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Efficient Genetic Safety Switches for Future Application of iPSC-Derived Cell Transplants

Authors :
Michael A. Morgan
Axel Schambach
Nico Lachmann
Anton Selich
Julia Dahlke
Juliane W. Schott
Denise Klatt
Philippe Vollmer Barbosa
Thomas Moritz
Publica
Source :
Journal of Personalized Medicine, Volume 11, Issue 6, Journal of Personalized Medicine, Vol 11, Iss 565, p 565 (2021)
Publication Year :
2021
Publisher :
Multidisciplinary Digital Publishing Institute, 2021.

Abstract

Induced pluripotent stem cell (iPSC)-derived cell products hold great promise as a potential cell source in personalized medicine. As concerns about the potential risk of graft-related severe adverse events, such as tumor formation from residual pluripotent cells, currently restrict their applicability, we established an optimized tool for therapeutic intervention that allows drug-controlled, specific and selective ablation of either iPSCs or the whole graft through genetic safety switches. To identify the best working system, different tools for genetic iPSC modification, promoters to express safety switches and different safety switches were combined. Suicide effects were slightly stronger when the suicide gene was delivered through lentiviral (LV) vectors compared to integration into the AAVS1 locus through TALEN technology. An optimized HSV-thymidine kinase and the inducible Caspase 9 both mediated drug-induced, efficient in vitro elimination of transgene-positive iPSCs. Choice of promoter allowed selective elimination of distinct populations within the graft: the hOct4 short response element restricted transgene expression to iPSCs, while the CAGs promoter ubiquitously drove expression in iPSCs and their progeny. Remarkably, both safety switches were able to prevent in vivo teratoma development and even effectively eliminated established teratomas formed by LV CAGs-transgenic iPSCs. These optimized tools to increase safety provide an important step towards clinical application of iPSC-derived transplants.

Details

Language :
English
ISSN :
20754426
Database :
OpenAIRE
Journal :
Journal of Personalized Medicine
Accession number :
edsair.doi.dedup.....add0f2ce2b642bed3e9125cbf647d20c
Full Text :
https://doi.org/10.3390/jpm11060565