer, and wherein the second coating further comprises guar gum, which is present at 1-15% w/w of the cellulose polymer.

15. The formulation of claim 1 , wherein the pharmaceutically acceptable salt of GHB is selected from the group consisting of sodium oxybate, calcium oxybate, potassium oxybate, magnesium oxybate, and combinations thereof.

16. The pharmaceutical formulation of claim 1 , wherein the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in the second stage is decreased after the formulation is exposed to about 10% v/v ethanol in the first stage for about 15 minutes to about 30 minutes as compared to the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in the second stage when the formulation is not exposed to ethanol in the first stage.

17. The pharmaceutical formulation of claim 1 , wherein the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in the second stage is decreased after the formulation is exposed to about 20% v/v ethanol in the first stage for about 15 minutes to about 120 minutes as compared to the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in the second stage when the formulation is not exposed to ethanol in the first stage.

18. The pharmaceutical formulation of claim 4 , wherein the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation when about 5% v/v to about 20% v/v ethanol is present in the dissolution media is within about 1% to about 10% of the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in the absence of ethanol for about 1 hour to about 2 hours when tested in 0.1N HCl.

19. A pharmaceutical formulation comprising a film coated drug carrier core, wherein the drug carrier core comprises gamma hydroxybutyrate (GHB) or a pharmaceutically acceptable salt thereof, and wherein the film coating comprises a polymer blend of cellulose and polymethacrylate polymer disposed over the drug carrier core;

wherein the polymer blend comprises at least two alcohol-soluble polymers; at least one alcohol-soluble polymer and at least one alcohol-insoluble polymer; or at least two alcohol-insoluble polymers; and

wherein the polymethacrylate polymer in the polymer blend is methacrylic acid-ethyl acrylate co-polymer, methacrylic acid methyl methacrylate co-polymer, or methyl acrylate-methyl methacrylate-methacrylic acid co-polymer.

20. A pharmaceutical formulation comprising a film coated drug carrier core, wherein the drug carrier core comprises gamma hydroxybutyrate (GHB) or a pharmaceutically acceptable salt thereof, and wherein the film coating comprises a polymer blend of cellulose and polymethacrylate polymer at a weight ratio of about 1:3 to about 3:1 disposed over the drug carrier core; and

wherein the polymethacrylate polymer in the polymer blend is methacrylic acid-ethyl acrylate co-polymer, methacrylic acid methyl methacrylate co-polymer, or methyl acrylate-methyl methacrylate-methacrylic acid co-polymer.

21. The pharmaceutical formulation of claim 20 , wherein the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in a second stage of a two-stage dissolution test is decreased after the formulation is exposed to about 5% to about 40% v/v ethanol in a first stage as compared to the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in the second stage when the formulation is not exposed to ethanol in the first stage; wherein the first stage of the two-stage dissolution test is in 0.1N HCl buffer and the second stage is in Tris pH 6.8 buffer.

22. The pharmaceutical formulation of claim 20 , wherein not more than 0% to about 40% of the GHB or a pharmaceutically acceptable salt thereof is released from the formulation within about 1 hour of exposure to an acidic aqueous buffer comprising about 5% v/v to about 20% v/v ethanol.

23. The pharmaceutical formulation of claim 20 , wherein a release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation when about 5% v/v to about 35% v/v ethanol is present in 0.1 N HCl buffer dissolution media is within about 1% to about 10% of the release rate of the GHB or a pharmaceutically acceptable salt thereof from the formulation in the absence of ethanol for about 60 minutes in 0.1 N HCl buffer dissolution media.

24. The pharmaceutical formulation of claim 20 , wherein the pharmaceutically acceptable salt of GHB is selected from the group consisting of sodium oxybate, calcium oxybate, potassium oxybate, magnesium oxybate, and combinations thereof.

25. The formulation of claim 20 , wherein the polymer blend comprises ethyl cellulose.

26. The formulation of claim 20 , wherein the polymer blend comprises methacrylic acid-ethyl acrylate co-polymer, and wherein the ratio of methacrylic acid to ethyl acrylate is about 1:1.

27. The formulation of claim 20 , wherein the film coating is a first coating and the formulation further comprises a second coating comprising at least one polymer, wherein the second coating is disposed over the first coating.

28. The formulation of claim 27 , wherein the second coating comprises ethyl cellulose and methacrylic acid-ethyl acrylate co-polymer.

29. The formulation of claim 27 , wherein the second coating further comprises a polysaccharide gum selected from the group consisting of acacia gum, guar gum, tragacanth gum, xanthan gum, and mixtures thereof.

30. The formulation of claim 27 , wherein the polymer in the second coating is a cellulose polymer, and wherein the second coating further comprises guar gum, which is present at 1-15% w/w of the cellulose polymer.

31. The formulation of claim 19 , wherein the polymer blend comprises ethyl cellulose.

32. The formulation of claim 19 , wherein the polymer blend comprises methacrylic acid-ethyl acrylate co-polymer, and wherein the ratio of methacrylic acid to ethyl acrylate is about 1:1.

33. The formulation of claim 19 , wherein the film coating is a first coating and the formulation further comprises a second coating comprising at least one polymer, wherein the second coating is disposed over the first coating.

34. The formulation of claim 33 , wherein the second coating comprises ethyl cellulose and methacrylic acid-ethyl acrylate co-polymer.

35. The formulation of claim 33 , wherein the polymer in the second coating is a cellulose polymer, and wherein the second coating further comprises guar gum, which is present at 1-15% w/w of the cellulose polymer.

36. The formulation of claim 3 , wherein the polymer blend comprises ethyl cellulose.

37. The formulation of claim 3 , wherein the polymer blend comprises methacrylic acid-ethyl acrylate co-polymer, and wherein the ratio of methacrylic acid to ethyl acrylate is about 1:1.

38. The formulation of claim 3 , wherein the film coating is a first coating and the formulation further comprises a second coating comprising at least one polymer, wherein the second coating is disposed over the first coating.

39. The formulation of claim 38 , wherein the second coating comprises ethyl cellulose and methacrylic acid-ethyl acrylate co-polymer.

40. The formulation of claim 38 , wherein the polymer in the second coating is a cellulose polymer, and wherein the second coating further comprises guar gum, which is present at 1-15% w/w of the cellulose polymer.

41. A method of treatment or prophylaxis of a disease, disorder or symptom comprising administration of a formulation of claim 19 to a patient in need thereof, wherein the disease, disorder or symptom is selected from the group consisting of sleeping disorders, drug abuse, alcohol and/or opiate withdrawal, a reduced level of growth hormone, anxiety, analgesia, effects in certain neurological disorders, Parkinson's Disease, depression, fibromyalgia, endocrine disturbances and tissue protection following hypoxia/anoxia, stroke, myocardial infarction, an increased level of intracranial pressure, excessive daytime sleepiness, cataplexy, sleep paralysis, apnea, narcolepsy, sleep time disturbances, rapid eye movement (REM) sleep behavior disorder (RBD), hypnagogic hallucinations, sleep arousal, insomnia, idiopathic hypersomnia, essential tremor and nocturnal myoclonus.

42. A method of treatment or prophylaxis of a disease, disorder or symptom comprising administration of a formulation of claim 20 to a patient in need thereof, wherein the disease, disorder or symptom is selected from the group consisting of sleeping disorders, drug abuse, alcohol and/or opiate withdrawal, a reduced level of growth hormone, anxiety, analgesia, effects in certain neurological disorders, Parkinson's Disease, depression, fibromyalgia, endocrine disturbances and tissue protection following hypoxia/anoxia, stroke, myocardial infarction, an increased level of intracranial pressure, excessive daytime sleepiness, cataplexy, sleep paralysis, apnea, narcolepsy, sleep time disturbances, rapid eye movement (REM) sleep behavior disorder (RBD), hypnagogic hallucinations, sleep arousal, insomnia, idiopathic hypersomnia, essential tremor and nocturnal myoclonus.

43. The formulation of claim 1 , wherein the film coating is disposed over the drug carrier core as an aqueous dispersion of the polymer blend.

44. The formulation of claim 3 , wherein the film coating is disposed over the drug carrier core as an aqueous dispersion of the polymer blend.

45. The formulation of claim 4 , wherein the film coating is disposed over the drug carrier core as an aqueous dispersion of the polymer blend.

46. The formulation of claim 19 , wherein the film coating is disposed over the drug carrier core as an aqueous dispersion of the polymer blend.

47. The formulation of claim 20 , wherein the film coating is disposed over the drug carrier core as an aqueous dispersion of the polymer blend.

Assignments (2)
SECURITY AGREEMENT Recorded May 5, 2021
From: CAVION, INC.; CELATOR PHARMACEUTICALS, INC.; JAZZ PHARMACEUTICALS IRELAND LIMITED; JAZZ PHARMACEUTICALS, INC.
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 056151/0010 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2020
From: WALSH, EDWIN; ALLPHIN, CLARK
To: JAZZ PHARMACEUTICALS IRELAND LIMITED
Reel/Frame 052851/0300 →
Continuity (3)
Provisional Application 62769380 · Nov 19, 2018
Provisional Application 62769382 · Nov 19, 2018
Related Publication 20200330393A1 · Oct 22, 2020
Cited By (15)
US 12,186,296 US 12,186,298 US 12,226,377 US 12,226,388 US 12,226,389 US 12,239,625 US 12,257,223 US 12,263,150 US 12,263,151 US 12,295,926 US 12,303,478 US 12,440,449 US 12,478,604 US 12,551,457 US 12,582,622