IP Library Granted Patent US 9,228,579
Granted Patent B2
US 9,228,579 · App. 13/125,399 · Granted Jan 5, 2016

Method and device for industrial biolayer cultivation

Inventor: Per Stobbe (Holte, DK)
Assignee: Stobbe Tech A/S
F04B43/0081C12M23/34C12M23/42C12M25/14F04B43/073F04B43/0733F04B43/0736
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Quick Facts
Patent No.
US 9,228,579
App. No.
13/125,399
Granted
Jan 5, 2016
Kind
B2
Abstract

A compact, high-yield, bio-reactor for use as small, medium and large-scale production unit for therapeutic proteins, proteins in general and enzymes based on controlled activity of the cells or micro organisms and the production of such as high value antibodies for pharmaceutical and/or bio-diagnostic applications.

Claims (21)

1. A bio-reactor for culturing immobilized living cells wherein said bio-reactor comprises a permeable disc comprising a matrix comprising a plurality of fibres defining a plurality of inter-connected, open pores extending through the disc, a bio-reactor inlet port and a bio-reactor outlet port,

wherein said matrix is suitable for anchoring living cells,

wherein said disc is in direct contact with one feeding spacer section and one drainage spacer section, respectively, on opposite sides of the disc,

wherein living cells are capable of adhering to the fibres and capable of residing in at least some of the inter-connected, open pores,

wherein the feeding spacer section and drainage spacer section is a member selected from the group consisting of a layer of flow-nets, screens, corrugated sheets, nettings, rib stiffeners, and set of ribs or discs with a radial set of ribs, and

wherein a gradient free laminar flow is created in the matrix when fluid is introduced into the bio-reactor inlet port.

2. The bio-reactor of claim 1 comprising a plurality of permeable discs that are alternately separated by feeding spacer sections and drainage spacer sections, respectively, so that each feeding spacer section provides feeding liquid to each of a first set of two adjacently located, permeable discs each drainage spacer section receives feeding fluid from each of a second set of two adjacently located permeable discs.

3. The bio-reactor according to claim 1 , wherein the open pores of the matrix of the permeable discs are larger in diameter than the living cells to be cultivated, thereby allowing said cells to reside in said open pores during all or part of the duration of the cultivation.

4. The bio-reactor according to claim 1 wherein the bio-reactor is fitted with a pump in order to ensure that a desirable flow rate is obtained.

5. The bio-reactor according to claim 4 , wherein the bio-reactor is further fitted with sensors and a control unit for controlling the seeding of cells and the progression of the cultivation.

6. The bio-reactor according to claim 1 , wherein the thickness of the disc is less than 500 millimeters and more than 1 millimeter and wherein the diameter of the disc, including an optionally cut-out, central portion thereof, is less than 500 centimeters and more than 5 centimeters.

7. The bio-reactor according to claim 1 , wherein the fibres has an average diameter in the range of from 0.01 micrometer to less than 100 micrometers.

8. The bio-reactor according to claim 1 , wherein the packing density of the permeable disc fibres is in the range of from 25 to 400 kilogram/meter 3 .

9. The bio-reactor according to claim 1 , wherein the volume of the open pores of the matrix of the permeable discs is more than 40% of the volume of the disc itself.

10. The bio-reactor according to claim 1 , wherein the matrix is made of non-woven fabric, woven fabric or knitted fabric.

11. The bio-reactor according to claim 1 , wherein the matrix is made of fibres made of a material selected from the group consisting of ceramics, metals, cellulose or polymers such as polystyrene, polyacrylamide, polyester, nylon, polyvinyl chloride and glass, and collagen, dextran, agar, gelatine.

12. The bio-reactor according to claim 1 , wherein the matrix is made of a material having an electrical charge.

13. The bio-reactor according to claim 1 , wherein the reactor further comprises means for measuring operation conditions selected from means for measuring temperature, pH, glucose concentration, oxygen concentration and/or carbon dioxide concentration.

14. The bio-reactor according to claim 1 , wherein the reactor further comprises means for monitoring the degree of needed replenishment of the liquid.

15. The bio-reactor according to claim 1 , wherein the reactor further comprises means for regulating the temperature of the liquid.

16. The bio-reactor according to claim 1 , wherein the reactor further comprises a surrounding bag.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2022
From: STOBBE PHARMA GMBH
To: STOBBE GMBH
Reel/Frame 061483/0141 →
CHANGE OF NAME Recorded Sep 7, 2022
From: STOBBE PHARMA TECH GMBH
To: STOBBE PHARMA GMBH
Reel/Frame 061456/0278 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2018
From: STOBBE TECH A/S
To: STOBBE PHARMA TECH GMBH
Reel/Frame 046833/0291 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2011
From: STOBBE, PER
To: STOBBE TECH A/S
Reel/Frame 026163/0467 →
Priority Claims (4)
DK PA 2008 01815 · Dec 19, 2008 · national
DK PA 2009 01131 · Oct 19, 2009 · national
DK PA 2009 01142 · Oct 21, 2009 · national
DK PA 2009 01165 · Oct 29, 2009 · national
Continuity (1)
Related Publication 20110263021A1 · Oct 27, 2011