Method and Apparatus for Packing a Chromatography Column Assembly
20240402142 ยท 2024-12-05
Inventors
Cpc classification
B01D15/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D15/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method for packing a chromatography column with chromatography media, comprising the steps of: providing a system comprising a column tube having a closed first end comprising an inlet/outlet, a media inlet adjacent a second end of the column tube and an adaptor positioned inside the column tube initially adjacent the second end of the column tube for sliding and sealing contact with an inner face of the column tube, the column tube and adaptor arranged initially such that they define an internal volume and such that the media inlet is in fluid connection with the internal volume; connecting a media slurry source to the media inlet; at least partially filling the internal volume with media slurry via the media inlet; forcing the adaptor towards the first end of the column tube to reduce the internal volume such that the media inlet is no longer in fluid connection with the reduced internal volume.
Claims
1-12. (canceled)
13. A chromatography column assembly comprising: a column tube having a closed first end comprising an inlet/outlet; a media inlet adjacent a second end of the column tube; and an adaptor positioned inside the column tube initially adjacent the second end of the column tube for sliding and sealing contact with an inner face of the column tube, the column tube and adaptor arranged initially such that they define an internal volume and such that the media inlet is in fluid connection with the inner volume; wherein the chromatography column is packed with chromatography media by: connecting a media slurry source to the media inlet; at least partially filling the internal volume with media slurry via the media inlet; and forcing the adaptor towards the first end of the column tube to reduce the internal volume such that the media inlet is no longer in fluid connection with the reduced internal volume.
14. The chromatography column assembly according to claim 13, wherein the chromatography column is an aseptic single use packed chromatography column.
15. A chromatography column assembly comprising: a column tube having a closed first end comprising an inlet/outlet, and a media inlet adjacent a second end of the column tube connectable to a media slurry source; and an adaptor positionable in a first position inside the column tube adjacent the second end of the column tube for sliding and sealing contact with an inner face of the column tube; the column tube and adaptor when arranged in said first position defining an internal volume where the media inlet is in fluid connection with the internal volume; the adaptor being moveable at least to a second position to reduce the internal volume, in which second position the media inlet is no longer in fluid connection with the reduced internal volume.
16. The chromatography column assembly according to claim 15, wherein the adaptor comprises an inlet/outlet.
17. The chromatography column assembly according to claim 15, wherein the apparatus and the media slurry are provided as pre-sterilized and the apparatus further comprises aseptic and/or sanitary connectors provided to the media inlet, the first end inlet/outlet and/or the adaptor inlet/outlet.
18. The chromatography column assembly according to claim 15, wherein the column tube comprises an extension tube wall comprising the media inlet connected to a basic column tube wall comprising the closed first end and wherein the first position of the adaptor is within the extension tube wall and the second position of the adaptor is within the basic column tube wall.
19. The chromatography column assembly according to claim 15, wherein the column tube further comprises an air outlet adjacent the second end of the column tube.
20. The chromatography column assembly according to claim 13, further comprising a column packing apparatus, wherein the column and the packing apparatus comprise complementary fluid interconnection paths which are disconnectable and closeable.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027]
[0028] A compression frame 18 is connected to the adaptor 9. In the embodiment shown in
[0029] In one embodiment of the invention as shown in
[0030] Herein, the column assembly 1 includes the column 3 and its associated ports 13,15,17 and 7, as well as the adapter 9, and the filters 12 and 4. The column packing apparatus includes the compression frame 18, and, not shown: pumps; control means; and fluid supply/egress paths. The packing apparatus is disconnectable from the column assembly 1 at selected connectors 33, 35, 37 and 39, leavening the fluid paths to the column assembly closed and, apart from the ends of the connectors 33, 35, 37 and 39, free of contamination. Valves at or adjacent the connectors 33,35 37 and 39 will assist in keep the fluid paths closed.
[0031] According to the invention a method for packing a chromatography column with chromatography media is provided. A flow chart describing the steps of the method is shown in
[0032] S1: Providing a system comprising a column tube 3 having a closed first end 5 comprising an inlet/outlet 7, a media inlet 15 adjacent a second end 6 of the column tube 3 and an adaptor 9 positioned inside the column tube 3 initially adjacent the second end 6 of the column tube 3 for sliding and sealing contact with an inner face of the column tube, the column tube 3 and adaptor 9 arranged initially such that they define an internal volume and such that the media inlet 15 is in fluid connection with the internal volume.
[0033] S3: Connecting a media slurry source to the media inlet 15.
[0034] S5: Filling the internal volume defined by the column tube 3 and the adaptor 9 with media slurry. In one embodiment of the invention this step comprises filling this internal volume with an exact amount of media slurry and in another embodiment of the invention this step comprises filling the internal volume with media slurry until media slurry is starting to flow out from the air outlet 17 if an air outlet 17 is provided. An advantage with this latter method is that the media slurry volume provided into the column does not need to be measured but is determined by the volume determined by the geometry of the system, which can be adequately controlled. Thus the exact volume of media slurry provided into the column will still be known based on a measured volume of the internal volume in the column tube below the air outlet 17.
[0035] Removal of air in between the adapter and the surface of the slurry can suitably be provided. This can be performed by for example extracting air through an air outlet 17 (if an air outlet is provided in the system) or through the adaptor inlet/outlet 13 during or after the slurry filling or after the slurry filling through the media inlet 15.
[0036] In one embodiment a priming step is performed before the step of filling the internal volume with media slurry, step S5. A priming liquid could then be provided to the first bed support 4 for priming the first bed support. The priming of a bed support is in order to wet it and/or remove air from it. Either the priming liquid added to the first bed support can be removed through the outlet/inlet 7 before slurry is filled into the column or the volume of the priming liquid provided to the bed support can be taken into consideration when determining how much media slurry that should be provided into the column during step S5.
[0037] S7: Forcing the adaptor 9 towards the first end 5 to reduce the internal volume such that the media inlet 15 (and the air outlet 17, if an air outlet is provided in the system) is (are) no longer in fluid connection with the reduced internal volume of the column defined by the column tube 3 and the adaptor 9. According to one embodiment of the invention a position where the adaptor should be stopped can be calculated by using the media slurry concentration, the amount of media slurry filled into the closed system and a wanted compression factor.
[0038] The axial compression packing method and the movement of the adapter 9 towards the first end 5 facilitates the formation of the packed bed as a porous structure in a first step and subsequently a further mechanical compression of this porous structure in order to provide a stable and robust packed bed of good chromatographic efficiency. In both steps, excess liquid is removed at the inlet/outlet 7 at the closed first end 5 of the column tube 3. In general, the volume of the media slurry and the slurry concentration is needed for calculating how much the adaptor 9 should be forced down during the packing method for achieving a correct compression factor. A compression factor is defined as the inverse of the relative volumetric compression of a settled bed of porous media achieved by the axial compression of the adapter. In other words the compression factor is the volume of sedimented (uncompressed) media divided by the finally packed bed volume where the media is found in a mechanically compressed state. A typical compression factor ensuring sufficient stability and performance during operation can be in range of 1.05-1.2.
[0039] Alternatively, the exact concentration of media slurry and/or the volume of slurry can be adjusted to achieve a correct compression factor for a desired final bed height and final adapter position.
[0040] In the embodiment of the invention where the column tube 3 is divided into two parts, a basic column tube wall 19 and an extension tube wall 21, the adaptor 9 will in this step be forced into the basic column tube wall 19.
[0041] 59: In one embodiment of the invention the adaptor 9 is secured to the column tube 3 (being the basic column tube wall 19 in the embodiment where the column tube 3 is divided into two parts). The adaptor can be secured to the column tube by welding, clamping or mechanical interlocking using screws, bayonets or locking elements. Additional elements could be employed to accommodate this.
[0042] In one embodiment the adapter is secured in the column by a press fit, for example by having the tube wall in a lower segment (referring to the directions in the drawings 1a, 1b) of the tube designed with smaller diameter than an upper segment of the tube such that the adapter is forced and clamped into the lower tube when approaching the final adapter position. This press-fit could be designed strong enough to accommodate a final securement of the adapter that is capable of taking the full load and fluid pressure during the use of the column in the end users process. In another embodiment, the securing of the adapter could be a temporary securement and the final securement could be performed in a subsequent step. The final, second step of securement could be accomplished using a different method of securing the adapter, however, it could also be accomplished using the same method of securing but by applying a different, additional or extended force, displacement or other suitable action required.
[0043] 511: In one embodiment of the invention the next step of the method is to separate the empty part of the column tube left above the adaptor 9 from the rest of the column. In the embodiment where the column tube 3 is divided into two parts the extension tube wall 21 is disconnected from the basic column tube wall 19.
[0044] According to one embodiment of the invention the closed system and the media slurry is provided as pre-sterilized and aseptic and/or sanitary connectors are provided to at least all inlets and outlets engaged during the packing method, such as at least the media inlet, the first end inlet/outlet and/or the adaptor inlet/outlet. Hereby the packing method can be provided as an aseptic packing method in a closed system and the packed chromatography column can be provided as a sterile column as the result of the aseptic packing method.
[0045] According to a further embodiment, the sterile column resulting from the aseptic packing process can be provided with further aseptic connectors that are to be engaged aseptically when connecting the column to the processing equipment at the point of use. In case that the same inlets and/or outlets of the column are used during both packing method and final processing, two or more aseptic connectors can be provided for each of the respective inlets and/or outlets of the column. For each of said inlets and/or outlets equipped with more than one aseptic connector, a valve mechanism or manifold means can be provided to switch in between the more than one connectors and connected lines. For example, inlet/outlet 7 may be employed during the column packing procedure by connecting to one aseptic connector. This connector could then be closed off and separated by a valve. Said valve could be configured to engage another {fresh) aseptic connector that connects to processing equipment when the column is used later on for processing.
[0046] In another embodiment, welding methods may be employed instead of connectors or disconnectors to accommodate the aseptic connection functionality. Welding methods could further be used to accomplish a closure of a fluid path and/or a disconnection, for example in between the column and a connector of a fluid path. Further, aseptic disconnectors may be used to disconnect sterile fluid lines, for example disconnect the column from the packing system after the packing process.
[0047] In a preferred embodiment, the system and chromatography media are provided pre-sterilized to accomplish a pre-sterilized packed column by means of the aseptic packing process. In another embodiment, the system and/or chromatography media are not provided pre-sterilized, but preferably in a known and controlled condition and status for bioburden. In the latter embodiment, the closed system will enable to maintain the known and controlled condition and status for the components and in especially the chromatography medium packed inside the column volume. A sterilization of the packed column, for example by gamma irradiation, will be possible and facilitated by the closed packing system.
[0048] In another embodiment, the packed column may be tested and qualified after packing, for example by residence time analysis and/or characterization of hydraulic permeability, to establish a certificate of analysis. If the column has been prepared from pre-sterilized components under aseptic conditions, then the testing is preferably performed using pre-sterilized of sterile-filtered solutions to maintain sterility. For connecting test equipment and test fluids to the system, said multiple aseptic connections and connectors can be connected to the inlets and/or outlets of the system.
[0049] In a further embodiment, the column is packed in the closed system, sterilized in a subsequent step and then tested and/or qualified under aseptic conditions in a subsequent step prior to use in processing, for example biopharmaceutical production.
[0050] In one embodiment of the invention all parts of the column that are in fluid contact and suitably also the connectors provided to the column are sanitary, which means that the design will facilitate efficient cleaning and sanitization. This will provide a possibility to effectively flush the column with a bacteriostatic storage solution prior to shipping and/or storage or to clean the column, store and reuse it over a number of processing cycles and/or campaigns.
[0051]
[0052]
[0053]
[0054] In order to maintain the sterility of the now pre-packed column shown in
[0055] Also according to the invention, a chromatography column packing apparatus for filling a chromatography column 1 with chromatography media and compressing the media is provided. The apparatus is shown in
[0056] In one embodiment of the invention the column tube 3 comprises an extension tube wall 21 comprising the media inlet 15 connected to a basic column tube wall 19 comprising the closed first end 5 and wherein the first position of the adaptor is within the extension tube wall 21 and the second position of the adaptor 9 is within the basic column tube wall 19.
[0057] Embodiments of the invention provide a system which remains substantially closed whilst within a controllable environment, and which allows disconnection at a predefined connection points only, such that the risk of contamination is minimized.