Abstract
Aim: We explored the generation of human induced pluripotent stem cells (iPSCs) solely through the transcriptional activation of endogenous genes by CRISPR activation (CRISPRa). Methods: Minimal number of human-specific guide RNAs targeting a limited set of loci were used with a unique cocktail of small molecules (CRISPRa-SM). Results: iPSC clones were efficiently generated by CRISPRa-SM, expressed general and naive iPSC markers and clustered with high-quality iPSCs generated using conventional reprogramming methods. iPSCs showed genomic stability and robust pluripotent potential as assessed by in vitro and in vivo. Conclusion: CRISPRa-SM-generated human iPSCs by direct and multiplexed loci activation facilitating a unique and potentially safer cellular reprogramming process to aid potential applications in cellular therapy and regenerative medicine.
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Abujarour, R., Dinella, J., Pribadi, M., Fong, L. K., Denholtz, M., Gutierrez, A., … Valamehr, B. (2024). A chemical approach facilitates CRISPRa-only human iPSC generation and minimizes the number of targeted loci required. Future Science OA, 10(1). https://doi.org/10.2144/fsoa-2023-0257
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