IP Library Patent Application 14561912
Patent Application
App. No. 14/561,912

USE OF STEM CELLS TO PREVENT NEURONAL DIEBACK

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Quick Facts
Patent No.
US None
App. No.
14/561,912
Abstract

The invention is generally directed to treatment of neuronal injury. In particular, the invention is directed to reducing axonal retraction (“dieback”) that occurs as a result of the interaction of activated macrophages with dystrophic axons that are produced during nervous system acute or chronic injury. The invention is also directed to promoting axonal growth/regeneration. The invention is specifically directed to using stem cells or their secreted cellular factors, such as would be produced in conditioned cell culture medium, to ameliorate or prevent axonal dieback and/or promote growth/regeneration of axons.

Claims (10)

1 - 13 . (canceled)

14 . A method for reducing the adhesion of ED-1 + cells to dystrophic axons that would result in axonal retraction, said method comprising administering stern cells, or factors secreted therefrom, in sufficient proximity to the dystrophic axons and/or ED-1 + cells, for time sufficient, and in sufficient amounts to reduce said adhesion, wherein the stern cell is a human non-embryonic stem cell that has the ability to differentiate into cell types of more than one embryonic germ layer and/or express one or more of oct4, telomerase, rex-1, rox-1, sox-2, and SSEA4.

15 . The method of claim 14 wherein reducing said adhesion of ED-1 + cells to dystrophic axons in a subject reduces axonal retraction in said subject.

16 . The method of claim 14 wherein reducing said adhesion of ED-1 + cells to dystrophic axons reduces axonal retraction in a subject and reduces neural injury that is associated with said axonal retraction in said subject.

17 . The method of claim 14 wherein reducing said adhesion of ED-1 + cells to dystrophic axons promotes axon regeneration in a subject.

18 . The method of claim 14 wherein said ED-1 + cells are macrophages and/or microglia.

19 . The method of claim 14 wherein the secreted factors are derived from well culture medium conditioned by culturing the stem cells therein, the factors being in a pharmaceutically-acceptable carrier.

20 . The method of claim 14 wherein said secreted factors are administered.

21 . The method of claim 20 wherein said secreted factors are in medium conditioned by culturing the stem cells therein.

22 . The method of any of claims 14 - 21 wherein the stern cells are derived from bone marrow.