IP Library › Granted Patent US 11,623,025
Granted Patent B2
US 11,623,025 · App. 16/078,413 · Granted Apr 11, 2023

Methods and kits for guiding growth of cells or cell components and uses thereof in tissue repair

Inventors: Orit Shefi (Rosh HaAyin, IL); Merav Antman-Passig (Petach Tiqva, IL)
Assignee: BAR ILAN UNIVERSITY
A61L27/3895A61K35/30A61K35/36A61K38/185A61K38/39A61K41/00A61L27/047A61L27/24A61L27/38A61L27/383A61L27/3813A61L27/50A61L27/52A61L27/54A61L27/58A61L27/60C12N5/0619C12N5/0625A61K33/24A61L2300/414A61L2400/06A61L2430/32A61L2430/34B82Y5/00C12N2529/00C12N2533/54
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Quick Facts
Patent No.
US 11,623,025
App. No.
16/078,413
Granted
Apr 11, 2023
Kind
B2
Abstract

Provided subject matter relates to tissue engineering. More specifically provided are kits, devices and methods for in situ repair and regeneration of guided and functional growth of cells and cell components by providing into the injury site biomaterial solution including the cell(s), magnetic particles and solidifying the biomaterial while applying the magnetic field.

Claims (27)

1. A method for guiding growth of a cell, guiding growth of a mixture of cells or guiding growth of cellular extension(s), the method comprising the steps of:

(a) providing at least one biomaterial solution comprising: (i) magnetic particles; and (ii) said cell(s), or plurality of cells of different types, with the proviso that said cell(s), or plurality of cells are not magnetically labeled cells;

(b) providing at least two magnetic sources providing a magnetic field having a strength of between 162 G to 2110 G;

(c) solidifying said biomaterial while applying said magnetic field, thereby aligning along the magnetic field lines, at least one of said magnetic particles or aggregates thereof and components of said biomaterial; and

(d) allowing growth of at least one of cell(s) and cellular extension(s) within said solidified biomaterial, thereby guiding the growth of said cell(s) and/or cellular extension(s) longitudinally oriented along at least one of the aligned magnetic particles or aggregates thereof and the aligned components of said biomaterial.

2. The method according to claim 1 , wherein said biomaterial solution is liquid hydrogel.

3. The method according to claim 2 , wherein said hydrogel is a collagen solution and wherein said component(s) of said biomaterial are at least one of collagen fibrils and collagen fibers.

4. The method according to claim 1 , wherein said magnetic particles comprising any one of a magnetite core, a maghemite core, Ferrite core or iron oxide core and wherein said magnetic particles are uncoated or coated magnetic particles.

5. The method according to claim 4 , wherein said magnetic particles are oleic acid-sodium salt coated magnetic particles.

6. The method according to claim 4 , wherein said magnetic particles are at least one of conjugated, attached, linked, mixed with, encapsulated within, or encapsulating at least one of cell growth agent(s), cell guiding agent(s) and cell selective agent(s).

7. The method according to claim 4 , wherein the diameter of said magnetic particles ranges between about 0.1 nm to 100 μm.

8. The method according to claim 1 , wherein said magnetic sources are portable magnetic sources comprised within a device and held by or connected to adjustable holders.

9. The method according to claim 1 , wherein said cell are at least one of neuronal cells or skin cells.

10. The method according to claim 1 , wherein the method is performed in situ for guiding cell growth in a subject in need thereof.

11. A method for treating or repairing tissue or organ injury in a subject, comprising the steps of:

(a) providing into the site of said tissue or organ injury, at least one biomaterial solution comprising: (i) magnetic particles; and (ii) cell(s), or plurality of cells of different types, with the proviso that said cell(s), or plurality of cells are not magnetically labeled cells;

(b) providing at least two magnetic sources providing a magnetic field having a strength of between 162 G to 2110 G;

(c) solidifying said biomaterial while applying said magnetic field, thereby aligning along the magnetic field lines, at least one of said magnetic particles or aggregates thereof and components of said biomaterial; and

(d) allowing growth of at least one of cell(s) and cellular extension(s) within said solidified biomaterial, wherein the growth of said cell(s) and/or cellular extension(s) is longitudinally oriented along at least one of the aligned magnetic particles or aggregates thereof and the aligned components of said biomaterial, thereby treating or repairing tissue injury.

12. A method for promoting wound healing in a subject, comprising the steps of:

(a) providing into the site of said wound at least one biomaterial solution comprising: (i) magnetic particles; and (ii) cell(s), or plurality of cells of different types, with the proviso that said cell(s), or plurality of cells are not magnetically labeled cells;

(b) providing at least two magnetic sources providing a magnetic field having a strength of between 162 G to 2110 G;

(c) solidifying said biomaterial while applying said magnetic field, thereby aligning at least one of said magnetic particles or aggregates thereof and components of said biomaterial, along the magnetic field lines;

(d) allowing growth of at least one of cell(s) and cellular extension(s) within said solidified biomaterial, wherein the growth of said cell(s) and/or cellular extension(s) is longitudinally oriented along at least one of the aligned magnetic particles or aggregates thereof and the aligned components of said biomaterial, thereby promoting wound healing.

13. The method according to claim 11 , wherein the biomaterial solution is provided and placed in the injured tissue within an adjustable biodegradable mold.

14. The method according to claim 11 , wherein said cell are at least one of neuronal cells or skin cells and wherein said cells are of an autologous or allogenic source.

15. The method according to claim 11 , for treating or repairing a nerve injury in a subject, wherein in step (a), at least one biomaterial solution comprising: (i) magnetic particles; and (ii) neuronal cell(s), or mixture of neuronal cells, is provided into the site of said nerve injury.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2019
From: SHEFI, ORIT; ANTMAN-PASSIG, MERAV
To: BAR ILAN UNIVERSITY
Reel/Frame 048078/0254 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2018
From: SHEFI, ORIT; ANTMAN-PASSIG, MERAV
To: BAR ILAN UNIVERSITY
Reel/Frame 047725/0223 →
Continuity (2)
Provisional Application 62298474 · Feb 23, 2016
Related Publication 20190046692A1 · Feb 14, 2019