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Ex Vivo Gene Delivery to Porcine Cardiac Allografts Using a Myocardial-Enhanced Adeno-Associated Viral Vector.

Publication ,  Journal Article
Mendiola Pla, M; Chiang, Y; Roki, A; Wang, C; Lee, FH; Smith, MF; Gross, RT; Roan, J-N; Bishawi, M; Evans, A; Gault, LE; Ho, S; Glass, C ...
Published in: Hum Gene Ther
April 2023

Transplantation, the gold standard intervention for organ failure, is a clinical field that is ripe for applications of gene therapy. One of the major challenges in applying gene therapy to this field is the need for a method that achieves consistent and robust gene delivery to allografts. Normothermic ex vivo perfusion is a growing organ preservation method and a device for cardiac preservation was recently approved by the Food and Drug Administration (FDA) (Organ Care System, OCS™; TransMedics, Inc., Andover, MA); this device maintains donor hearts in a near physiologic state while they are transported from the donor to the recipient. This study describes the administration of recombinant adeno-associated viral vectors (rAAVs) during ex vivo normothermic perfusion for the delivery of transgenes to porcine cardiac allografts. We utilized a myocardial-enhanced AAV3b variant, SASTG, assessing its transduction efficiency in the OCS perfusate relative to other AAV serotypes. We describe the use of normothermic ex vivo perfusion to deliver SASTG carrying the Firefly Luciferase transgene to porcine donor hearts in four heterotopic transplant procedures. Durable and dose-dependent transgene expression was achieved in the allografts in 30 days, with no evidence of off-target transgene expression. This study demonstrates the feasibility and efficiency of delivering genes to a large animal allograft utilizing AAV vectors during ex vivo perfusion. These findings support the idea of gene therapy interventions to enhance transplantation outcomes.

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Published In

Hum Gene Ther

DOI

EISSN

1557-7422

Publication Date

April 2023

Volume

34

Issue

7-8

Start / End Page

303 / 313

Location

United States

Related Subject Headings

  • Tissue Donors
  • Swine
  • Perfusion
  • Humans
  • Heart Transplantation
  • Genetic Therapy
  • Biotechnology
  • Animals
  • Allografts
  • 3206 Medical biotechnology
 

Citation

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Mendiola Pla, M., Chiang, Y., Roki, A., Wang, C., Lee, F. H., Smith, M. F., … Bowles, D. E. (2023). Ex Vivo Gene Delivery to Porcine Cardiac Allografts Using a Myocardial-Enhanced Adeno-Associated Viral Vector. Hum Gene Ther, 34(7–8), 303–313. https://doi.org/10.1089/hum.2022.241
Mendiola Pla, Michelle, Yuting Chiang, Antonio Roki, Chunbo Wang, Franklin H. Lee, Matthew F. Smith, Ryan T. Gross, et al. “Ex Vivo Gene Delivery to Porcine Cardiac Allografts Using a Myocardial-Enhanced Adeno-Associated Viral Vector.Hum Gene Ther 34, no. 7–8 (April 2023): 303–13. https://doi.org/10.1089/hum.2022.241.
Mendiola Pla M, Chiang Y, Roki A, Wang C, Lee FH, Smith MF, et al. Ex Vivo Gene Delivery to Porcine Cardiac Allografts Using a Myocardial-Enhanced Adeno-Associated Viral Vector. Hum Gene Ther. 2023 Apr;34(7–8):303–13.
Mendiola Pla, Michelle, et al. “Ex Vivo Gene Delivery to Porcine Cardiac Allografts Using a Myocardial-Enhanced Adeno-Associated Viral Vector.Hum Gene Ther, vol. 34, no. 7–8, Apr. 2023, pp. 303–13. Pubmed, doi:10.1089/hum.2022.241.
Mendiola Pla M, Chiang Y, Roki A, Wang C, Lee FH, Smith MF, Gross RT, Roan J-N, Bishawi M, Evans A, Gault LE, Ho S, Glass C, Schroder JN, Lezberg P, Milano CA, Bowles DE. Ex Vivo Gene Delivery to Porcine Cardiac Allografts Using a Myocardial-Enhanced Adeno-Associated Viral Vector. Hum Gene Ther. 2023 Apr;34(7–8):303–313.
Journal cover image

Published In

Hum Gene Ther

DOI

EISSN

1557-7422

Publication Date

April 2023

Volume

34

Issue

7-8

Start / End Page

303 / 313

Location

United States

Related Subject Headings

  • Tissue Donors
  • Swine
  • Perfusion
  • Humans
  • Heart Transplantation
  • Genetic Therapy
  • Biotechnology
  • Animals
  • Allografts
  • 3206 Medical biotechnology