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  • An implantable human stem cell-derived tissue-engineered rostral migratory stream for directed neuronal replacement.

An implantable human stem cell-derived tissue-engineered rostral migratory stream for directed neuronal replacement.

Communications biology (2021-07-17)
John C O'Donnell, Erin M Purvis, Kaila V T Helm, Dayo O Adewole, Qunzhou Zhang, Anh D Le, D Kacy Cullen
ABSTRACT

The rostral migratory stream (RMS) facilitates neuroblast migration from the subventricular zone to the olfactory bulb throughout adulthood. Brain lesions attract neuroblast migration out of the RMS, but resultant regeneration is insufficient. Increasing neuroblast migration into lesions has improved recovery in rodent studies. We previously developed techniques for fabricating an astrocyte-based Tissue-Engineered RMS (TE-RMS) intended to redirect endogenous neuroblasts into distal brain lesions for sustained neuronal replacement. Here, we demonstrate that astrocyte-like-cells can be derived from adult human gingiva mesenchymal stem cells and used for TE-RMS fabrication. We report that key proteins enriched in the RMS are enriched in TE-RMSs. Furthermore, the human TE-RMS facilitates directed migration of immature neurons in vitro. Finally, human TE-RMSs implanted in athymic rat brains redirect migration of neuroblasts out of the endogenous RMS. By emulating the brain's most efficient means for directing neuroblast migration, the TE-RMS offers a promising new approach to neuroregenerative medicine.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Monoclonal Anti-Ezrin antibody produced in mouse, clone 3C12, ascites fluid
Sigma-Aldrich
Anti-Guinea Pig IgG (H+L), highly cross-adsorbed, CF568 antibody produced in donkey, ~2 mg/mL, affinity isolated antibody, buffered aqueous solution
Sigma-Aldrich
Anti-Nuclei Antibody, clone 235-1, clone 235-1, Chemicon®, from mouse