IP Library Granted Patent US 10,214,714
Granted Patent B2
US 10,214,714 · App. 14/959,950 · Granted Feb 26, 2019

Perfusion bioreactor

Inventor: Giuseppe Maria de Peppo (New York, NY)
Assignee: New York Stem Cell Foundation, Inc.
C12M29/10C12M21/08C12M23/46C12M25/14
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Quick Facts
Patent No.
US 10,214,714
App. No.
14/959,950
Granted
Feb 26, 2019
Kind
B2
Abstract

In some embodiments the present invention provides perfusion bioreactors and cell culture scaffolds suitable for the preparation of tissue grafts, such as bone tissue grafts. In some embodiments, the perfusion bioreactors comprise a graft chamber and/or a graft chamber insert configured to hold a tissue graft having a certain shape and/or certain dimensions, and/or to allow culture of such tissue grafts under press-fit direct perfusion conditions. In some embodiments, the perfusion bioreactors comprise an equilibration chamber.

Claims (28)

1. A perfusion bioreactor suitable for use in the preparation of a tissue graft segment comprising:

a) a graft chamber comprising a graft chamber floor;

b) an equilibration chamber adjacent the graft chamber and in fluid communication with the graft chamber, wherein the equilibration chamber comprises an equilibration chamber floor having a fluid opening opposing the graft chamber and in fluid communication with an inlet; and

c) an outlet disposed downstream of the graft chamber and the equilibration chamber, wherein a fluid path is defined between the inlet and the outlet whereby fluid flows through the graft chamber and the equilibration chamber from the fluid opening to the outlet, and wherein the bioreactor is configured such that fluid enters into the equilibration chamber generally perpendicular to the equilibration chamber floor and the graft chamber floor.

2. The perfusion bioreactor of claim 1 , wherein the graft chamber is configured to accommodate a tissue graft segment.

3. The perfusion bioreactor of claim 1 , wherein the graft chamber further comprises a graft chamber insert configured to accommodate a tissue graft segment.

4. The perfusion bioreactor of claim 3 , wherein the graft chamber insert is custom-designed to accommodate the tissue graft segment.

5. The perfusion bioreactor of claim 3 , wherein the graft chamber insert is custom-designed to accommodate the tissue graft segment using a digital three-dimensional model of the tissue graft segment.

6. The perfusion bioreactor of claim 5 , wherein the digital three-dimensional model of the tissue graft segment is generated by medical imaging, computed tomography, computer-assisted design, or any combination thereof.

7. The perfusion bioreactor of claim 1 , comprising a bottom portion and a top portion, the bottom portion comprising: i) the graft chamber, ii) the equilibration chamber, iii) the inlet, and iv) a fluid channel between the inlet and the equilibration chamber.

8. The perfusion bioreactor of claim 7 , wherein the bottom portion and top portion are formed as a single unitary piece.

9. The perfusion bioreactor of claim 7 , wherein the top portion comprises: i) a fluid reservoir, ii) an aperture fluidly connecting the fluid reservoir and the graft chamber, and iii) the outlet.

10. The perfusion bioreactor of claim 9 , wherein the bottom and top portions are attached via a fastening mechanism.

11. The perfusion bioreactor of claim 10 , wherein the fastening mechanism comprises screws, rods, pins, clips, latches or any combination thereof.

12. The perfusion bioreactor of claim 10 , wherein the top and bottom portions further comprise one or more holes to facilitate the fastening mechanism.

13. The perfusion bioreactor of claim 10 , further comprising a sealing mechanism situated between the top and the bottom portions.

14. The perfusion bioreactor of claim 10 , further comprising a sealing device capable of preventing fluid leakage from between the bottom and top portions.

15. The perfusion bioreactor of claim 14 , wherein the sealing device is an o-ring.

16. The perfusion bioreactor of claim 1 , further comprising a fluid pump and one or more tubes fluidly connecting the inlet and the outlet to the pump thereby providing a fluid circuit.

17. The perfusion bioreactor of claim 16 , wherein the pump is a peristaltic pump.

18. The perfusion bioreactor of claim 1 , wherein the graft chamber is custom-designed to accommodate the tissue graft segment.

19. The perfusion bioreactor of claim 1 , wherein the graft chamber is custom-designed to accommodate the tissue graft segment using a digital three-dimensional model of the tissue graft segment.

20. The perfusion bioreactor of claim 19 , wherein the digital three-dimensional model of the tissue graft segment is generated by medical imaging, computed tomography, computer-assisted design, or any combination thereof.

21. The perfusion bioreactor of claim 1 , wherein the tissue graft segment has a maximum thickness of about one centimeter or less.

22. The perfusion bioreactor of claim 1 , wherein the tissue graft segment has a maximum thickness of about 0.3 millimeters to 10 millimeters.

23. The perfusion bioreactor of claim 1 , wherein the equilibration chamber further comprises one or more diffusion enhancing elements.

24. The perfusion bioreactor of claim 1 , wherein the equilibration chamber further comprises an insert to maintain the dimensions of the equilibration chamber and/or maintain fluid flow through the perfusion bioreactor.

25. The perfusion bioreactor of claim 1 , wherein the graft chamber further comprises an insert to (i) maintain the size and dimensions of the graft chamber and equilibrium chamber, and/or (ii) maintain fluid flow through the perfusion bioreactor.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 039921 FRAME: 0862. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Oct 10, 2017
From: DE PEPPO, GIUSEPPE MARIA
To: NEW YORK STEM CELL FOUNDATION, INC.
Reel/Frame 044172/0980 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2016
From: DE PEPPO, GIUSEPPE MARIA
To: NEW YORK STEM CELL FOUNDATION
Reel/Frame 039921/0862 →
Continuity (4)
Continuation In Part PCTUS2014072579 · Dec 29, 2014
Provisional Application 62087614 · Dec 4, 2014
Provisional Application 61921915 · Dec 30, 2013
Related Publication 20160194593A1 · Jul 7, 2016
Cited By (1)
US 12,545,873