Ectopic Expression of Neurod1 Is Sufficient for Functional Recovery following a Sensory–Motor Cortical Stroke

Author:

Livingston Jessica M.12,Lee Tina T.1,Enbar Tom123,Daniele Emerson13ORCID,Phillips Clara M.12,Krassikova Alexandra1ORCID,Bang K. W. Annie4ORCID,Kortebi Ines13,Donville Brennan W.12,Ibragimov Omadyor S.1,Sachewsky Nadia12,Lozano Casasbuenas Daniela1ORCID,Olfat Arman1,Morshead Cindi M.1235

Affiliation:

1. Department of Surgery, Division of Anatomy, 1 King’s College Circle, University of Toronto, Toronto, ON M5S 1A8, Canada

2. Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, 160 College Street, Toronto, ON M5S 3E1, Canada

3. Institute of Medical Science, 1 King’s College Circle, University of Toronto, Toronto, ON M5S1A8, Canada

4. Lunenfeld-Tanenbaum Research Institute, 600 University Ave., Toronto, ON M5G 1X7, Canada

5. Institute of Biomedical Engineering, 1 King’s College Circle, University of Toronto, Toronto, ON M5S 1A8, Canada

Abstract

Stroke is the leading cause of adult disability worldwide. The majority of stroke survivors are left with devastating functional impairments for which few treatment options exist. Recently, a number of studies have used ectopic expression of transcription factors that direct neuronal cell fate with the intention of converting astrocytes to neurons in various models of brain injury and disease. While there have been reports that question whether astrocyte-to-neuron conversion occurs in vivo, here, we have asked if ectopic expression of the transcription factor Neurod1 is sufficient to promote improved functional outcomes when delivered in the subacute phase following endothelin-1-induced sensory–motor cortex stroke. We used an adeno-associated virus to deliver Neurod1 from the short GFAP promoter and demonstrated improved functional outcomes as early as 28 days post-stroke and persisting to at least 63 days post-stroke. Using Cre-based cell fate tracking, we showed that functional recovery correlated with the expression of neuronal markers in transduced cells by 28 days post-stroke. By 63 days post-stroke, the reporter-expressing cells comprised ~20% of all the neurons in the perilesional cortex and expressed markers of cortical neuron subtypes. Overall, our findings indicate that ectopic expression of Neurod1 in the stroke-injured brain is sufficient to enhance neural repair.

Funder

Heart and Stroke Foundation, Ontario Institute of Regenerative Medicine, Canada First Research Excellence Fund (Medicine by Design, MbD), CIHR

National Sciences and Engineering Research Council

postdoctoral fellowship

Publisher

MDPI AG

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