IP Library Granted Patent US 9,925,308
Granted Patent B2
US 9,925,308 · App. 14/855,034 · Granted Mar 27, 2018

Injectable composition for in-situ repair and regeneration of an injured ligament or tendon and methods of use

Inventors: James Chang (Stanford, CA); Hung Pham (Milpitas, CA); Colin Woon (Chicago, IL); Simon Farnebo (Palo Alto, CA); Anais Legrand (Palo Alto, CA)
Assignees: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY; THE UNITED STATES OF AMERICA AS REPRESENTED BY THE DEPARTMENT OF VETERANS AFFAIRS
A61L27/52A61K35/12A61K35/16A61K38/28A61K45/06A61L27/24A61L27/3633A61L27/3662A61L27/3687A61L27/3804A61L27/386A61L27/3834A61L27/50A61L27/54A61L27/58A61L2300/252A61L2300/402A61L2300/406A61L2300/412A61L2300/414A61L2300/45A61L2300/64A61L2400/06A61L2430/10A61L2430/40
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Quick Facts
Patent No.
US 9,925,308
App. No.
14/855,034
Granted
Mar 27, 2018
Kind
B2
Abstract

The invention provides an injectable composition and method for the minimally invasive, in-situ repair and regeneration of an injured ligament or tendon in a mammalian subject. The composition is also useful for the delivery of growth factors, therapeutic agents and cells into the area of tendon or ligament injury.

Claims (21)

1. A composition for in-situ repair and regeneration of an injured ligament or tendon not involving bone formation in a mammalian subject, comprising decellularized extracellular matrix that was derived from tendon connective tissue by enzymatic digestion at ambient temperature, said composition being in injectable form below 25 degree Celsius and forming a gel upon administration into said subject's area of injured ligament or tendon achieving in-situ repair and regeneration of said injured ligament or tendon not involving bone formation by creating in situ a support structure which facilitates infiltration of said subject's own fibroblasts and tenocytes into said support structure.

2. The composition in accordance to claim 1 comprising tendon connective tissue that was obtained from an allogeneic source.

3. The composition in accordance to claim 2 comprising tendon connective tissue that was obtained from a human.

4. The composition in accordance to claim 1 , further comprising cells selected from the group consisting of stem cells, progenitor cells and fibroblasts.

5. The composition in accordance to claim 1 , further comprising a therapeutic agent.

6. The composition in accordance to claim 4 , further comprising a therapeutic agent.

7. The composition in accordance to claim 5 , wherein said therapeutic agent is selected from the group consisting of growth factors, analgesics, antibiotics and platelet-rich plasma.

8. The composition in accordance to claim 6 , wherein said therapeutic agent is selected from the group consisting of growth factors, analgesics, antibiotics and platelet-rich plasma.

9. The composition in accordance to claim 1 prepared for one-time administration.

10. The composition in accordance to claim 1 prepared for repeat administration.

11. The composition in accordance to claim 1 for use in in-situ repair of Achilles tendon, rotator cuff, patella tendon, common flexor tendon or common extensor tendon.

12. The composition in accordance to any of claim 1 , 4 , 5 or 6 , wherein the composition is an injectable decellularized extracellular matrix derived from human tendon connective tissue.

13. The composition in accordance to claim 1 , comprising decellularized extracellular matrix that was derived from tendon connective tissue and, furthermore, subjected to high frequency ultrasonication, and forming a gel upon administration into said subject's area of injured ligament or tendon, said gel comprising nanoscaled collagen fibers with an average diameter of 170 nm.

14. A method of producing a composition

for in-situ repair and regeneration of an injured ligament or tendon not involving bone formation in a mammalian subject comprising decellularized tendon extracellular matrix that was derived from tendon connective tissue by enzymatic digestion at ambient temperature,

said method comprising:

(a) without termal denaturation processing tendon connective tissue from a donor to obtain decellularized tendon extracellular matrix; and

(b) milling, powderizing and enzymatically treating said tendon extracellular matrix at ambient temperature.

15. The method in accordance to claim 14 , wherein said decellularized tendon extracellular matrix is derived from an allogeneic source.

16. The method in accordance to claim 15 , wherein said allogeneic source is human.

17. The method in accordance to claim 14 , wherein said decellularized tendon extracellular matrix is, furthermore, subjected to high frequency ultrasonication.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2017
From: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY
To: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY; THE UNITED STATES GOVERNMENT AS REPRESENTED BY THE DEPARTMENT OF VETERANS AFFAIRS
Reel/Frame 043736/0084 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2016
From: CHANG, JAMES; FARNEBO, SIMON; LEGRAND, ANAIS; PHAM, HUNG; WOON, COLIN
To: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY
Reel/Frame 037965/0469 →
Continuity (3)
Continuation In Part PCTUS2014028525 · Mar 14, 2014
Provisional Application 61789336 · Mar 15, 2013
Related Publication 20160166735A1 · Jun 16, 2016