bioRxiv · 10.1101/2023.04.17.537163
Engineered autocrine signaling eliminates muscle cell FGF2 requirements for cultured meat production
Abstract
Cultured meat is a promising technology that faces substantial cost barriers which are currently driven largely by the price of media components. Growth factors such as fibroblast growth factor 2 (FGF2) drive the cost of serum-free media for relevant cells including muscle satellite cells. Here, we engineered immortalized bovine satellite cells (iBSCs) for inducible expression of FGF2 and/or mutated RasG12V in order to overcome media growth factor requirements through autocrine signaling. Engineered cells were able to proliferate over multiple passages in FGF2-free medium, thereby eliminating the need for this costly component. Additionally, cells maintained their myogenicity, albeit with reduced differentiation capacity. Ultimately, this offers a proof-of-principle for lower-cost cultured meat production through cell line engineering.
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Stout, A. J., Zhang, X., Letcher, S. M., Rittenberg, M. L., Shub, M., Chai, K. M., Kaul, M., Kaplan, D. L.. 2023-04-17. Engineered autocrine signaling eliminates muscle cell FGF2 requirements for cultured meat production. https://doi.org/10.1101/2023.04.17.537163
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