IP Library Patent Application 11915877
Patent Application
App. No. 11/915,877

FERMENTER SYSTEM FOR BIOTECHNICAL PROCESSES

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Quick Facts
Patent No.
US None
App. No.
11/915,877
Abstract

A fermenter for use in biotechnical processes in particular for culturing cells is disclosed. The object, to provide a fermenter vessel ( 1 ) the inner volume of which can be optically monitored and which fermenter vessel can also be efficiently sterilized, is achieved by a fermenter vessel ( 1 ) having an outside wall ( 2 ) enclosing a vessel volume with a view port ( 7 ) being provided in the outside wall ( 2 ) for inspecting processes within the vessel volume, the view port ( 7 ) having a transparent member ( 8 ) wherein the transparent member ( 8 ) is provided with a heating device.

Claims (35)

1 . Fermenter vessel ( 1 ) having an outside wall ( 2 ) enclosing a vessel volume with a view port ( 7 ) being provided in the outside wall ( 2 ) for inspecting processes within the vessel volume, the view port ( 7 ) having a transparent member ( 8 ) wherein the transparent, member ( 8 ) is provided with a heating device.

2 . Fermenter vessel ( 1 ) according to claim 1 , wherein the heating device comprises a heating lamp ( 9 ) arranged outside the vessel volume.

3 . Fermenter vessel ( 1 ) according to claim 1 , wherein the heating device comprises a heating wire ( 10 ) provided on the surface of the transparent member ( 8 ).

4 . Fermenter vessel ( 1 ) according to claim 3 , wherein the heating wire ( 10 ) is provided on the inner surface of the transparent member ( 8 ).

5 . Fermenter vessel ( 1 ) according to claim 1 , wherein the heating device comprises an internal heating wire ( 12 ) which is incorporated in the transparent member ( 8 ).

6 . Fermenter vessel ( 1 ) having an outside wall ( 2 ) enclosing a vessel volume with a stirring element ( 14 ) arranged inside the vessel volume and with driving means arranged outside the vessel ( 1 ) for rotationally driving the stirring element ( 14 ) with the stirring element ( 14 ) being provided with a first magnetic element ( 17 ) and the driving means being provided with a second magnetic ( 20 ) element wherein the first magnetic element ( 17 ) and the second magnetic element ( 20 ) are coupled via magnetic force.

7 . Fermenter vessel ( 1 ) according to claim 6 , wherein the stirring element ( 14 ) comprises a stirrer shaft ( 16 ) with the first magnetic element ( 17 ) being mounted on the stirrer shaft ( 16 ).

8 . Fermenter vessel ( 1 ) according to claim 7 , wherein the driving means comprise a driving shaft ( 21 ), the second magnetic element ( 20 ) being mounted on the driving shaft ( 21 ).

9 . Fermenter vessel ( 1 ) according to claim 8 , wherein the stirrer shaft ( 16 ) and the driving shaft ( 21 ) extend along a rotational axis.

10 . Fermenter vessel ( 1 ) according to claim 6 , wherein the vessel ( 1 ) has a recess ( 18 ) in the outside wall ( 2 ), the recess ( 18 ) having an annular ( 19 ) wall projecting into the vessel volume wherein the second magnetic element ( 20 ) is arranged inside the recess ( 18 ).

11 . Fermenter vessel ( 1 ) according to claim 10 , wherein the first magnetic element ( 17 ) is arranged adjacent to the annular wall ( 19 ).

12 . Fermenter vessel ( 1 ) according to claim 6 , wherein the vessel ( 1 ) further comprises a view port ( 7 ) being provided in the outside wall ( 2 ) for inspecting processes within the vessel volume, the view port ( 7 ) having a transparent member ( 8 ) wherein the transparent member ( 8 ) is provided with a heating device.

13 . Fermenter vessel ( 1 ) having an outside wall ( 2 ) enclosing a vessel volume, the outside wall ( 2 ) comprising an inlet ( 6 ) for introducing or extracting a gas or liquid into or from the vessel volume, and a connection tube to a supply device for the gas or liquid wherein the connection tube comprises a first section ( 22 ) extending along a first axis ( 23 ), a second section ( 24 ) connected to the first section ( 22 ) and extending along a second axis ( 25 ), the second axis ( 25 ) being essentially perpendicular to the first axis ( 23 ), and a third section ( 26 ) connected to the second section ( 24 ) and extending along a third axis ( 27 ), the third axis ( 27 ) being parallel and spaced apart to the first axis ( 23 ).

14 . Fermenter vessel ( 1 ) according to claim 13 , wherein the second section comprises a junction.

15 . Fermenter vessel ( 1 ) according to claim 14 , wherein the junction comprises an inlet valve ( 28 ).

16 . Fermenter vessel ( 1 ) according to claim 13 , wherein the third section ( 26 ) is connected the vessel volume.

17 . Fermenter vessel ( 1 ) according to claim 13 , wherein the vessel ( 1 ) further comprises a view port ( 7 ) being provided in the outside wall ( 2 ) for inspecting processes within the vessel volume, the view port ( 7 ) having a transparent member ( 8 ) wherein the transparent member ( 8 ) is provided with a heating device.

18 . Fermenter vessel ( 1 ) according to claim 13 , wherein the vessel ( 1 ) further comprises a stirring element ( 14 ) arranged inside the vessel volume and with driving means arranged outside the vessel ( 1 ) for rotationally driving the stirring element ( 14 ) with the stirring element ( 14 ) being provided with a first magnetic element ( 17 ) and the driving means being provided with a second magnetic ( 20 ) element wherein the first magnetic element ( 17 ) and the second magnetic element ( 20 ) are coupled via magnetic force.

19 . Fermenter system with a vessel ( 1 ) enclosing a vessel volume and with a tubing for distributing liquids in the fermenter system wherein the tubing comprises a switching valve ( 31 ), the switching valve having a valve body ( 32 ), a plurality of outlet studs ( 33 ), a passage tube ( 35 ) passing through the valve body ( 32 ) from a first end ( 36 ) to a second end ( 37 ), a plurality of bores ( 34 ) in the valve body ( 32 ) and a plurality of valve elements ( 38 ) inserted into the bores ( 34 ) wherein the first end ( 36 ) and the second end ( 37 ) are communicating with a liquid supply, wherein the bores ( 34 ) are communicating with the outlet studs ( 33 ) and wherein the bores ( 34 ) intersect the passage tube ( 35 ).

20 . Fermenter system according to claim 19 , wherein the valve body ( 32 ) is formed in one piece.

21 . Fermenter system according to claim 19 , wherein the system comprises a fermenter vessel ( 1 ) which comprises an outside wall ( 2 ) enclosing a vessel volume with a view port ( 7 ) being provided in the outside wall ( 2 ) for inspecting processes within the vessel volume, the view port ( 7 ) having a transparent member ( 8 ) wherein the transparent, member ( 8 ) is provided with a heating device.

22 . Fermenter system comprising a first fermenter vessel (Ia), a second fermenter vessel (Ib) and a transfer tube ( 39 ) connecting the first vessel (Ia) and the second vessel (Ib), wherein the transfer tube ( 39 ) is connected to the bottom section of the first vessel (Ia) and to the bottom section of the second vessel (Ib).

23 . Fermenter system according to claim 22 , wherein a transfer valve ( 40 a ) is provided in the transfer tube ( 39 ).

24 . Fermenter system according to claim 22 , wherein the first vessel (Ia) is provided with a pressure inlet ( 41 a ) for introducing a pressured medium into the first vessel (Ia).

25 . Fermenter system according to claim 22 , wherein the second vessel (Ib) has a larger volume than the first vessel (Ia).

26 . Fermenter system according to claim 22 , wherein the system comprises a fermenter vessel ( 1 ) which comprises an outside wall ( 2 ) enclosing a vessel volume with a view port ( 7 ) being provided in the outside wall ( 2 ) for inspecting processes within the vessel volume, the view port ( 7 ) having a transparent member ( 8 ) wherein the transparent, member ( 8 ) is provided with a heating device.

27 . Fermenter system according to claim 22 , wherein the system further comprises a vessel ( 1 ) enclosing a vessel volume and with a tubing for distributing liquids in the fermenter system wherein the tubing comprises a switching valve ( 31 ), the switching valve having a valve body ( 32 ), a plurality of outlet studs ( 33 ), a passage tube ( 35 ) passing through the valve body ( 32 ) from a first end ( 36 ) to a second end ( 37 ), a plurality of bores ( 34 ) in the valve body ( 32 ) and a plurality of valve elements ( 38 ) inserted into the bores ( 34 ) wherein the first end ( 36 ) and the second end ( 37 ) are communicating with a liquid supply, wherein the bores ( 34 ) are communicating with the outlet studs ( 33 ) and wherein the bores ( 34 ) intersect the passage tube ( 35 ).

28 . Method for the propagation of cells, comprising the step of culturing the cells in a fermenter vessel ( 1 ) having an outside wall ( 2 ) enclosing a vessel volume with a view port ( 7 ) being provided in the outside wall ( 2 ) for inspecting processes within the vessel volume, the view port ( 7 ) having a transparent member ( 8 ) wherein the transparent, member ( 8 ) is provided with a heating device or a fermenter system comprising the fermenter vessel ( 1 ).

29 . Method for the preparation of a virus vaccine, comprising the step of propagating cells in a fermenter vessel ( 1 ) having an outside wall ( 2 ) enclosing a vessel volume with a view port ( 7 ) being provided in the outside wall ( 2 ) for inspecting processes within the vessel volume, the view port ( 7 ) having a transparent member ( 8 ) wherein the transparent, member ( 8 ) is provided with a heating device or a fermenter system comprising the fermenter vessel ( 1 ).

30 . Method according to claim 28 , wherein said cells are animal cells.

31 . Method according to claim 30 , wherein said cells are selected from group consisting of MDCK cells, Vero cells, per. C.6 cells, chick embryo fibroblast (CEF) cells, or CHO cells.

32 . Method according to claim 29 , wherein the method further comprises isolating a component of the virus or the virus from the cell culture.

33 . Method according to claim 32 , wherein the method further comprises the formulation of a vaccine using the component of the virus or the virus obtained from the cell culture.

34 . Method according to claim 29 wherein the cells are animal cells.

35 . Method according to claim 34 , wherein said cells are selected from group consisting of MDCK cells, Vero cells, per. C.6 cells, chick embryo fibroblast (CEF) cells, or CHO cells.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2015
From: NOVARTIS VACCINES AND DIAGNOSTICS GMBH
To: NOVARTIS AG
Reel/Frame 036094/0255 →
CHANGE OF NAME Recorded Jun 26, 2015
From: NOVARTIS VACCINES AND DIAGNOSTICS GMBH & CO. KG
To: NOVARTIS VACCINES AND DIAGNOSTICS GMBH
Reel/Frame 035911/0780 →
TO CORRECT ASSIGNEE NAME ON REEL/FRAME 021836/0078 Recorded Dec 11, 2008
From: MUELLER, GUNTHER; VORLOP, JUERGEN; ZIMMERMANN, ACHIM
To: NOVARTIS VACCINES AND DIAGNOSTICS GMBH & CO. KG
Reel/Frame 022036/0058 →