IP Library Granted Patent US 9,440,206
Granted Patent B2
US 9,440,206 · App. 13/997,535 · Granted Sep 13, 2016

Mixing of the content of a flexible container for biopharmaceutical use

Inventor: Jonathan Cuting (Fairfield, CA)
Assignee: SARTORIUS STEDIM FMT SAS
B01F11/0065B01F11/0045B01F11/0071B01F15/0085B01F15/00831
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Quick Facts
Patent No.
US 9,440,206
App. No.
13/997,535
Granted
Sep 13, 2016
Kind
B2
Abstract

A receptacle ( 1 ) for biopharmaceutical use includes a flexible container ( 2 ) having a wall ( 4 ), an internal space ( 5 ) for receiving a liquid or pasty biopharmaceutical content, mixing elements ( 20 ) adjacent to a given portion ( 21 ) of the wall ( 4 ), elements ( 22 ) for rigid and leaktight connection between the mixing elements ( 20 ) and the given portion ( 21 ), the mixing elements ( 20 ) including a sleeve ( 24 ), a suction-delivery opening ( 26 ), a suction-delivery part ( 28 ), a suction-delivery cavity ( 29 ), drive elements ( 23 ) for driving in an alternating forward/backward axial sliding sequence, elements ( 32 ) for immobilizing the sleeve and the given portion ( 21 ), including during the axial sliding movement of the suction-delivery part ( 28 ).

Claims (51)

1. Receptacle ( 1 ) for biopharmaceutical use, comprising:

a flexible container ( 2 ) having a flexible wall ( 4 ) delimiting, at a front, an inside space ( 5 ) able to receive content that is a biopharmaceutical product which is generally liquid or pasty at least when it is to be mixed,

mixing means ( 20 ) able to mix the content of the inside space ( 5 ), adjacent to a given part ( 21 ) of the flexible wall ( 4 ), including movable displacement means ( 28 a ) adjoining the inside space ( 5 ) and able to displace the content,

drive means ( 23 ) for driving the movable displacement means ( 28 a ),

and rigid and leaktight connection means ( 22 ) ensuring a rigid and leaktight connection between the mixing means ( 20 ) and the given part ( 21 ) of the flexible wall ( 4 ),

characterized by the fact that:

the mixing means ( 20 ) comprise:

an axial guiding and peripheral closure sleeve ( 24 ) which is rigid, has a lateral inside face, has a constant transverse cross-section along its axis (BB), and has towards its front part ( 25 ) a suction-discharge opening ( 26 ) adjoining the inside space ( 5 ),

a suction-discharge part ( 28 ) which is unpierced and arranged transversely in the sleeve ( 24 ) in a leaktight manner, has a front inside face, and of which at least one movable part ( 28 a ) is mounted to slide alternately forwards and backwards axially,

a suction-discharge cavity ( 29 ), delimited by the lateral inside face ( 30 a ) of the sleeve ( 24 ) and the front inside face ( 31 a ) of the suction-discharge part ( 28 ), in communication with the inside space ( 5 ) via the suction-discharge opening ( 26 ),

the drive means ( 23 ) are able to drive the movable part ( 28 a ) of the suction-discharge part ( 28 ) and assure its movement in at least one sequence of sliding alternately forwards and backwards axially such that the volume of the suction-discharge cavity ( 29 ) has at least one sequence of alternately compressing and expanding, and thus the content of the flexible container ( 2 ) adjacent to the suction-discharge opening ( 26 ) is moved about and the content of the flexible container ( 2 ) is mixed,

immobilization means ( 32 ) ensure the relative immobilization of the axial guiding and peripheral closure sleeve ( 24 ) and of the given part ( 21 ) of the flexible wall ( 4 ), including during the sliding axial movement of the movable part ( 28 a ) of the suction-discharge part ( 28 ).

2. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the given part ( 21 ) of the flexible wall ( 4 ) comprises a mounting through-hole ( 34 ), with which the mixing means ( 20 ) are axially associated, and wherein the rigid and leaktight connection means ( 22 ) are secured in a leaktight manner on the one hand to the sleeve ( 24 ) by a side part ( 35 a ) that is peripheral and external to the sleeve ( 24 ), and on the other hand to the given part ( 21 ) of the flexible wall ( 4 ) by a peripheral portion ( 35 b ) around the mounting through-hole ( 34 ) and lying flat on the flexible wall ( 4 ).

3. Receptacle ( 1 ) for biopharmaceutical use according to claim 2 , wherein the hole ( 34 ) in the given part ( 21 ) of the flexible wall ( 4 ) allows passage of the sleeve ( 24 ), and wherein the suction-discharge opening ( 26 ) is axially substantially adjacent to the flexible wall ( 4 ), the mixing means ( 20 ) extending axially substantially rearwards from the given part ( 21 ) of the flexible wall ( 4 ), or wherein

the hole ( 34 ) in the given part ( 21 ) of the flexible wall ( 4 ) provides the communication between the suction-discharge cavity ( 29 ) and the inside space ( 5 ), and wherein the suction-discharge opening ( 26 ) is axially offset rearwards from the given part ( 21 ) of the flexible wall ( 4 ), the mixing means ( 20 ) extending axially substantially rearwards from the given part ( 21 ) of the flexible wall ( 4 ), or wherein

the hole ( 34 ) in the given part ( 21 ) of the flexible wall ( 4 ) allows passage of the sleeve ( 24 ), and wherein the suction-discharge opening ( 26 ) is axially offset frontwards from the given part ( 21 ) of the flexible wall ( 4 ), the mixing means ( 20 ) extending axially either partially frontwards and partially rearwards or substantially frontwards from the given part ( 21 ) of the flexible wall ( 4 ).

4. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the given part ( 21 ) of the flexible wall ( 4 ) is unpierced, the rigid and leaktight connection means ( 22 ) are secured in a leaktight manner to the sleeve ( 24 ) by a part ( 36 a ) external to the sleeve ( 24 ) and to the given part ( 21 ) of the flexible wall ( 4 ) by a part ( 36 b ) lying flat on the flexible wall ( 4 ), and wherein the mixing means ( 20 ) extend axially substantially frontwards from the given part ( 21 ) of the flexible wall ( 4 ).

5. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the rigid and leaktight connection means ( 22 ) comprise a transverse face ( 22 a ) adjoining the sleeve ( 24 ), rigidly secured, to lie flat, in a leaktight manner, to the flexible wall ( 4 ) at or near the given part ( 21 ).

6. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the axial guiding and peripheral closure sleeve ( 24 ) comprises a front part ( 25 ) laterally delimited by the lateral inside face ( 30 a ) of the sleeve ( 24 ), delimited at a back by the front inside face ( 31 a ) of the suction-discharge part ( 28 ) in an extreme rearward sliding position, and delimited at the front by the suction-discharge opening ( 26 ).

7. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the axial guiding and peripheral closure sleeve ( 24 ) comprises a rear part ( 27 ) laterally delimited by the lateral inside face ( 30 a ) of the sleeve ( 24 ) and delimited at the front by a rear face of the suction-discharge part ( 28 ) in the extreme rearward sliding position, and in particular wherein the sleeve ( 24 ) comprises a rear part delimited at the back by a transverse terminal rear wall ( 37 ).

8. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the suction-discharge part ( 28 ) is either a rigid piston mounted in the sleeve ( 24 ) or a deformable membrane having a fixed peripheral part ( 28 b ) attached to the lateral inside face ( 30 a ) of the sleeve ( 24 ) and a central movable part ( 28 a ).

9. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the suction-discharge part ( 28 ) is mounted to slide axially between an extreme rearward position and an extreme forward position, respectively further from and closer to the suction-discharge opening ( 26 ), and optionally

when in its extreme forward position, the suction-discharge part ( 28 ) closes off the suction-discharge opening ( 26 ).

10. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the suction-discharge cavity ( 29 ) is transversely flattened, its size in the transverse direction being larger than its size in the axial direction.

11. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the suction-discharge opening ( 26 ) is formed either by a single opening able to shape a single flow or by a plurality of basic openings ( 26 a ) able to shape a plurality of basic flows.

12. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein a suction-discharge opening ( 26 ) is associated with flow orientation means ( 38 ) and/or shaping means and/or concentration means and/or spreading means, able to orient and/or shape and/or concentrate and/or spread out a flow, wherein in particular the suction-discharge opening ( 26 , 26 a ) comprises a peripheral edge ( 26 b ) which extends either in an axial direction along an axis or in a direction that is angled relative to said axis, able to form a flow which extends either in the axial direction or in a direction that is angled relative to said axis.

13. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the drive means ( 23 ) comprise means ( 39 a ) for driving an axial movement in one direction combined with means ( 39 b ) for axial return in the opposite direction, in particular wherein the means ( 39 a ) for driving an axial movement in the one direction are electromechanical or electromagnetic means and the means ( 39 b ) for axial return in the opposite direction are elastic means such as a spring, in particular wherein the drive means ( 23 ) comprise means ( 39 c ) for driving an axial movement sequentially in the two opposing directions, such as pneumatic means, and optionally said receptacle comprises a movable plunger core ( 40 ), arranged transversely in the sleeve ( 24 ) behind the suction-discharge part ( 28 ) and mounted to slide alternately forwards and backwards axially, and wherein it comprises an axially sliding connection member ( 41 ) connecting the movable plunger core ( 40 ) and the suction-discharge part ( 28 ), the means ( 39 a ) for driving an axial movement in the one direction and the means ( 39 b ) for axial return in the opposite direction acting on the movable plunger core ( 40 ).

14. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein the immobilization means ( 32 ) comprise an application face ( 42 ) rigidly adjoining the sleeve ( 24 ) and an abutting face ( 43 ) of a supporting part ( 44 ), the given part ( 21 ) of the flexible wall ( 4 ) and the abutting face ( 43 ) of the supporting part ( 44 ) having a fixed relative position, and fixed and rigid retention means ( 45 ) for retaining said application face ( 42 ) applied in a fixed and rigid manner to said abutting face ( 43 ), arranged to be detachable or non-detachable.

15. Receptacle ( 1 ) for biopharmaceutical use according to claim 14 , wherein the fixed and rigid retention means ( 45 ) for retaining said application face ( 42 ) applied in a fixed and rigid manner to said abutting face ( 43 ) comprise a clamping member ( 46 a ) rigidly adjoining the sleeve ( 24 ) which cooperates, in clamping, with a complementary clamping member ( 46 b ) of an immobilization part ( 47 ) having a second application face ( 48 ) applied to and retained in a fixed and rigid manner on a second abutting face ( 49 ) of a second supporting part ( 50 ), the given part ( 21 ) of the flexible wall ( 4 ) and the second abutting face ( 49 ) of the second supporting part ( 50 ) having a fixed relative position, or wherein

the application face ( 42 ) is a rear face of a transverse shoulder at an end of the sleeve ( 24 ), the abutting face ( 43 ) is a front face of a supporting part ( 44 , 60 ), and the fixed and rigid retention means ( 45 ) for retaining said application face ( 42 ) applied in a fixed and rigid manner against said abutting face ( 43 ) are mutual clamping means, the supporting part ( 44 ) being part of a rigid receiving and retention assembly of a freezing/thawing system.

16. Receptacle ( 1 ) for biopharmaceutical use according to claim 15 , wherein the supporting part ( 44 , 60 ) and the rigid receiving and retention assembly of the freezing/thawing system comprises two walls pressing against one another about the application face ( 42 ) and spaced apart from one another in one or more areas distanced from the application face ( 42 ) in order to leave a free space suitable for accommodating a heat transfer means, and optionally

the supporting part ( 44 ) of the rigid receiving and retention assembly of the freezing/thawing system comprises a passage to allow passage of the drive means ( 23 ).

17. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein it additionally comprises control means ( 33 ) for controlling the drive means ( 23 ) of the movable displacement means and/or means ( 9 a ) which respond to a control parameter of the control means ( 33 ) to which the control means ( 33 ) are coupled in a responsive manner, and wherein

the suction-discharge part ( 28 ) when in its extreme forward position closes off the suction-discharge opening ( 26 ), characterized by the control means ( 33 ) controlling the drive means ( 23 ) of the movable displacement means ( 28 a , 28 ) so that when finished functioning, the suction-discharge part ( 28 ) is in its extreme forward position where it closes off the suction-discharge opening ( 26 ).

18. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein a mixing means unit ( 20 ) is located either on a bottom part ( 10 a ) or on a side part ( 10 b ) or on a top part ( 7 ) of the flexible wall ( 4 ) of the flexible container ( 2 ), and wherein it comprises a single mixing means unit ( 20 ) or a plurality of mixing means units ( 20 ).

19. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein it additionally comprises aeration means ( 54 ) able to deliver aeration gas to the content, comprising aeration gas supply means ( 55 ) having at least one tubular element extending in a fluid communication from outside the flexible container ( 2 ) to aeration gas distribution means ( 56 ) located within the inside space ( 5 ) of the flexible container ( 2 ) and rigidly supported by a part forming a fixed peripheral support which is part of the mixing means ( 20 ) or of the rigid and leaktight connection means ( 22 ), in particular with the aeration gas distribution means ( 56 ) arranged at the periphery of the mixing means ( 20 ) or of the rigid and leaktight connection means ( 22 ), in an adjoining manner or at a distance away.

20. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein it additionally comprises means ( 57 ) for collecting a sample of the content of the inside space ( 5 ), opening into the suction-discharge cavity ( 29 ).

21. Receptacle ( 1 ) for biopharmaceutical use according to claim 1 , wherein it constitutes a mixing vessel or a bioreactor or a freezing/thawing vessel.

22. A method for making use of the receptacle for biopharmaceutical use according to claim 1 , wherein:

biopharmaceutical product is provided which is generally liquid or pasty at least when it is to be mixed, or one or more components of such a product,

the inside space ( 5 ) of the flexible container ( 2 ) is filled with said biopharmaceutical product or with said one or more components, thus forming the content of the flexible container ( 2 ), the suction-discharge cavity ( 29 ), in communication with the inside space ( 5 ), being filled with said content,

when the content of the flexible container ( 2 ) is to be mixed, the drive means ( 23 ) are used such that:

the movable part ( 28 a ) of the suction-discharge part ( 28 ) is displaced in at least one sequence of axially sliding alternately forwards and backwards,

the volume of the suction-discharge cavity ( 29 ) follows at least one sequence of alternately compressing and expanding, and, in alternation, the content located in the suction-discharge cavity ( 29 ) is discharged into the inside space ( 5 ) through the suction-discharge opening ( 26 ) and the content of the inside space ( 5 ) is sucked into the cavity through the suction-discharge opening ( 26 ),

the content of the flexible container ( 2 ) adjacent to the suction-discharge opening ( 26 ) is displaced,

and in this manner the content of the flexible container ( 2 ) is mixed, and optionally comprising the following feature:

when stopping the use of the drive means ( 23 ), the suction-discharge part ( 28 ) is brought to its extreme forward position where it closes off the suction-discharge opening ( 26 ) and/or

the drive means ( 23 ) are controlled as a function of a control parameter such as time or the degree of homogeneity/heterogeneity of the content of the flexible container ( 2 ) and/or

said receptacle is used as a mixing vessel or as a bioreactor or as a freezing/thawing vessel.

23. Receptacle for biopharmaceutical use according to claim 5 , wherein the transverse face ( 22 a ) is part of a rigid wall.

24. Receptacle for biopharmaceutical use according to claim 5 , wherein the transverse face ( 22 a ) is rigidly secured, to lie flat, in a leaktight manner, to the flexible wall ( 4 ) by welding or adhesive bonding.

Assignments (3)
CHANGE OF NAME Recorded Oct 1, 2024
From: SARTORIUS STEDIM FMT SAS
To: SARTORIUS STEDIM FMT
Reel/Frame 069084/0133 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ASSIGNEE'S ADDRESS PREVIOUSLY RECORDED ON REEL 031974 FRAME 0578. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER. Recorded Jan 17, 2014
From: SARTORIUS STEDIM BIOTECH
To: SARTORIUS STEDIM FMT SAS
Reel/Frame 032086/0293 →
MERGER Recorded Jan 15, 2014
From: SARTORIUS STEDIM BIOTECH
To: SARTORIUS STEDIM FMT SAS
Reel/Frame 031974/0578 →
Priority Claims (1)
FR 10 61091 · Dec 22, 2010 · national
Continuity (1)
Related Publication 20130308418A1 · Nov 21, 2013