IP Library Granted Patent US 11,261,416
Granted Patent B2
US 11,261,416 · App. 15/579,208 · Granted Mar 1, 2022

Fixed-bed bioreactor with constant-flow pump / tubing system

Inventors: Piia Kristiina Valonen (Kuopio, FI); Hanna P. Lesch (Kuopio, FI); Eva Kristiina Rasanen (Hiltulanlahti, FI); Tarja Hannele Tuunanen (Copy, FI); Minna Kristiina Karhinen (Kuopio, FI); Seppo Yla-Herttuala (Kuopio, FI)
Assignee: Trizell Ltd.
C12M29/18C07K14/005C12M1/02C12M25/18C12M29/10C12M41/26C12M41/46C12N15/86C12P21/02C12N2740/15051
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Quick Facts
Patent No.
US 11,261,416
App. No.
15/579,208
Granted
Mar 1, 2022
Kind
B2
Abstract

We have modified a commercially-available adherent cell culture bioreactor in several ways to increase productivity of cultured cells, while decreasing contamination risk. We found that modifying a commercially-available adherent cell culture bioreactor to provide for slower cell culture medium flow unexpectedly and dramatically increases the productivity of the cultured adherent cells. We also developed a new sampling manifold configuration and new way of taking samples, to reduce contamination risk.

Claims (50)

1. An adherent cell culture bioreactor comprising a substrate for adherent cell growth, a feed-in pump and a feed-out pump, wherein the feed-in pump and the feed-out pump are configured to provide a constant-rate output of cell culture media of less than about 50 mL of media per 1,800 cells per day.

2. The adherent cell culture bioreactor of claim 1 , wherein the feed-in pump and the feed-out pump are able to provide a minimum constant-rate output of not more than about 16.7 mL of media per 1,800 cells per day.

3. The adherent cell culture bioreactor of claim 1 , wherein the substrate comprises at least about 60 m 2 of surface area for adherent cell culture.

4. The adherent cell culture bioreactor of claim 3 , wherein the substrate comprises at least about 400 m 2 of surface area for adherent cell culture.

5. The adherent cell culture bioreactor of claim 1 , wherein the bioreactor provides a volume of at least about 20 liters of cell culture media.

6. A method for culturing adherent cells on a substrate comprising:

a. obtaining the bioreactor of claim 1 , and then

b. adding to the bioreactor cell culture media and cells, and then

c. culturing the cells in adherent mode on the substrate, while circulating the cell culture media about the cells at a rate of less than about 50 mL of media per 1,800 cells per day.

7. The method of claim 6 , wherein the substrate comprises at least about 400 m 2 of surface area for adherent cell culture.

8. The method of claim 6 , wherein the bioreactor provides a volume of at least about 20 liters of cell culture media.

9. An adherent-cell culture bioreactor comprising a substrate for adherent cell growth, a feed-in pump and a feed-out pump, wherein the feed-in pump and the feed-out pump are configured to be able to provide a constant-rate output of cell culture media at a pump output volume sufficient to maintain in said cell culture medium a parameter selected from the group consisting of: concentration of lactate in said medium of not more than about 1.58 grams/liter; and concentration of glucose in said medium of between about 0.5 and 1.0 grams/liter.

10. The adherent cell culture bioreactor of claim 9 , wherein the bioreactor provides a volume of at least about 20 liters of cell culture media.

11. The adherent cell culture bioreactor of claim 9 , wherein the substrate comprises at least about 60 m 2 of surface area for adherent cell culture.

12. The adherent cell culture bioreactor of claim 11 , wherein the substrate comprises at least about 400 m 2 of surface area for adherent cell culture.

13. The adherent cell bioreactor of claim 9 , wherein the feed-in pump and the feed-out pump are configured to provide a constant-rate output of cell culture medium at a pump output volume sufficient to maintain in said cell culture medium a concentration of lactate in said medium of not more than about 1.58 grams/liter.

14. The adherent cell bioreactor of claim 9 , wherein the feed-in pump and the feed-out pump are configured to provide a constant-rate output of cell culture medium at a pump output volume sufficient to maintain in said cell culture medium a concentration of glucose in said medium of between about 0.5 and 1.0 grams/liter.

15. The adherent cell bioreactor of claim 9 , wherein the feed-in pump and the feed-out pump are configured to provide a constant-rate output of cell culture medium at a pump output volume sufficient to maintain in said cell culture medium a concentration of glucose in said medium of not less than about 2.89 grams/liter.

16. A method for culturing adherent cells on a substrate comprising:

a. obtaining the bioreactor of claim 9 , and then

b. adding to the bioreactor cell culture media and cells, and then

c. culturing the cells in adherent mode on the substrate, while circulating the cell culture media about the cells at a rate to maintain in said cell culture medium a parameter selected from the group consisting of: concentration of lactate in said medium of not more than about 1.58 grams/liter; concentration of glucose in said medium of between about 0 .5 and 1.0 grams/liter;

and concentration of glucose in said medium of not less than about 2.89 grams/liter.

17. The method of claim 16 , the substrate providing at least about 60 m 2 of surface area for adherent cell culture.

18. The method of claim 17 , the substrate providing at least about 400 m 2 of surface area for adherent cell culture.

19. The method of claim 16 , the bioreactor configured to contain at least about 20 liters of cell culture media.

20. An adherent cell culture bioreactor comprising a substrate for adherent cell growth, a feed-in pump and a feed-out pump, wherein the feed-in pump and the feed-out pump are configured to provide a constant-rate output of media at an output volume of less than about 50 mL media per m 2 substrate area per day.

21. The adherent cell culture bioreactor of claim 20 , wherein the bioreactor provides a volume of at least about 20 liters of cell culture media.

22. The adherent cell culture bioreactor of claim 20 , wherein the substrate comprises at least about 60 m 2 of surface area for adherent cell culture.

23. The adherent cell culture bioreactor of claim 22 , wherein the substrate comprises at least about 400 m 2 of surface area for adherent cell culture.

24. The adherent cell culture bioreactor of claim 20 , wherein the feed-out pump is connected to the bioreactor via a tube having an interior diameter sized to accommodate the pump output volume of fluid without the formation of air bubbles inside the tube.

25. A method for culturing adherent cells on a substrate comprising:

a. obtaining the bioreactor of claim 20 , and then

b. adding to the bioreactor cell culture media and cells, and then

c. culturing the cells in adherent mode on the substrate, while circulating the cell culture media about the cells at a rate of less than about 50 mL of media per m 2 substrate area per day.

26. The method of claim 25 , wherein the substrate comprises at least about 60 m 2 of surface area for adherent cell culture.

27. The method of claim 26 , wherein the substrate comprises at least about 400 m 2 of surface area for adherent cell culture.

28. The method of claim 25 , wherein the bioreactor provides a volume of at least about 20 liters of cell culture media.

29. An adherent cell culture bioreactor comprising a substrate for adherent cell growth, a feed-in pump and a feed-out pump, wherein the feed-in pump and the feed-out pump are configured to provide a constant-rate output of cell culture media sufficient to exchange the cell culture media in the vessel less than once every about 3½ days.

30. The adherent cell culture bioreactor of claim 29 , wherein the feed-in pump and feed-out pumps are configured to provide a constant-rate output of cell culture media sufficient to exchange the cell culture media in the bioreactor at most once every about 4½ days.

31. The adherent cell culture bioreactor of claim 29 , wherein the substrate comprises at least about 60 m 2 of surface area for adherent cell culture.

32. The adherent cell culture bioreactor of claim 31 , wherein the substrate comprises at least about 400 m 2 of surface area for adherent cell culture.

33. The adherent cell culture bioreactor of claim 29 , wherein the bioreactor provides a volume of at least about 20 liters of cell culture media.

34. A method for culturing adherent cells on a substrate comprising:

a. obtaining the bioreactor of claim 29 , and then

b. adding to the bioreactor cell culture media and cells, and then

c. culturing the cells in adherent mode on the substrate, while circulating the cell culture media about the cells at a rate of less than about 50 mL of media per 1,800 cells per day.

35. The method of claim 34 , wherein the substrate comprises at least about 400 m 2 of surface area for adherent cell culture.

36. The method of claim 34 , wherein the bioreactor provides a volume of at least about 20 liters of cell culture media.

37. The adherent cell culture bioreactor of claim 1 , wherein the substrate for adherent cell culture comprises medical grade polyester microfibers.

Assignments (6)
CHANGE OF NAME Recorded Jul 10, 2025
From: TRIZELL LTD
To: FERRING VENTURES LTD
Reel/Frame 071655/0966 →
RELEASE OF SECURITY INTEREST Recorded Jan 31, 2022
From: PHARMACEUTICAL PATENT ATTORNEYS, LLC
To: TRIZELL LTD., F/K/A FINVECTOR LTD. F/K/A ARK THERAPEUTICS LTD.
Reel/Frame 058826/0044 →
SECURITY INTEREST Recorded Nov 19, 2020
From: TRIZELL LTD.
To: PHARMACEUTICAL PATENT ATTORNEYS, LLC
Reel/Frame 054775/0546 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2020
From: YLA-HERTTUALA, SEPPO
To: TRIZELL LTD.
Reel/Frame 052316/0042 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2019
From: VALONEN, PIIA KRISTIINA; LESCH, HANNA P.; MULLER, ACHIM; RASANEN, EVA KRISTIINA; TUUNANEN, TARJA HANNELE; KARNAATTU, MILLA JONNA KAROLIINA; KARHINEN, MINNA
To: TRIZELL LTD
Reel/Frame 048658/0216 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2017
From: VALONEN, PIIA KRISTIINA; LESCH, HANNA P.; MULLER, ACHIM; RASANEN, EVA KRISTIINA; TUUNANEN, TARJA HANNELE; KARNAATTU, MILLA JONNA KAROLIINA; KARHINEN, MINNA
To: TRIZELL LTD
Reel/Frame 044281/0962 →
Continuity (2)
Provisional Application 62322651 · Apr 14, 2016
Related Publication 20190031998A1 · Jan 31, 2019