IP Library Granted Patent US 9,227,339
Granted Patent B2
US 9,227,339 · App. 14/530,499 · Granted Jan 5, 2016

Devices, systems, and methods for the fabrication of tissue

Inventors: Keith Murphy (Los Angeles, CA); Scott Dorfman (Baltimore, MD); Nathan Smith (Ferntree Gully, AU); Larry Bauwens (Lilydale, AU); Ian Sohn (Glen Iris, AU); Tim McDonald (Mount Waverly, AU); Chris Leigh-Lancaster (Murrumbeena, AU); Richard Jin Law (Stamford, CT)
Assignee: ORGANOVO, INC.
B28B1/001B41J3/407
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Quick Facts
Patent No.
US 9,227,339
App. No.
14/530,499
Granted
Jan 5, 2016
Kind
B2
Abstract

Described herein are bioprinters comprising: one or more printer heads, wherein a printer head comprises a means for receiving and holding at least one cartridge, and wherein said cartridge comprises contents selected from one or more of: bio-ink and support material; a means for calibrating the position of at least one cartridge; and a means for dispensing the contents of at least one cartridge. Further described herein are methods for fabricating a tissue construct, comprising: a computer module receiving input of a visual representation of a desired tissue construct; a computer module generating a series of commands, wherein the commands are based on the visual representation and are readable by a bioprinter; a computer module providing the series of commands to a bioprinter; and the bioprinter depositing bio-ink and support material according to the commands to form a construct with a defined geometry.

Claims (29)

1. A three-dimensional bioprinter comprising:

a. one or more printer heads, wherein a printer head comprises a means for receiving and holding at least one cartridge, wherein a cartridge comprises at least one deposition orifice and contents comprising a bio-ink, wherein the bio-ink comprises a solid or semi-solid composition of living cells;

b. a means for calibrating a position in space of the at least one cartridge or the at least one deposition orifice utilizing an optical detector;

c. a means for extruding the contents of the at least one cartridge by application of pressure;

d. a receiving surface for receiving the extruded contents of the at least one cartridge; and

e. a programmable computer processor communicatively connected to the means for calibrating and the means for extruding, the programmable computer processor for positioning the one or more printer heads in three dimensions and regulating the extrusion of the contents of the at least one cartridge.

2. The bioprinter of claim 1 , further comprising a means for applying a wetting agent, utilizing a sprayer or a pipette, to one or more of:

a. the receiving surface;

b. the at least one deposition orifice;

c. the bio-ink; and

d. the extruded contents of the at least one cartridge;

wherein the wetting agent is applied at one or more time points selected from: before the bio-ink is extruded by the bioprinter, substantially concurrently with extruding, and after the bio-ink is extruded by the bioprinter.

3. The bioprinter of claim 1 , wherein the means for calibrating the position of the at least one cartridge or the at least one deposition orifice calibrates along a x-axis, a y-axis, and a z-axis, utilizing the optical detector.

4. The bioprinter of claim 1 , wherein the computer processor is programmable by:

a. a graphical user interface that is capable of receiving input of a visual representation of a desired tissue construct; and

b. generating a series of commands, wherein the commands are based on the visual representation, inputted via the graphical user interface.

5. The bioprinter of claim 4 , wherein the visual representation comprises identification of one or more elements of a desired tissue construct as one or more of:

a. the bio-ink; and

b. a specific composition of the bio-ink.

6. The bioprinter of claim 1 , wherein the one or more printer heads, the at least one cartridge, or the at least one deposition orifice are moved relative to the receiving surface, utilizing the optical detector, to produce a desired tissue construct of a particular three-dimensional geometry, inputted via the graphical user interface in the extruded contents of the at least one cartridge.

7. The bioprinter of claim 1 , wherein the receiving surface is moved relative to the one or more printer heads, the at least one cartridge, or the at least one deposition orifice, utilizing the optical detector, to produce a desired tissue construct of a particular three dimensional geometry, inputted via the graphical user interface, in the extruded contents of the at least one cartridge.

8. The bioprinter of claim 1 , wherein the deposition orifice is substantially round and the bio-ink is extruded with a circular cross-section.

9. The bioprinter of claim 1 , wherein the bio-ink further comprises an extrusion compound.

10. The bioprinter of claim 9 , wherein the extrusion compound comprises a hydrogel.

11. The bioprinter of claim 1 , further comprising a bio-ink reservoir, the bio-ink reservoir supplying bio-ink to the cartridge.

12. The bioprinter of claim 1 , wherein the optical detector is a camera.

13. The bioprinter of claim 1 , wherein the pressure is applied by a piston, compressed gas, hydraulics, or a combination thereof.

14. The bioprinter of claim 1 , wherein the receiving surface is substantially flat or substantially smooth.

15. The bioprinter of claim 1 , wherein the topography of the receiving surface is designed to accommodate or influence the size, shape, or texture, or geometry one or more deposited structures.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2015
From: MURPHY, KEITH; DORFMAN, SCOTT; SMITH, NATHAN; BAUWENS, LARRY; SOHN, IAN; MCDONALD, TIM; LEIGH-LANCASTER, CHRIS; LAW, RICHARD JIN
To: ORGANOVO, INC.
Reel/Frame 035836/0733 →
Continuity (4)
Continuation 13968313 · Aug 15, 2013
Continuation 13246428 · Sep 27, 2011
Provisional Application 61405582 · Oct 21, 2010
Related Publication 20150057786A1 · Feb 26, 2015