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Programmable RNA trans-splicing enables multi-kilobase rewriting in mice and non-human primates

Conferences
Fiflis, D; Benkert, A; Wang, T; Jayaram, MD; Sewell, B; Fisher, D; Asokan, A
Published in: MOLECULAR THERAPY
May 8, 2026

Duke Scholars

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Published In

MOLECULAR THERAPY

EISSN

1525-0024

ISSN

1525-0016

Publication Date

May 8, 2026

Volume

34

Issue

5

Start / End Page

290 / 292

Related Subject Headings

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

Citation

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Chicago
ICMJE
MLA
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Fiflis, D., Benkert, A., Wang, T., Jayaram, M. D., Sewell, B., Fisher, D., & Asokan, A. (2026). Programmable RNA trans-splicing enables multi-kilobase rewriting in mice and non-human primates. In MOLECULAR THERAPY (Vol. 34, pp. 290–292).
Fiflis, David, Abigail Benkert, Tianqi Wang, Mourya Durgam Jayaram, Beatrice Sewell, Delaney Fisher, and Aravind Asokan. “Programmable RNA trans-splicing enables multi-kilobase rewriting in mice and non-human primates.” In MOLECULAR THERAPY, 34:290–92, 2026.
Fiflis D, Benkert A, Wang T, Jayaram MD, Sewell B, Fisher D, et al. Programmable RNA trans-splicing enables multi-kilobase rewriting in mice and non-human primates. In: MOLECULAR THERAPY. 2026. p. 290–2.
Fiflis, David, et al. “Programmable RNA trans-splicing enables multi-kilobase rewriting in mice and non-human primates.” MOLECULAR THERAPY, vol. 34, no. 5, 2026, pp. 290–92.
Fiflis D, Benkert A, Wang T, Jayaram MD, Sewell B, Fisher D, Asokan A. Programmable RNA trans-splicing enables multi-kilobase rewriting in mice and non-human primates. MOLECULAR THERAPY. 2026. p. 290–292.

Published In

MOLECULAR THERAPY

EISSN

1525-0024

ISSN

1525-0016

Publication Date

May 8, 2026

Volume

34

Issue

5

Start / End Page

290 / 292

Related Subject Headings

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