A Human iPSC-Derived Neuron and Cardiomyocyte Platform for Assessing Novel Recombinant Adeno-Associated Viral (AAV) Vectors
Conferences
Jeon, K; Gold, S; Hu, M; Smith, JK; O'Banion, C; Morra, M; Luongo, TS; Asokan, A; Graef, JD
Published in: MOLECULAR THERAPY
April 2022
Duke Scholars
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Published In
MOLECULAR THERAPY
EISSN
1525-0024
ISSN
1525-0016
Publication Date
April 2022
Volume
30
Issue
4
Start / End Page
482 / 482
Related Subject Headings
- Biotechnology
- 3206 Medical biotechnology
- 3202 Clinical sciences
- 3105 Genetics
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Jeon, K., Gold, S., Hu, M., Smith, J. K., O’Banion, C., Morra, M., … Graef, J. D. (2022). A Human iPSC-Derived Neuron and Cardiomyocyte Platform for Assessing Novel Recombinant Adeno-Associated Viral (AAV) Vectors. In MOLECULAR THERAPY (Vol. 30, pp. 482–482).
Jeon, Kilsoo, Stephanie Gold, Mei Hu, J Kennon Smith, Colin O’Banion, Marc Morra, Tim S. Luongo, Aravind Asokan, and John D. Graef. “A Human iPSC-Derived Neuron and Cardiomyocyte Platform for Assessing Novel Recombinant Adeno-Associated Viral (AAV) Vectors.” In MOLECULAR THERAPY, 30:482–482, 2022.
Jeon K, Gold S, Hu M, Smith JK, O’Banion C, Morra M, et al. A Human iPSC-Derived Neuron and Cardiomyocyte Platform for Assessing Novel Recombinant Adeno-Associated Viral (AAV) Vectors. In: MOLECULAR THERAPY. 2022. p. 482–482.
Jeon, Kilsoo, et al. “A Human iPSC-Derived Neuron and Cardiomyocyte Platform for Assessing Novel Recombinant Adeno-Associated Viral (AAV) Vectors.” MOLECULAR THERAPY, vol. 30, no. 4, 2022, pp. 482–482.
Jeon K, Gold S, Hu M, Smith JK, O’Banion C, Morra M, Luongo TS, Asokan A, Graef JD. A Human iPSC-Derived Neuron and Cardiomyocyte Platform for Assessing Novel Recombinant Adeno-Associated Viral (AAV) Vectors. MOLECULAR THERAPY. 2022. p. 482–482.
Published In
MOLECULAR THERAPY
EISSN
1525-0024
ISSN
1525-0016
Publication Date
April 2022
Volume
30
Issue
4
Start / End Page
482 / 482
Related Subject Headings
- Biotechnology
- 3206 Medical biotechnology
- 3202 Clinical sciences
- 3105 Genetics