FLUID TRANSFER DEVICE AND PROCESS OF ASEPTICALLY TRANSFERRING A FLUID
20170021355 ยท 2017-01-26
Assignee
Inventors
Cpc classification
B01L2300/044
PERFORMING OPERATIONS; TRANSPORTING
B01L2200/141
PERFORMING OPERATIONS; TRANSPORTING
B01L3/563
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A fluid transfer device comprising a first reservoir (1) having a predetermined sub-ambient pressure and volume and a presealed opening (1a), a second reservoir (2) containing a predetermined volume of a fluid (M) and having a presealed opening (2a), and a chamber (3) having an internal space (6) and an inlet (4) to the space (6) adapted to be connected to the opening (2a) of the second reservoir (2) and an outlet (5) from the space (6) adapted to be connected to the opening (1a) of the first reservoir (1).
Claims
1. A fluid transfer device comprising a first reservoir (1) having a predetermined sub-ambient pressure and volume and a presealed opening (1a), a second reservoir (2) containing a predetermined volume of a fluid (M) and having a presealed opening (2a), and a chamber (3) having an internal space (6) and an inlet (4) to the space (6) adapted to be connected to the opening (2a) of the second reservoir (2) and an outlet (5) from the space (6) adapted to be connected to the opening (1a) of the first reservoir (1).
2. The fluid transfer device according to claim 1, wherein the volume of the fluid (M) contained in the second reservoir (2) is predetermined such that it is larger than the volume of the internal space (6) of the chamber (3).
3. The fluid transfer device according to claim 1, wherein the second reservoir (2) is deformable under ambient pressure when the pressure in the internal volume is at a sub-ambient pressure.
4. The fluid transfer device according to claim 1, wherein the second reservoir (2) is rigid and contains a piston adapted to move under ambient pressure when the pressure in the internal volume is at a sub-ambient pressure.
5. The fluid transfer device according to claim 1, wherein the second reservoir (2) is rigid and at ambient pressure or pressurized.
6. The fluid transfer device according to claim 1, wherein the first and second reservoirs (1,2) are connected to each other such that the respective openings (1a,2a) are oriented to be simultaneously connectable to the inlet (4) and outlet (5) of the chamber (3).
7. The fluid transfer device according to claim 6, wherein the first and second reservoirs (1,2) are releasably connected to each other by an adapter (9).
8. The fluid transfer device according to claim 1, wherein the presealed openings (1a,2a) of the first and second reservoir (1,2) can be forcibly opened upon connection with the inlet (4) and outlet (5) of the chamber (3), preferably in that the seals (1b,2b) are pierced by a needle-like extension of the inlet (4) and outlet (5) of the chamber (3).
9. The fluid transfer device according to claim 8, wherein the needle-like extension of the inlet (4) and outlet (5) is removable.
10. The fluid transfer device according to claim 9, wherein the seals (1b,2b) of the openings (1a,2a) of the first and second reservoir (1,2) have a self-resealing property.
11. The fluid transfer device according to claim 1, wherein the first and second reservoirs (1,2) are arranged such that, upon connection with the inlet (4) and outlet (5) of the chamber (3), the opening (1a) of the first reservoir (1) is opened before the opening (2a) of the second reservoir (2) is opened.
12. The fluid transfer device according to claim 1, wherein the internal space (6) of the chamber (3) includes one or more corrugated channel(s) (10) or a maze or a plurality of channels arranged for a simultaneous flow and connected to an inlet header and an outlet header respectively communicating with the inlet (4) and the outlet (5) of the chamber (3).
13. The fluid transfer device according to claim 12, wherein the plural channels of the internal space are of substantially equal length or are designed for substanially equal througput volume.
14. The fluid transfer device according to claim 12, wherein the channel or plural channels is/are arranged so as to substantially cover an internal surface of the chamber (3).
15. The fluid transfer device according to claim 1, wherein the inlet (4) and outlet (5) of the chamber (3) are sealed by a sterile filter barrier or a piercable opening, preferably a septum.
16. The fluid transfer device according to claim 1, wherein the chamber (3) is rigid or partially rigid and has at least one wall formed from a flexible material.
17. The fluid transfer device according to claim 16, wherein the flexible material is a porous membrane, preferably supported by a porous material.
18. The fluid transfer device according to claim 17, further comprising a second chamber integrated with the chamber (3) or sealingly connectable to the chamber (3) such that its internal space is separated from the internal space of the chamber (3) with the porous membrane interposed as a permeable interface, wherein the second chamber has at least one further inlet and/or outlet to the internal space.
19. A process of aseptically transferring a fluid comprising: providing a fluid transfer device as defined by claim 1; connecting the first reservoir (1) to the outlet (5) of the chamber (3) and opening the presealed opening (1a) to extract a part of any fluid contained in the internal space (6) of the chamber (3) into the first reservoir (1) by means of the sub-ambient pressure in the first reservoir (1); connecting the second reservoir (2) to the inlet (4) of the chamber (3) and opening the presealed opening (2a) to extract at least a part of the fluid (M) contained in the second reservoir (2) into the internal space (6) of the chamber (3) by means of the sub-ambient pressure in the first reservoir (1); disconnecting the first and second reservoirs (1,2) from the chamber (3).
Description
[0023] The invention will be described on the basis of a number of embodiments using the attached drawing as a reference. In this drawing:
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[0035] The fluid transfer device of the invention as schematically shown in
[0036] Still further the second reservoir can be rigid, slightly pressurized or not, with a ratio liquid volume/air volume allowing the air expansion to assure partial or complete liquid transfer.
[0037] A chamber 3 of the device has an internal space 6 and an inlet 4 to the space 6 adapted to be connected to the opening 2a of the second reservoir 2. It also has an outlet 5 from the space 6 adapted to be connected to the opening 1a of the first reservoir 1.
[0038] Prior to connecting the first and second reservoirs, the internal space 6 of the chamber 3 contains a liquid L and potentially air bubbles. On connection of the first reservoir 1 in a first step, the sub-ambient pressure in the first reservoir effects a transfer of the liquid L and of any air bubbles through the outlet 5 into the first reservoir 1. On connection of the second reservoir 2, preferably with a certain time delay after connection of the first reservoir, the remaining sub-ambient pressure in the first reservoir 1 effects the transfer of the fluid M contained in the second reservoir into the internal space of the chamber until the internal space is completely filled. Some of the fluid M may be discharged into the first reservoir and the volume of the fluid contained in the second reservoir is in any case predetermined such that it is larger than the volume of the internal space of the chamber in order to secure a complete filling of the internal space without any bubbles and a complete purging of the internal space from the liquid initially in that space. Once the fluid transfer is completed, both reservoirs are disconnected from the inlet and outlet of the chamber. The inlet and outlet then may be closed by plugs.
[0039]
[0040] Prior to connecting the first and second reservoirs, the piercable openings 4a and 5a of the inlet 4 and outlet 5 are pierced by needles, which are preferably connected by a connecting part 22, forming one single piece (needle protector). After execution of steps 1 to 3 as described above, both reservoirs and the needle protector are disconnected from the inlet and outlet of the chamber, preferably in one single manipulation. The inlet and outlet may then be closed by plugs, or preferably, if a self-re-sealing material is used for the openings, re-seal automatically without any further necessary manipulation.
[0041] The chamber 3 as shown in
[0042] A preferred alternative embodiment of an adapter 9 is shown in
The casing can be made from two or more shells that can be opened or closed and can remain attached by living hinges or the like, in order to keep the elements together and provide a defined opening and closing process. The outside of the casing can be provided with features 16 defining a predetermined holding position and guiding the manual force applied by the fingers of a user during insertion into the receptacle. Optionally, a further rubber seal 15 may be provided to close the opening of the adapter at which the pre-sealed openings of the individual reservoirs in the adapter would be otherwise accessible in order to protect them during handling and transport. The rubber seal 15 may be removed before use or may be omitted if not required.
[0043] The internal space of the casing 21 of the adapter may be designed so as to hold different volumes and/or different types of reservoirs so that the position of the pre-sealed openings of the respective reservoirs is always at a defined identical position independent from the volume and type. Various ribs or protrusions 14 and the like can be provided to hold the vials or containers in place in defined positions.
[0044] To maximize the efficiency of the bubble removal, the internal space 6 of the device chamber 3 may be provided with one or more corrugated channels 10 as schematically shown in
[0045] In a preferred embodiment shown in
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[0048] Although the application of the fluid transfer device has been described above in connection with gases and liquids, it may also be used in connection with viscous liquids. The type of media transferred into the internal space of the chamber from the second reservoir can be selected depending on the need.
[0049] All elements of the fluid transfer device can be disposable and designed for one-time use. Alternatively, the chamber and/or adapter can be designed for frequent use and cleaned or sterilized.