IP Library Granted Patent US 11,033,295
Granted Patent B2
US 11,033,295 · App. 16/584,755 · Granted Jun 15, 2021

Atraumatically formed tissue composition, devices and methods of preparation and treatment

Inventors: Thomas Andrew Davenport (Syosset, NY); Paul Mulhauser (New York, NY); Gregory C. Guinan (Brookyln, NY)
Assignee: TissueMill Technologies LLC
A61B17/322A61L27/362A61L27/3695C12M45/02C12M45/04C12N5/0629A61B2017/3225
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,033,295
App. No.
16/584,755
Granted
Jun 15, 2021
Kind
B2
Abstract

A process and system provides for atraumatic preparation of morselized Tissue Particles (TP)s, such as Full Thickness Skin Graft Particles (FTSGPs), cartilage particles and other organ tissue particles, in a liquid medium. The resultant tissue product may be a suspension of Tissue Particles in an aqueous solution and containing highly viable cells and may be rapidly prepared at bedside or in the operating room and conveniently delivered to a patient through a syringe or similar applicator. The morselized Tissues Particles may be used for surgical applications including wound healing, cosmetic surgery, and orthopedic cartilage repairs.

Claims (42)

1. A device for processing organ tissue so as to maintain tissue viability comprising:

a) an aseptic container for accommodating fluid and for receiving said organ tissue;

b) a stationary cutting device and a movable cutting device supported in compressive engagement within said aseptic container, said movable cutting device being movable with respect to said stationary cutting device to cut organ tissue therebetween, said stationary cutting device including breaches therethrough configured to atraumatically cut said tissue in combination with said movable cutting device, in a slicing action;

c) an agitation device supported within said aseptic container which causes repeated continuous recirculating flow of said fluid and organ tissue through said cutting devices within said aseptic container, said agitation device capable of moving in concert with said movable cutting device and repeatedly recirculating said fluid and organ tissue through said cutting devices to atraumatically cut said organ tissues repeatedly, while maintaining said tissue viability; and

d) wherein said agitation device includes an impeller movable with said movable cutting device in a rotational direction about an axis, said impeller shaped to include a leading portion adjacent said cutting devices for imparting an axial thrust and a terminal portion for imparting a radial thrust for causing fluid repeated recirculating flow through said cutting devices.

2. A device of claim 1 , wherein said at least one movable cutting device is mounted to or integrated with said agitation device for movement therewith.

3. A device of claim 1 , wherein each of said cutting devices include a plurality of spaced apart cutting blades.

4. A device of claim 1 wherein said agitation device causes circulating flow of said fluid and organ tissue through said cutting devices.

5. A device of claim 1 , wherein said agitation device creates vortex movement of said fluid and said organ tissue repeatedly through said cutting devices.

6. A device of claim 1 , wherein said impeller has a curved surface along said axis.

7. A device of claim 1 , wherein each of said cutting devices includes a plurality of blades radially arrayed with angular spaces therebetween.

8. A device of claim 7 , wherein said angular spaces between said blades of said movable cutting device are different from said angular spaces of said blades of said other cutting device.

9. A device of claim 1 , wherein said container includes an opening for receiving of said fluid and said organ tissue.

10. A device of claim 1 wherein said container includes an outlet for discharge of said fluid and said cut organ tissue.

11. A device of claim 10 further including a dispensing device in fluid communication with said outlet to receive said discharged fluid and said cut organ tissue.

12. A device of claim 11 , wherein said dispensing device is a syringe.

13. A device for processing organ tissue comprising:

a) an aseptic container for accommodating fluid and for receiving said organ tissue;

b) a stationary cutting device and a movable cutting devices supported in compressive physical contact along a common shear plane within said aseptic container, said movable cutting device being movable with respect said stationary cutting device to cut organ tissue therebetween, said stationary cutting device including breaches therethrough configured to atraumatically cut said tissue in combination with said movable cutting device, in a slicing action;

c) an agitation device supported within said aspetic container which causes repeated continuous recirculating flow of said fluid and organ tissue through said cutting devices within said aseptic container, said agitation device capable of moving in concert with said movable cutting device and repeatedly recirculating said fluid and organ tissue through said cutting devices to atraumatically cut said organ tissue repeatedly, while maintaining said tissue viability; and

d) wherein said agitation device includes an impeller movable with said movable cutting device in a rotational direction about an axis, said impeller shaped to include a leading portion adjacent said cutting device for imparting an axial thrust and a terminal portion for imparting a radial thrust for causing said repeated recirculating flow though said cutting devices.

14. A device of claim 13 wherein said impeller has a curved surface.

15. A method for processing organ tissue into particulate form comprising:

providing a stationary cutting device and movable cutting device in mutual compressive engagement supported within an aseptic container;

placing fluid and organ tissue into said container;

moving said movable cutting device with respect to said stationary cutting device to cut said organ tissue through breaches formed in the stationary cutting device to atraumatically cut said tissue in combination with said movable cutting device, in a slicing action;

providing an impeller to continuously recirculate said fluid and said organ tissue through said cutting devices to repeatedly atraumatically cut said organ tissue into progressively smaller particulates, said impeller shaped to include a leading portion proximal to said cutting devices for imparting an axial thrust and a terminal portion distal to said cutting devices for imparting a radial thrust for causing said continuous recirculation through said devices for repeated cutting of said organ tissue.

16. A method of claim 15 , wherein said impeller has a curved surface.

17. A method of claim 15 , further comprising the step of:

mounting to or integrating with said movable cutting device to said impeller for movement therewith.

18. A method of claim 15 , wherein said container includes an outlet and further comprises the step of:

discharging said fluid and said cut organ tissue through said outlet.

19. A method of claim 18 , further including:

providing a dispensing device in fluid communication with said outlet; and

discharging said fluid and said cut organ tissue into said dispensing device.

20. A method for processing organ tissue into particulate form comprising:

providing a movable cutting device and a stationary cutting device in compressive contact along a common shear plane supported in an aseptic container;

placing fluid and organ tissue into said container;

moving said movable cutting device with respect to said stationary cutting device to atraumatically cut said organ tissue through breaches in said stationary cutting device in a slicing action; and

providing an impeller to continuously recirculate said fluid and said organ tissue through said cutting devices to repeatedly atraumatically cut said organ tissue into progressively smaller particulates, said impeller shaped to include a leading portion proximal to said cutting devices for imparting an axial thrust and a terminal portion distal to said cutting devices for imparting a radial thrust for causing said continuous recirculation through said cutting devices.

21. A method of claim 20 wherein said impeller has a curved surface.

22. A method of claim 20 wherein the impeller is mounted to or integrated with said movable cutting device for movement therewith.

Assignments (4)
INTELLECTUAL PROPERTY TRANSFER AGREEMENT Recorded Mar 31, 2022
From: FACTORSNY LLC
To: DAVENPORT, THOMAS, DR.
Reel/Frame 059567/0327 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2020
From: DAVENPORT, THOMAS ANDREW
To: TISSUEMILL TECHNOLOGIES LLC
Reel/Frame 052540/0618 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2020
From: MULHAUSER, PAUL
To: TISSUEMILL TECHNOLOGIES LLC
Reel/Frame 052540/0857 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2020
From: GUINAN, GREGORY
To: TISSUEMILL TECHNOLOGIES LLC
Reel/Frame 052540/0952 →
Continuity (3)
Provisional Application 62843724 · May 6, 2019
Provisional Application 62844232 · May 7, 2019
Related Publication 20200352587A1 · Nov 12, 2020