IL297622A

Material transfer devices and related systems and methods

Abstract

This record has no abstract on file.

IL297622A, drawing sheet 1
Sheet 1 of 7

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

41 claims: 33 independent, 8 dependent

  1. 1
    What is claimed is:1. A method, comprising: receiving, within a material transfer device, microcarriers or cell aggregates in spent medium from a first bioreactor;retaining the microcarriers or the cell aggregates on a first side of a filter of the material transfer device while flowing the spent medium through the filter in a first direction;reversing the flow through the filter by flowing fresh medium through the filter in a second direction opposite the first direction to resuspend the microcarriers or the cell aggregates in the fresh medium;and flowing the microcarriers or the cell aggregates in the fresh medium out of the material transfer device and to a second bioreactor.
  2. 3
    The method of any one of the preceding claims, wherein receiving microcarriers or cell aggregates in the spent medium within the material transfer device from the first bioreactor comprises pumping the microcarriers or the cell aggregates in the spent medium to the material transfer device.
  3. 4
    The method of any one of claims 1 - 2, wherein receiving microcarriers or cell aggregates in the spent medium within the material transfer device from the first bioreactor comprises flowing the microcarriers or the cell aggregates in the spent medium to the material transfer device based on gravity.
  4. 5
    The method of any one of claims 1 - 2, wherein receiving microcarriers or cell aggregates in the spent medium within the material transfer device from the first bioreactor comprises flowing the microcarriers or the cell aggregates in the spent medium to the material transfer device based on a pressure differential between the first bioreactor and the material transfer device.
  5. 6
    The method of any one of the preceding claims, further comprising heating the material transfer device. #906;. The method of any one of the preceding claims, further comprising rotating the material transfer device to encourage the microcarriers or the cell aggregates to move away from the screen.
  6. 7
    8. The method of any one of the preceding claims, wherein the first bioreactor, the material transfer device, and the second bioreactor are aseptically connected as part of a completely closed system.
  7. 8
    9. A material transfer device comprising:a housing including a first housing portion and a second housing portion, the first housing portion comprising a first inlet port, a first outlet port, and a first transfer opening, the second housing portion having a second inlet port, a second outlet port, and a second transfer opening, the first transfer opening being disposed adjacent to and in communication with the second transfer opening;and a screen disposed between the housing portions adjacent to the first and second transfer openings.
  8. 11
    12. The material transfer device of any one of claims 9 - 11, wherein the screen is a flexible screen defining a plurality of pores to enable flow of material therethrough.
  9. 12
    13. The material transfer device of any one of claims 9-12, further comprising a support operably coupled to the housing and disposed between the first and second housing portions and adjacent to the screen to provide structural support for the screen.
  10. 15
    16. The material transfer device of any one of claims 13-15, wherein the support comprises a lattice structure. 1 #1512;. The material transfer device of any one of claims 9-16, wherein the first housing portion and the second housing portion are each rigid or semi-rigid structures.
  11. 16
    18. The material transfer device of any one claims 9-17, wherein the first housing portion is removably coupled to or integrally formed with the second housing portion.
  12. 17
    19. The material transfer device of any one of claims 9-18, wherein the first housing portion is an upper housing portion and the second housing portion is a lower housing portion.
  13. 18
    20. The material transfer device of any one claims 9-19, further comprising a seal at an interface between the first housing portion and the second housing portion.
  14. 19
    21. The material transfer device of any one of claims 9 - 20, wherein the first inlet port and the first outlet port are centrally disposed in the first housing portion and the second inlet port and the second outlet port are centrally disposed in the second housing portion.
  15. 20
    22. The material transfer device of any one of claims 9 - 21, wherein the screen is horizontally disposed relative to a horizontal plane when the material transfer device is being used.
  16. 21
    23. The material transfer device of any one of claims 9-18 and 20 - 22, wherein the first housing portion is a lower housing portion and the second housing portion is an upper housing portion.
  17. 23
    25. The material transfer device of any one of claims 23 - 24, wherein the first housing portion further comprises an internal barrier that extends across a width of the first housing portion and is adapted to prevent accumulated cell aggregates or microcarriers from covering the first inlet port of the first housing portion.
  18. 24
    26. The material transfer device of any one of claims 23 - 25, wherein the second outlet port of the second housing portion is adapted to be arranged lower than the second inlet port of the second housing portion.
  19. 25
    27. The material transfer device of any one of claims 23 - 26, wherein the first inlet port of the first housing portion is arranged relative to the screen to allow the spent medium including the cell aggregates or the microcarriers to flow tangentially along a surface of the screen.
  20. 26
    28. The material transfer device of any one of claims 23 - 27, wherein the screen and the housing are at an angle relative to a horizontal plane when the material transfer device is being used.
  21. 27
    29. A method of using a material transfer device including a first housing portion and a second housing portion with a screen disposed between the housing portions, each of the housing portions including an inlet port, an outlet port, and corresponding fluidic tubes connected to the inlet and outlet ports, the method comprising:pumping spent medium including cell aggregates or microcarriers through the inlet port of the first housing portion;filtering the cell aggregates or the microcarriers using a screen;passing the spent medium through the screen and into the second housing portion;pumping the spent medium out of the outlet port of the second housing portion;and pumping fresh medium into the first housing portion or the second housing portion;resuspending the cell aggregates or the microcarriers;and pumping the fresh medium suspending the cell aggregates or the microcarriers out of the outlet port of the first housing portion.
  22. 29
    31. The method of any one of claims 29 or 30, further comprising supporting the screen using a support operably coupled to the housing and disposed between the first and second housing portions.
  23. 30
    32. The method of any one of claims 29, 30, or 31, wherein passing the spent medium through the screen includes passing the spent medium through the screen horizontally disposed relative to a horizontal plane.
  24. 31
    33. The method of any one of claims 29, 30, or 31, wherein passing the spent medium through the screen includes passing the spent medium through the screen disposed at an angle relative to a horizontal plane.
  25. 32
    34. The method of any one of claims 29, 30, 31,32, or 33, further comprising passing the fresh medium to flow through the screen into the first housing portion.
  26. 33
    35. A control system for controlling fluid flow through a material transfer device including a first housing portion and a second housing portion with a screen disposed between the housing portions, each of the housing portions including an inlet port, an outlet port, and corresponding fluidic tubes connected to the inlet and outlet ports, wherein the control system comprises:a base defining a receptacle and adapted to support the material transfer device;and a plurality of valves and a plurality of pumps that are adapted to control medium flow through each of the inlet ports and the outlet ports of the transfer device.
  27. 35
    37. The control system of any of claims 35 or 37, wherein the valves and the pumps are adapted to (1) pump spent medium including cell aggregates or microcarriers through the inlet port of the first housing portion to allow the cell aggregates or the microcarriers to be filtered by the screen and to allow the spent medium to pass through the screen and into the second housing portion;(2) pump the spent medium out of the outlet port of the second housing portion;(3) pump fresh medium into the second housing portion to allow the fresh medium to flow through the screen into the first housing portion to resuspend the cell aggregates or the microcarriers;and (4) pump the fresh medium suspending the cell aggregates or the microcarriers out of the outlet port of the first housing portion.
  28. 36
    38. The control system of any of claims 35, 36, or 37, further including a wall coupled to the base and carrying two of the valves and two of the corresponding pumps and wherein the base further carries two of the valves and two of the corresponding pumps.
  29. 37
    39. The control system of any of claims 35, 36, 37, or 38, wherein the base includes a first side opposite a second side with each side defining a channel through which at least one fluidic tube is adapted to pass.
  30. 38
    40. The control system of any of claims 35, 36, 37, 38, or 39, further comprising a flow meter adapted to determine a flow rate value of the spent medium entering or exiting the second portion of the housing, and wherein the control system is adapted to change a pump rate of the pump pumping the spent medium out of the outlet port of the second housing portion of the transfer device in response to the determined flow rate value satisfying a threshold flowrate valve.
  31. 39
    41. The control system of any of claims 35, 36, 37, 38, 39, or 40, further including a user interface adapted to allow input to be received by the control system to control a flow sequence through the transfer device.
  32. 40
    42. The control system of any of claims 35, 36, 37, 38, 39, 40, or 40, wherein the valves are pinch valves.
  33. 41
    43. The control system of any of claims 35 - 42, further including a heater adapted to heat the material transfer device.
Independent claims33