Methods for producing virus for vaccine production
US-2018195048-A1 · Jul 12, 2018 · US
US12116556B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12116556-B2 |
| Application number | US-202318382827-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 23, 2023 |
| Priority date | Nov 5, 2019 |
| Publication date | Oct 15, 2024 |
| Grant date | Oct 15, 2024 |
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A fixed-bed bioreactor system is provided that includes a vessel with a media inlet, a media outlet, and an interior cavity disposed between and in fluid communication with the media inlet and media outlet. The vessel further includes a cell culture substrate disposed in the interior cavity between the media inlet and the media outlet in a packed-bed configuration, the cell culture substrate including a plurality of porous disks in a stacked arrangement. The interior cavity includes a cell culture section and a spacer section, the cell culture substrate defining the cell culture section and the spacer section being disposed between the cell culture section and the media outlet, and each of the plurality of porous disks has a surface configured to culture cells thereon.
Opening claim text (preview).
What is claimed: 1. A fixed-bed bioreactor system for culturing cells in a cell culture media, the system comprising: a vessel comprising an interior cavity and a first opening fluidly connecting the interior cavity to an exterior of the vessel; and a cell culture substrate disposed in the interior cavity in a cylindrical roll configuration, the cell culture substrate comprising a plurality of porous surfaces layered in physical contact with each other and configured to culture cells thereon, wherein the cell culture substrate comprises a plurality of pores in the porous surface, the plurality of pores being arranged in a defined, substantially uniform array. 2. The fixed-bed bioreactor system of claim 1 , wherein the vessel further comprises a second opening fluidly connecting the interior cavity to the exterior of the vessel, the interior cavity being disposed between the first opening and the second opening. 3. The fixed-bed bioreactor system of claim 2 , wherein the fixed-bed bioreactor system is configured to flow cell culture media through the cell culture substrate in a same direction that is parallel to a direction from the first opening to the second opening. 4. The fixed-bed bioreactor system of claim 2 , wherein the interior cavity comprises a cell culture section and a spacer section, the cell culture substrate defining the cell culture section and the spacer section being disposed between the cell culture section and the second opening. 5. The fixed-bed bioreactor system of claim 1 , wherein the cell culture substrate comprises a first side, a second side opposite the first side, and a substrate thickness separating the first side and the second side, and wherein the plurality of pores pass through the substrate thickness from the first side to the second side. 6. The fixed-bed bioreactor system of claim 1 , wherein the plurality of pores is configured to allow flow of at least one of cell culture media, cells, or cell by-products through the cell culture substrate. 7. The fixed-bed bioreactor system of claim 1 , wherein the cell culture substrate is configured for seeding and culturing cells on the porous surface, and for harvesting viable cells therefrom. 8. The fixed-bed bioreactor system of claim 1 , wherein the cylindrical roll configuration comprises a central longitudinal axis around which the cell culture substrate is wound, the central longitudinal axis being parallel to a flow direction of media through the interior cavity. 9. The fixed-bed bioreactor system of claim 1 , wherein the plurality of porous surfaces comprises a woven mesh. 10. A fixed-bed bioreactor system for culturing cells in a cell culture media, the system comprising: a vessel comprising an interior cavity and a first opening fluidly connecting the interior cavity to an exterior of the vessel; and a cell culture substrate disposed in the interior cavity in a cylindrical roll configuration, the cell culture substrate comprising a plurality of porous surfaces layered such that the plurality of layers are not separated by a spacer material or barrier, and configured to culture cells thereon, wherein the cell culture substrate comprises a plurality of pores in the porous surface, the plurality of pores being arranged in a defined, substantially uniform array. 11. The fixed-bed bioreactor system of claim 10 , wherein the vessel further comprises a second opening fluidly connecting the interior cavity to the exterior of the vessel, the interior cavity being disposed between the first opening and the second opening. 12. The fixed-bed bioreactor system of claim 11 , wherein the fixed-bed bioreactor system is configured to flow cell culture media through the cell culture substrate in a same direction that is parallel to a direction from the first opening to the second opening. 13. The fixed-bed bioreactor system of claim 11 , wherein the interior cavity comprises a cell culture section and a spacer section, the cell culture substrate defining the cell culture section and the spacer section being disposed between the cell culture section and the second opening. 14. The fixed-bed bioreactor system of claim 10 , wherein the cell culture substrate comprises a first side, a second side opposite the first side, and a substrate thickness separating the first side and the second side, and wherein the plurality of pores pass through the substrate thickness from the first side to the second side. 15. The fixed-bed bioreactor system of claim 10 , wherein the plurality of pores is configured to allow flow of at least one of cell culture media, cells, or cell by-products through the cell culture substrate. 16. The fixed-bed bioreactor system of claim 10 , wherein the cell culture substrate is configured for seeding and culturing cells on the porous surface, and for harvesting viable cells therefrom. 17. The fixed-bed bioreactor system of claim 10 , wherein the cylindrical roll configuration comprises a central longitudinal axis around which the cell culture substrate is wound, the central longitudinal axis being parallel to a flow direction of media through the interior cavity. 18. The fixed-bed bioreactor system of claim 10 , wherein the plurality of porous surfaces comprises a woven mesh.
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