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  5. Engineered autocrine signaling eliminates muscle cell FGF2 requirements for cultured meat production

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Preprint
en
2023

Engineered autocrine signaling eliminates muscle cell FGF2 requirements for cultured meat production

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en
2023
DOI: 10.1101/2023.04.17.537163

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David Kaplan
David Kaplan

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Andrew J. Stout
Xiaoli Zhang
Sophia M. Letcher
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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.

How to cite this publication

Andrew J. Stout, Xiaoli Zhang, Sophia M. Letcher, Miriam L. Rittenberg, Michelle Shub, Kristin M. Chai, Maya Kaul, David Kaplan (2023). Engineered autocrine signaling eliminates muscle cell FGF2 requirements for cultured meat production. , DOI: https://doi.org/10.1101/2023.04.17.537163.

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Publication Details

Type

Preprint

Year

2023

Authors

8

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0

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0

Language

en

DOI

https://doi.org/10.1101/2023.04.17.537163

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