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A Rapid and Versatile Method for the Isolation, Purification and Cryogenic Storage of Schwann Cells from Adult Rodent Nerves

Overview
Journal Sci Rep
Specialty Science
Date 2016 Aug 24
PMID 27549422
Citations 32
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Abstract

We herein developed a protocol for the rapid procurement of adult nerve-derived Schwann cells (SCs) that was optimized to implement an immediate enzymatic dissociation of fresh nerve tissue while maintaining high cell viability, improving yields and minimizing fibroblast and myelin contamination. This protocol introduces: (1) an efficient method for enzymatic cell release immediately after removal of the epineurium and extensive teasing of the nerve fibers; (2) an adaptable drop-plating method for selective cell attachment, removal of myelin debris, and expansion of the initial SC population in chemically defined medium; (3) a magnetic-activated cell sorting purification protocol for rapid and effective fibroblast elimination; and (4) an optional step of cryopreservation for the storage of the excess of cells. Highly proliferative SC cultures devoid of myelin and fibroblast growth were obtained within three days of nerve processing. Characterization of the initial, expanded, and cryopreserved cell products confirmed maintenance of SC identity, viability and growth rates throughout the process. Most importantly, SCs retained their sensitivity to mitogens and potential for differentiation even after cryopreservation. To conclude, this easy-to-implement and clinically relevant protocol allows for the preparation of expandable homogeneous SC cultures while minimizing time, manipulation of the cells, and exposure to culture variables.

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References
1.
Feng G, Chang X . [Effect of the cryopreserved Schwann cells on the peripheral nerve regeneration]. Zhongguo Ying Yong Sheng Li Xue Za Zhi. 2011; 19(1):82-4. View

2.
Mirsky R, Dubois C, Morgan L, Jessen K . 04 and A007-sulfatide antibodies bind to embryonic Schwann cells prior to the appearance of galactocerebroside; regulation of the antigen by axon-Schwann cell signals and cyclic AMP. Development. 1990; 109(1):105-16. DOI: 10.1242/dev.109.1.105. View

3.
Hedayatpour A, Sobhani A, Bayati V, Abdolvahhabi M, Shokrgozar M, Barbarestani M . A method for isolation and cultivation of adult Schwann cells for nerve conduit. Arch Iran Med. 2007; 10(4):474-80. DOI: 07104/AIM.0010. View

4.
Li J, Lepski G . Cell transplantation for spinal cord injury: a systematic review. Biomed Res Int. 2013; 2013:786475. PMC: 3581246. DOI: 10.1155/2013/786475. View

5.
Guest J, Santamaria A, Benavides F . Clinical translation of autologous Schwann cell transplantation for the treatment of spinal cord injury. Curr Opin Organ Transplant. 2013; 18(6):682-9. PMC: 3864173. DOI: 10.1097/MOT.0000000000000026. View