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Direct Reprogramming of Primary Human Astrocytes to Functional Neurons with CRISPR-Based Epigenome Editing

Conferences
Reisman, S; Halabi, D; Miller, S; Rice, G; Sangvai, N; Gersbach, C
Published in: MOLECULAR THERAPY
April 28, 2025

Duke Scholars

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Published In

MOLECULAR THERAPY

EISSN

1525-0024

ISSN

1525-0016

Publication Date

April 28, 2025

Volume

33

Issue

4

Related Subject Headings

  • Biotechnology
  • 3206 Medical biotechnology
  • 3202 Clinical sciences
  • 3105 Genetics
 

Citation

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Chicago
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MLA
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Reisman, S., Halabi, D., Miller, S., Rice, G., Sangvai, N., & Gersbach, C. (2025). Direct Reprogramming of Primary Human Astrocytes to Functional Neurons with CRISPR-Based Epigenome Editing. In MOLECULAR THERAPY (Vol. 33).
Reisman, Samuel, Dahlia Halabi, Samantha Miller, Grayson Rice, Nicholas Sangvai, and Charles Gersbach. “Direct Reprogramming of Primary Human Astrocytes to Functional Neurons with CRISPR-Based Epigenome Editing.” In MOLECULAR THERAPY, Vol. 33, 2025.
Reisman S, Halabi D, Miller S, Rice G, Sangvai N, Gersbach C. Direct Reprogramming of Primary Human Astrocytes to Functional Neurons with CRISPR-Based Epigenome Editing. In: MOLECULAR THERAPY. 2025.
Reisman, Samuel, et al. “Direct Reprogramming of Primary Human Astrocytes to Functional Neurons with CRISPR-Based Epigenome Editing.” MOLECULAR THERAPY, vol. 33, no. 4, 2025.
Reisman S, Halabi D, Miller S, Rice G, Sangvai N, Gersbach C. Direct Reprogramming of Primary Human Astrocytes to Functional Neurons with CRISPR-Based Epigenome Editing. MOLECULAR THERAPY. 2025.

Published In

MOLECULAR THERAPY

EISSN

1525-0024

ISSN

1525-0016

Publication Date

April 28, 2025

Volume

33

Issue

4

Related Subject Headings

  • Biotechnology
  • 3206 Medical biotechnology
  • 3202 Clinical sciences
  • 3105 Genetics