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一种用于培养肉生产的无血清培养基配方可在无血清饥饿的情况下支持牛卫星细胞分化。

A serum-free media formulation for cultured meat production supports bovine satellite cell differentiation in the absence of serum starvation.

作者信息

Messmer Tobias, Klevernic Iva, Furquim Carolina, Ovchinnikova Ekaterina, Dogan Arin, Cruz Helder, Post Mark J, Flack Joshua E

机构信息

Mosa Meat BV, Maastricht, the Netherlands.

Department of Physiology, Maastricht University, Maastricht, the Netherlands.

出版信息

Nat Food. 2022 Jan;3(1):74-85. doi: 10.1038/s43016-021-00419-1. Epub 2022 Jan 13.

Abstract

Cultured meat production requires the robust differentiation of satellite cells into mature muscle fibres without the use of animal-derived components. Current protocols induce myogenic differentiation in vitro through serum starvation, that is, an abrupt reduction in serum concentration. Here we used RNA sequencing to investigate the transcriptomic remodelling of bovine satellite cells during myogenic differentiation induced by serum starvation. We characterized canonical myogenic gene expression, and identified surface receptors upregulated during the early phase of differentiation, including IGF1R, TFRC and LPAR1. Supplementation of ligands to these receptors enabled the formulation of a chemically defined media that induced differentiation in the absence of serum starvation and/or transgene expression. Serum-free myogenic differentiation was of similar extent to that induced by serum starvation, as evaluated by transcriptome analysis, protein expression and the presence of a functional contractile apparatus. Moreover, the serum-free differentiation media supported the fabrication of three-dimensional bioartificial muscle constructs, demonstrating its suitability for cultured beef production.

摘要

培养肉的生产需要卫星细胞在不使用动物源成分的情况下强劲分化为成熟肌纤维。目前的方案通过血清饥饿(即血清浓度突然降低)在体外诱导肌源性分化。在这里,我们使用RNA测序来研究血清饥饿诱导的肌源性分化过程中牛卫星细胞的转录组重塑。我们对经典肌源性基因表达进行了表征,并鉴定了在分化早期上调的表面受体,包括IGF1R、TFRC和LPAR1。向这些受体补充配体能够配制出一种化学成分明确的培养基,该培养基在无血清饥饿和/或转基因表达的情况下诱导分化。通过转录组分析、蛋白质表达和功能性收缩装置的存在评估,无血清肌源性分化的程度与血清饥饿诱导的相似。此外,无血清分化培养基支持三维生物人工肌肉构建体的制造,证明了其适用于培养牛肉生产。

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