IP Library Granted Patent US 8,507,263
Granted Patent B2
US 8,507,263 · App. 12/621,213 · Granted Aug 13, 2013

Rotating bioreactor

Inventors: Maria Adelaide Asnaghi (Meda, IT); Sara Mantero (Milan, IT)
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Quick Facts
Patent No.
US 8,507,263
App. No.
12/621,213
Granted
Aug 13, 2013
Kind
B2
Abstract

Articles and methods for growing tissues and organs using bioreactors, including rotating bioreactors, are provided. In some embodiments, a bioreactor is configured to provide a first and second chamber, such as an inner and an outer chamber, respectively. The chambers may be co-axially arranged with respect to each other. A wall of the bioreactor defining the two chambers may be formed at least in part from a scaffold derived from a length of a hollow or tubular tissue or organ. Such a bioreactor can be used to form biocompatible structures for tissue engineering and organ replacement, such as cellular tissues, organ-like structures, and/or complete organs, within the bioreactor.

Claims (20)

1. A bioreactor, comprising:

a vessel;

a cylindrical scaffold defining an outer wall of an inner chamber and an inner wall of an outer chamber, wherein the scaffold is removably positioned within the vessel and configured to rotate relative to the vessel about a central axis extending through the inner chamber;

a shaft positioned within the inner chamber, the shaft comprising an opening defining a first inlet for introducing a liquid into the inner chamber;

a removable flange which is operatively connected to the shaft, wherein the scaffold is attached to the flange, and wherein the flange is configured to rotate with the scaffold about the central axis;

one or more mixing elements that are connected to the flange such that they are positioned within the outer chamber and co-rotate with the scaffold to enhance fluid motion and mixing in the outer chamber;

a first outlet in fluid communication with the inner chamber; and

an opening in fluid communication with the outer chamber for introducing and/or removing a liquid from the outer chamber.

2. A bioreactor as in claim 1 , wherein the opening in the shaft defining the first inlet is radially positioned with respect to a longitudinal axis of the shaft.

3. A bioreactor as in claim 1 , further comprising a support structure coupled to the shaft, wherein the support structure comprises an opening defining the first outlet.

4. A bioreactor as in claim 1 , wherein the inner chamber and the outer chamber are co-axially arranged with respect to each other.

5. A bioreactor as in claim 1 , wherein at least a portion of the scaffold comprises a decellularized tissue construct.

6. A bioreactor as in claim 1 , wherein the scaffold is nonporous.

7. A bioreactor as in claim 1 , wherein the scaffold is porous.

8. A bioreactor as in claim 1 , wherein the scaffold includes a first cell type and a second cell type.

9. A bioreactor as in claim 8 , wherein the first cell type is positioned on the outer wall of the inner chamber and the second cell type is positioned on the inner wall of the outer chamber.

10. A bioreactor as in claim 1 , further comprising a first pump in fluid communication with the inner chamber.

11. A bioreactor as in claim 10 , further comprising a second pump in fluid communication with the outer chamber.

12. A bioreactor as in claim 1 , wherein the scaffold supports and includes a tissue attached thereto.

13. A bioreactor as in claim 1 , wherein the scaffold supports and includes an organ attached thereto.

Assignments (1)
CHANGE OF NAME Recorded Aug 3, 2016
From: HARVARD APPARATUS REGENERATIVE TECHNOLOGY, INC.; BIOSTAGE, INC.
To: BIOSTAGE, INC.
Reel/Frame 039551/0445 →
Continuity (2)
Provisional Application 61273736 · Aug 7, 2009
Related Publication 20110033918A1 · Feb 10, 2011