IP Library Granted Patent US 11,083,733
Granted Patent B2
US 11,083,733 · App. 17/120,678 · Granted Aug 10, 2021

Betulin-containing birch bark extracts and their formulation

Inventors: John Ashleigh Watson (Walenstadt, CH); Sebastian Jäger (Wiernsheim, DE); Tobias Zahn (Pforzheim, DE)
Assignee: Amryt Research Limited
A61K31/56A61K31/045A61K36/185A61L15/44A61L26/0066A61K9/0014A61K9/06A61K9/107A61K9/122A61K45/06A61K2236/00A61L2300/30
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Quick Facts
Patent No.
US 11,083,733
App. No.
17/120,678
Granted
Aug 10, 2021
Kind
B2
Abstract

The present disclosure relates to birch bark extracts, methods of producing such extracts, stable pharmaceutical compositions containing such extracts and methods of using of such extracts. The birch bark extracts of the present disclosure contain triterpenes, which are known to improve wound healing.

Claims (35)

1. A sterile oleogel comprising about 1 wt. % to about 20 wt. % of particles of a solid birch bark extract having an average particle size of less than about 50 μm, dispersed in one or more nonpolar liquids;

wherein the solid birch bark extract comprises at least about 70 wt. % betulin and one or more triterpenes selected from the group consisting of betulinic acid, oleanolic acid, erythrodiol, and lupeol; and

wherein the oleogel is sterilized by ionizing irradiation at doses ranging from about 11 to about 40 kGy.

2. The sterile oleogel of claim 1 , wherein the oleogel is sterilized by ionizing irradiation at doses ranging from about 11 to about 20 kGy.

3. The sterile oleogel of claim 1 , wherein the ionizing radiation is X-ray or gamma radiation.

4. The sterile oleogel of claim 1 , wherein the dispersed solid birch bark extract particles are the only oleogel forming agent in the oleogel.

5. The sterile oleogel of claim 1 , wherein the oleogel comprises about 10 wt. % of particles of the solid birch bark extract.

6. The sterile oleogel of claim 1 , wherein the nonpolar liquid comprises at least one C7 or greater hydrocarbon.

7. The sterile oleogel of claim 1 , wherein the nonpolar liquid comprises one or more vegetable oils.

8. The sterile oleogel of claim 7 , wherein the nonpolar liquid is sunflower oil.

9. The sterile oleogel of claim 1 , wherein the oleogel is substantially free of solid birch bark extract particles having a size greater than about 50 μm.

10. The sterile oleogel of claim 1 , wherein the segregation of the nonpolar liquid from the oleogel is less than about 10% after centrifuging at 25° C. for 30 min at 2750 g.

11. The sterile oleogel of claim 1 , wherein the viscosity at 200/s of the oleogel ranges from about 0.5 to about 4 Pa·s and the thixotropy value of the oleogel ranges from about 200 to about 1200 Pa·s as measured according to the rotating viscometer method described in Ph. Eur. 2.2.10 using a cone-plate viscometer.

12. An oleogel comprising about 1 wt. % to about 20 wt. % of particles of a solid birch bark extract having an average particle size of less than about 50 μm, dispersed in one or more nonpolar liquids;

wherein the solid birch bark extract comprises at least about 70 wt. % betulin and one or more triterpenes selected from the group consisting of betulinic acid, oleanolic acid, erythrodiol, and lupeol; and

the oleogel has a consistency ranging from about 300-3000 mN; wherein the consistency is the force (mN) needed to penetrate 1 cm into the oleogel as measured using a texture analyser with a 1.27 cm cylindrical penetrating object, and the speed of penetration is 0.4 mm/s.

13. The oleogel of claim 12 , wherein the dispersed solid birch bark extract particles are the only oleogel forming agent in the oleogel.

14. The oleogel of claim 12 , wherein the oleogel comprises about 10 wt. % of particles of the solid birch bark extract.

15. The oleogel of claim 12 , wherein the nonpolar liquid comprises at least one C7 or greater hydrocarbon.

16. The oleogel of claim 12 , wherein the nonpolar liquid comprises one or more vegetable oils.

17. The oleogel of claim 16 , wherein the nonpolar liquid is sunflower oil.

18. The oleogel of claim 12 , wherein the oleogel is substantially free of solid birch bark extract particles having a size greater than about 50 μm.

19. The oleogel of claim 12 , wherein the segregation of the nonpolar liquid from the oleogel is less than about 10% after centrifuging at 25° C. for 30 min at 2750 g.

20. The oleogel of claim 12 , wherein the viscosity at 200/s of the oleogel ranges from about 0.5 to about 4 Pa·s and the thixotropy value of the oleogel ranges from about 200 to about 1200 Pa·s as measured according to the rotating viscometer method described in Ph. Eur. 2.2.10 using a cone-plate viscometer.

21. An oleogel, prepared by a process comprising:

dispersing about 1 wt. % to about 20 wt. % of a dried solid birch bark extract having an average particle size of less than about 50 μm in one or more non-polar liquids;

wherein the solid birch bark extract comprises at least about 70 wt. % betulin and one or more triterpenes selected from the group consisting of betulinic acid, oleanolic acid, erythrodiol, and lupeol; and

wherein the nonpolar liquid has a peroxide value less than about 3.

22. The oleogel of claim 21 , wherein the oleogel comprises about 10 wt. % of particles of the solid birch bark extract.

23. The oleogel of claim 21 , wherein the nonpolar liquid comprises at least one C7 or greater hydrocarbon.

24. The oleogel of claim 21 , wherein the nonpolar liquid comprises one or more vegetable oils.

25. The oleogel of claim 24 , wherein the nonpolar liquid is sunflower oil.

26. The oleogel of claim 21 , wherein the oleogel is substantially free of solid birch bark extract particles having a size greater than about 50 μm.

27. The oleogel of claim 21 , wherein the segregation of the nonpolar liquid from the oleogel is less than about 10% after centrifuging at 25° C. for 30 min at 2750 g.

28. The oleogel of claim 21 , wherein the viscosity at 200/s of the oleogel ranges from about 0.5 to about 4 Pa·s and the thixotropy value of the oleogel ranges from about 200 to about 1200 Pa·s as measured according to the rotating viscometer method described in Ph. Eur. 2.2.10 using a cone-plate viscometer.

Assignments (4)
MERGER Recorded Jan 12, 2024
From: AMRYT RESEARCH LIMITED
To: AMRYT PHARMACEUTICALS DESIGNATED ACTIVITY COMPANY
Reel/Frame 066110/0568 →
RELEASE OF SECURITY INTEREST Recorded Apr 13, 2023
From: ARES CAPITAL CORPORATION, AS ADMINISTRATIVE AGENT
To: AMRYT GENETICS LIMITED; AMRYT PHARMACEUTICALS, INC.; AMRYT ENDO, INC.; AMRYT RESEARCH LIMITED
Reel/Frame 063318/0849 →
SECURITY INTEREST Recorded Feb 18, 2022
From: AMRYT RESEARCH LIMITED
To: ARES CAPITAL CORPORATION, AS ADMINISTRATIVE AGENT
Reel/Frame 059049/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2020
From: ZAHN, TOBIAS; WATSON, JOHN ASHLEIGH; JÄGER, SEBASTIAN
To: AMRYT RESEARCH LIMITED
Reel/Frame 054651/0507 →
Continuity (3)
Continuation 16959098
Provisional Application 62613646 · Jan 4, 2018
Related Publication 20210093647A1 · Apr 1, 2021
Cited By (1)
US 12,268,695