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Efficient Generation of Induced Pluripotent Stem and Neural Progenitor Cells From Acutely Harvested Dura Mater Obtained During Ventriculoperitoneal Shunt Surgery.

Authors :
Cary WA
Hori CN
Pham MT
Nacey CA
McGee JL
Hamou M
Berman RF
Bauer G
Nolta JA
Waldau B
Source :
World neurosurgery [World Neurosurg] 2015 Nov; Vol. 84 (5), pp. 1256-66.e1. Date of Electronic Publication: 2015 Jun 11.
Publication Year :
2015

Abstract

Background: The dura mater can be easily biopsied during most cranial neurosurgical operations. We describe a protocol that allows for robust generation of induced pluripotent stem cells (iPSCs) and neural progenitors from acutely harvested dura mater.<br />Objective: To generate iPSCs and neural progenitor cells from dura mater obtained during ventriculoperitoneal shunt surgery.<br />Methods: Dura was obtained during ventriculoperitoneal shunt surgery for normal pressure hydrocephalus from a 60-year-old patient with severe cognitive impairment. Fibroblasts were isolated from the dural matrix and transduced with nonintegrating Sendai virus for iPSC induction. A subset of successfully generated iPSC clones underwent immunocytochemical analysis, teratoma assay, karyotyping, and targeted neural differentiation.<br />Results: Eleven iPSC clones were obtained from the transduction of an estimated 600,000 dural fibroblasts after 3 passages. Three clones underwent immunocytochemical analysis and were shown to express the transcription factors OCT-4, SOX2, and the embryonic cell markers SSEA-4, TRA-1-60, and Nanog. Two clones were tested for pluripotency and formed teratomas at the injection site in immunodeficient mice. Three clones underwent chromosomal analysis and were found to have a normal metaphase spread and karyotype. One clone underwent targeted neural differentiation and formed neural rosettes as well as TuJ1/SOX1-positive neural progenitor cells.<br />Conclusions: IPSCs and neural progenitor cells can be efficiently derived from the dura of patients who need to undergo cranial neurosurgical operations. IPSCs were obtained with a nonintegrating virus and exhibited a normal karyotype, making them candidates for future autotransplantation after targeted differentiation to treat functional deficits.<br /> (Copyright © 2015. Published by Elsevier Inc.)

Details

Language :
English
ISSN :
1878-8769
Volume :
84
Issue :
5
Database :
MEDLINE
Journal :
World neurosurgery
Publication Type :
Academic Journal
Accession number :
26074438
Full Text :
https://doi.org/10.1016/j.wneu.2015.05.076