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调控禽类卫星细胞分化过程的基因本体论群组和信号通路。

Gene Ontology Groups and Signaling Pathways Regulating the Process of Avian Satellite Cell Differentiation.

机构信息

Prestage Department of Poultry Sciences, North Carolina State University, Raleigh, NC 27695, USA.

Department of Veterinary Surgery, Institute of Veterinary Medicine, Nicolaus Copernicus University in Torun, 87-100 Torun, Poland.

出版信息

Genes (Basel). 2022 Jan 27;13(2):242. doi: 10.3390/genes13020242.

Abstract

Modern science is becoming increasingly committed to environmentally friendly solutions, mitigating the impact of the developing human civilisation on the environment. One of the leading fields aimed at sustainable agriculture is in vitro meat production. Cellular agriculture aims to provide a source of animal-free meat products, which would decrease worldwide nutritional dependency on animal husbandry, thereby reducing the significant impact of this industry on Earth's climate. However, while some studies successfully produced lab-based meat on a small scale, scalability of this approach requires significant optimisation of the methodology in order to ensure its viability on an industrial scale. One of the methodological promises of in vitro meat production is the application of cell suspension-based bioreactors. Hence, this study focused on a complex transcriptomic comparison of adherent undifferentiated, differentiated and suspension-cultured myosatellite cells, aiming to determine the effects of different culture methods on their transcriptome. Modern next-generation sequencing (RNAseq) was used to determine the levels of transcripts in the cultures' cell samples. Then, differential expression and pathway analyses were performed using bionformatical methods. The significantly regulated pathways included: EIF2, mTOR, GP6, integrin and HIFα signalling. Differential regulation of gene expression, as well as significant enrichment and modulation of pathway activity, suggest that suspension culture potentially promotes the ex vivo-associated loss of physiological characteristics and gain of plasticity. Therefore, it seems that suspension cultures, often considered the desired method for in vitro meat production, require further investigation to fully elucidate their effect on myosatellite cells and, therefore, possibly enable their easier scalability to ensure suitability for industrial application.

摘要

现代科学越来越致力于环保解决方案,减轻发展中人类文明对环境的影响。旨在实现可持续农业的主要领域之一是体外肉生产。细胞农业旨在提供无动物肉类产品的来源,这将减少全球对畜牧业的营养依赖,从而减少该行业对地球气候的重大影响。然而,尽管一些研究在小规模上成功地生产了实验室肉类,但这种方法的可扩展性需要对该方法进行重大优化,以确保其在工业规模上的可行性。体外肉生产的方法学承诺之一是应用基于细胞悬浮的生物反应器。因此,本研究专注于对贴壁未分化、分化和悬浮培养的卫星细胞进行复杂的转录组比较,旨在确定不同培养方法对其转录组的影响。现代下一代测序 (RNAseq) 用于确定培养物细胞样本中的转录物水平。然后,使用生物信息学方法进行差异表达和途径分析。显著调节的途径包括:EIF2、mTOR、GP6、整合素和 HIFα信号。基因表达的差异调节以及途径活性的显著富集和调节表明,悬浮培养可能促进了体外相关的生理特征丧失和可塑性获得。因此,悬浮培养似乎经常被认为是体外肉生产的理想方法,但需要进一步研究,以充分阐明其对卫星细胞的影响,从而可能更容易实现其可扩展性,以确保其适合工业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b75/8871586/6d7eebcee830/genes-13-00242-g001.jpg

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