Engineering Functionally Mature iPSC-derived Hepatocytes through Mapping Transcription Factor Regulatory Mechanisms
Conferences
Streff, H; Gersbach, C; Parmenter, M; Reisman, S; McGeehan, 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
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Streff, H., Gersbach, C., Parmenter, M., Reisman, S., & McGeehan, C. (2025). Engineering Functionally Mature iPSC-derived Hepatocytes through Mapping Transcription Factor Regulatory Mechanisms. In MOLECULAR THERAPY (Vol. 33).
Streff, Helen, Charles Gersbach, Mackenzie Parmenter, Samuel Reisman, and Chloe McGeehan. “Engineering Functionally Mature iPSC-derived Hepatocytes through Mapping Transcription Factor Regulatory Mechanisms.” In MOLECULAR THERAPY, Vol. 33, 2025.
Streff H, Gersbach C, Parmenter M, Reisman S, McGeehan C. Engineering Functionally Mature iPSC-derived Hepatocytes through Mapping Transcription Factor Regulatory Mechanisms. In: MOLECULAR THERAPY. 2025.
Streff, Helen, et al. “Engineering Functionally Mature iPSC-derived Hepatocytes through Mapping Transcription Factor Regulatory Mechanisms.” MOLECULAR THERAPY, vol. 33, no. 4, 2025.
Streff H, Gersbach C, Parmenter M, Reisman S, McGeehan C. Engineering Functionally Mature iPSC-derived Hepatocytes through Mapping Transcription Factor Regulatory Mechanisms. 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