IP Library Patent Application 19182405
Patent Application
App. No. 19/182,405

SYSTEMS, DEVICES, AND METHODS FOR FLUID CONTROL IN A CELL PROCESSING SYSTEM

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Patent No.
US None
App. No.
19/182,405
Abstract

The present disclosure relates to systems, devices, and methods for automated fluid control within a cell processing system. In an embodiment, the present disclosure relates to a cartridge having a fluidic manifold comprising a first end panel, a second end panel, and a central panel connecting the first and second end panels, where each of the first and second end panels comprises a plurality of fluidic pathways model therein and a plurality of valves for controlling fluid flow through the plurality of fluidic pathways.

Claims (24)

1 .- 17 . (canceled)

18 . A cartridge for cell processing, comprising:

a fluidic manifold comprising a first end panel and a second end panel, wherein each of the first and second end panels comprises:

a plurality of fluidic pathways molded therein; and

a plurality of valves for controlling fluid flow through the plurality of fluidic pathways.

19 . The cartridge of claim 18 , wherein the first end panel further comprises at least one window configured for optical detection.

20 . The cartridge of claim 19 , wherein the at least one window comprises a bubble sensing window.

21 . The cartridge of claim 18 , wherein the first end panel further comprises a bubble trap.

22 . The cartridge of claim 18 , wherein the second end panel further comprises at least one fluid extraction port.

23 . The cartridge of claim 22 , wherein the at least one fluid extraction port comprises a needleless injection port.

24 . The cartridge of claim 18 , wherein at least one of the plurality of valves comprises a pinch valve.

25 . The cartridge of claim 18 further comprising a central panel that couples the first and second end panels.

26 . The cartridge of claim 25 , wherein the central panel comprises a plurality of fluidic pathways.

27 . The cartridge of claim 26 , wherein the plurality of fluidic pathways is fluidically connected to the plurality of fluidic pathways of each of the first and second end panels.

28 . The cartridge of claim 26 , wherein the central panel further comprises at least one pressure sensor configured to monitor fluid flow through the plurality of fluidic pathways of the central panel.

29 . The cartridge of claim 26 , wherein the plurality of fluidic pathways of the central panel is fluidically connected to one or more pumps.

30 . The cartridge of claim 26 , wherein the central panel is coupled to a vent manifold configured to provide sterile air to the plurality of fluidic pathways of the central panel.

31 . The cartridge of claim 25 , wherein the central panel is coupled to a degassing module comprising an air permeable membrane.

32 . The cartridge of claim 25 , wherein the central panel couples the first end panel and the second end panel via first and second bridges.

33 . The cartridge of claim 18 further comprising one or more modules, each coupled to the fluidic manifold.

34 . The cartridge of claim 33 further comprising one or more fluid conduits, each coupling a corresponding module to the fluidic manifold.

35 . The cartridge of claim 33 , wherein the one or more modules of the cartridge comprise one or more of an elutriation module, an electroporation module, a spinoculation module, a bioreactor module, or a cell sorting module.

36 . The cartridge of claim 18 , wherein the first end panel is fluidically connected to a first bioreactor module and the second end panel is fluidically connected to a second bioreactor module.

37 . The cartridge of claim 18 , wherein the valves of each of the first and second end panels are actuatable between open and closed configurations in response to an electrical signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2025
From: BURKEEN, LILY ELIZABETH; CURRAN, KELLY F.; TOY, WILSON WAI; WEBER, MATTHIAS
To: CELLARES CORPORATION
Reel/Frame 072171/0717 →