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牛成纤维细胞衍生的细胞外基质在体外扩增过程中促进牛基质细胞的生长并维持其干性。

Bovine Fibroblast-Derived Extracellular Matrix Promotes the Growth and Preserves the Stemness of Bovine Stromal Cells during In Vitro Expansion.

作者信息

Lee Kathleen, Jackson Anisha, John Nikita, Zhang Ryan, Ozhava Derya, Bhatia Mohit, Mao Yong

机构信息

Laboratory for Biomaterials Research, Department of Chemistry and Chemical Biology, Rutgers University, 145 Bevier Rd., Piscataway, NJ 08854, USA.

Atelier Meats, 666 Burrard Street, Suite 500, Vancouver, BC V6C 3P6, Canada.

出版信息

J Funct Biomater. 2023 Apr 13;14(4):218. doi: 10.3390/jfb14040218.

Abstract

Cultivated meat is a fast-growing research field and an industry with great potential to overcome the limitations of traditional meat production. Cultivated meat utilizes cell culture and tissue engineering technologies to culture a vast number of cells in vitro and grow/assemble them into structures mimicking the muscle tissues of livestock animals. Stem cells with self-renewal and lineage-specific differentiation abilities have been considered one of the key cell sources for cultivated meats. However, the extensive in vitro culturing/expansion of stem cells results in a reduction in their abilities to proliferate and differentiate. Extracellular matrix (ECM) has been used as a culturing substrate to support cell expansion for cell-based therapies in regenerative medicine due to its resemblance to the native microenvironment of cells. In this study, the effect of the ECM on the expansion of bovine umbilical cord stromal cells (BUSC) in vitro was evaluated and characterized. BUSCs with multi-lineage differentiation potentials were isolated from bovine placental tissue. Decellularized ECM prepared from a confluent monolayer of bovine fibroblasts (BF) is free of cellular components but contains major ECM proteins such as fibronectin and type I collagen and ECM-associated growth factors. Expansion of BUSC on ECM for three passages (around three weeks) resulted in about 500-fold amplification, while cells were amplified less than 10-fold when cultured on standard tissue culture plates (TCP). Moreover, the presence of ECM reduced the requirement for serum in the culture medium. Importantly, the cells amplified on ECM retained their differentiation abilities better than cells cultured on TCP. The results of our study support the notion that monolayer cell-derived ECM may be a strategy to expand bovine cells in vitro effectively and efficiently.

摘要

培养肉是一个快速发展的研究领域,也是一个极具潜力的行业,有望克服传统肉类生产的局限性。培养肉利用细胞培养和组织工程技术在体外培养大量细胞,并将它们生长/组装成模仿家畜动物肌肉组织的结构。具有自我更新和谱系特异性分化能力的干细胞被认为是培养肉的关键细胞来源之一。然而,干细胞在体外的广泛培养/扩增会导致其增殖和分化能力下降。由于细胞外基质(ECM)与细胞的天然微环境相似,因此已被用作培养底物,以支持再生医学中基于细胞的疗法中的细胞扩增。在本研究中,评估并表征了ECM对牛脐带基质细胞(BUSC)体外扩增的影响。从牛胎盘组织中分离出具有多谱系分化潜能的BUSC。由牛成纤维细胞(BF)的汇合单层制备的脱细胞ECM不含细胞成分,但含有主要的ECM蛋白,如纤连蛋白和I型胶原蛋白以及与ECM相关的生长因子。BUSC在ECM上扩增三代(约三周)导致约500倍的扩增,而在标准组织培养板(TCP)上培养时细胞扩增不到10倍。此外,ECM的存在降低了培养基中血清的需求。重要的是,在ECM上扩增的细胞比在TCP上培养的细胞更好地保留了其分化能力。我们的研究结果支持这样一种观点,即单层细胞衍生的ECM可能是一种有效且高效地在体外扩增牛细胞的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36aa/10144935/3db75911de7f/jfb-14-00218-g001.jpg

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