IP Library Granted Patent US 9,220,732
Granted Patent B2
US 9,220,732 · App. 14/039,011 · Granted Dec 29, 2015

Continuous culturing device

Inventor: Francesco Curcio (Pagnacco, IT)
Assignee: VIVABIOCELL S.P.A.
A61K35/32A61K9/00C12M21/08C12M25/14
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Quick Facts
Patent No.
US 9,220,732
App. No.
14/039,011
Granted
Dec 29, 2015
Kind
B2
Abstract

A continuous device for culturing mammalian cells in a three-dimensional structure for the transplantation or implantation in vivo is described. The culturing device comprises (a) a scaffold formed by a matrix of interconnected growth surfaces spaced at regular intervals and (b) a fluid distribution means at the inlet and the exit of the growth areas. The device is particularly useful for culturing bone cells for dental implants or bone reconstruction.

Claims (12)

1. A lattice-shaped scaffold for the growth of tissue in vivo, the lattice-shaped scaffold comprising a unitary 3-dimensional matrix having x, y and z Cartesian axes with interconnected growth surfaces spaced at regular intervals in the x, y, z Cartesian axes thereby forming a regular orthogonal 3-dimensional arrangement of interconnected, cubic open spaces disposed between the interconnected growth surfaces, where the interconnected, cubic open spaces are along and parallel to the x, y, and z Cartesian axes of the lattice-shaped scaffold, and

wherein the regular intervals are equal or larger than 0.7 mm and smaller than 3.0 mm, and

wherein all of the interconnected growth surfaces are aligned with each other in relation to the x, y and z Cartesian axes.

2. A scaffold according to claim 1 wherein the matrix of interconnected growth surfaces spaced at regular intervals are formed around a central support.

3. A scaffold according to claim 1 wherein the interconnected growth surfaces are defined by the interconnection of multiple fibers or three-dimensional structures.

4. A scaffold according to claim 1 wherein the interconnected growth surfaces are spaced at regular intervals equal or larger than 0.9 mm and smaller than 3.0 mm.

5. A scaffold according to claim 1 wherein the interconnected growth surfaces are spaced at regular intervals equal or larger than 1.0 mm and smaller than 3.0 mm.

6. A scaffold according to claim 1 wherein the interconnected growth surfaces are spaced at regular intervals equal or larger than 1.0 mm and smaller than 2.0 mm.

7. A method of reconstructing tissue in a patient comprising implanting a scaffold of claim 1 into a patient in need thereof.

8. A scaffold according to claim 2 , wherein the central support includes a first cylindrical support on a first side of the scaffold and a second cylindrical support on a second side of the scaffold.

9. A scaffold according to claim 8 , wherein the first cylindrical support and the second cylindrical support are at oppositely disposed ends of the central support.

10. A scaffold according to claim 1 , wherein the interconnected, cubic open spaces have a substantially equal size.

Priority Claims (1)
EP 09179465 · Dec 16, 2009 · regional
Continuity (2)
Continuation 13515685
Related Publication 20140178448A1 · Jun 26, 2014