IP Library › Granted Patent US 12,606,788
Granted Patent B2
US 12,606,788 · App. 17/464,589 · Granted Apr 21, 2026

Perfusion filter membrane assembly

Inventors: Douglas Albagli (Marlborough, MA); William A. Hennessy (Marlborough, MA); Ralph Stankowski (Westborough, MA)
Assignee: Global Life Sciences Solutions USA LLC
C12M29/04B01D69/02B01D69/10B01D71/64C12M23/14C12M23/26C12M29/10B01D2325/02
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Quick Facts
Patent No.
US 12,606,788
App. No.
17/464,589
Granted
Apr 21, 2026
Kind
B2
Abstract

Filter holders and membranes are provided that can be included within a bioreactor bag system. The filter holders and membranes include features that allow incorporation of advanced membrane materials having differing material characteristics than traditional membranes that more closely matched the characteristics of the filter holder.

Claims (31)

1 . A perfusion filter assembly comprising:

a plurality of standoffs, the plurality of standoffs positioned on a bottom surface;

a filter holding device adapted to engage the plurality of standoffs;

a filter membrane, the filter membrane comprising:

a porous filter region, the porous filter region comprising a plurality of pores having a pore dimension within a range of 20 nm and less than 100 microns; and

a membrane frame region surrounding the porous filter region, where the membrane frame region comprises a plurality of openings adapted to engage the plurality of standoffs;

a seal abutting the filter membrane; and

a support frame adapted to engage with the filter holding device and the plurality of standoffs and secure the filter membrane and the seal between the filter holding device and the support frame, the filter membrane being spaced from the bottom surface by way of the plurality of standoffs.

2 . The perfusion filter assembly of claim 1 , wherein the filter membrane further comprises a support region having a plurality of membrane support holes, the membrane support holes having a minimum dimension greater than the pore dimension.

3 . The perfusion filter assembly of claim 1 , wherein the membrane frame region is of the same material as the porous filter region with a different thickness.

4 . The perfusion filter assembly of claim 1 , wherein the membrane frame region is of a different material than the membrane filter.

5 . The perfusion filter assembly of claim 1 , wherein the membrane frame region comprises a plurality of frame support holes.

6 . The perfusion filter assembly of claim 2 , wherein the support frame and the filter holding device are engaged with each other by bonding wherein the support frame and filter holding device include a recessed region for engaging with the support region of the filter membrane and securing the filter membrane within the filter assembly.

7 . The perfusion filter assembly of claim 1 , wherein the filter membrane is a polyimide filter membrane.

8 . A flexible bag bioreactor comprising:

an inner surface and an outer surface;

a perfusion filter assembly, the perfusion filter assembly comprising:

a plurality of standoffs;

a filter holding device adapted to engage the plurality of standoffs;

a filter membrane, the filter membrane comprising:

a porous filter region, the porous filter region comprising a plurality of pores having a pore dimension within a range of 20 nm and less than 100 microns; and

a membrane frame region surrounding the porous filter region,

where the membrane frame region comprises a plurality of openings adapted to engage the plurality of standoffs;

a seal abutting the filter membrane; and

a support frame adapted to engage with the filter holding device and the plurality of standoffs and secure the filter membrane and the seal between the filter holding device and the support frame within the perfusion filter assembly, wherein the perfusion filter assembly is attached to the inner surface of the flexible bag via the plurality of standoffs such that the filter membrane held by the perfusion filter assembly is provided at least a distance from the inner surface of the flexible bag.

9 . The flexible bag bioreactor of claim 8 , wherein the filter membrane further comprises a support region having a plurality of membrane support holes, the membrane support holes having a minimum dimension greater than the pore dimension.

10 . The flexible bag bioreactor of claim 8 , wherein the membrane frame region is of the same material as the porous filter region with a different thickness.

11 . The flexible bag bioreactor of claim 8 , wherein the membrane frame region is of a different material than the membrane filter.

12 . The flexible bag bioreactor of claim 8 , wherein the membrane frame region comprises a plurality of frame support holes.

13 . The flexible bag bioreactor of claim 9 , wherein the support frame and the filter holding device are engaged with each other by bonding wherein the support frame and filter holding device include a recessed region for engaging with the support region of the filter membrane and securing the filter membrane within the filter assembly.

14 . The flexible bag bioreactor of claim 8 , wherein the filter membrane is a polyimide filter membrane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2021
From: ALBAGLI, DOUGLAS; HENNESSY, WILLIAM A.; STANKOWSKI, RALPH
To: GLOBAL LIFE SCIENCES SOLUTIONS USA, LLC
Reel/Frame 058256/0339 →
Continuity (1)
Related Publication 20230065984A1 · Mar 2, 2023
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