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鳍细胞作为可持续鱼肉养殖的一种有前景的种子细胞来源。

Fin Cells as a Promising Seed Cell Source for Sustainable Fish Meat Cultivation.

作者信息

Du Zongyun, Lao Jihui, Jiang Yuyan, Liu Jingyu, Liu Shili, Zheng Jianbo, Li Fei, Jia Yongyi, Gu Zhimin, Chen Jun, Huang Xiao

机构信息

Institute of Cellular and Developmental Biology, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.

Key Laboratory of Freshwater Aquaculture Genetic and Breeding of Zhejiang Province, Zhejiang Institute of Freshwater Fisheries, Huzhou 313001, China.

出版信息

Foods. 2025 Jun 12;14(12):2075. doi: 10.3390/foods14122075.

Abstract

Cell-cultured meat production relies on stable, proliferative seed cells, commonly sourced from muscle satellite cells (MuSCs) and adipose-derived mesenchymal stem cells (AD-MSCs). However, establishing such cell lines in fish species remains technically challenging. While pluripotent stem cells (e.g., ESCs/MSCs) offer alternatives, their differentiation efficiency and predictability are limited. Here, we developed TCCF2022, a novel caudal fin-derived cell line from Topmouth culter (), which expresses pluripotency markers (AP, , , , and ) and aggregated growth to form 3D spheroids. Forskolin supplementation enhanced pluripotency maintenance. The presence of adipogenic and myogenic lineage cells within the 3D spheroids was confirmed, demonstrating their potential as seed cells for cell-cultured meat. Using a small-molecule cocktail 5LRCF (5-Azacytidine, LY411575, RepSox, CHIR99021, and Forskolin), we successfully differentiated TCCF2022 cells into functional myotubes. Additionally, we established a method to induce the differentiation of TCCF2022 cells into adipocytes simultaneously. Thus, the TCCF2022 cell line can be used to improve muscle fiber formation and lipid composition, potentially enhancing the nutritional profile and flavor of cultured fish meat.

摘要

细胞培养肉的生产依赖于稳定、增殖的种子细胞,通常来源于肌肉卫星细胞(MuSCs)和脂肪来源的间充质干细胞(AD-MSCs)。然而,在鱼类中建立这样的细胞系在技术上仍然具有挑战性。虽然多能干细胞(如胚胎干细胞/间充质干细胞)提供了替代方案,但其分化效率和可预测性有限。在这里,我们开发了TCCF2022,一种来自翘嘴鲌的新型尾鳍衍生细胞系,它表达多能性标记物(碱性磷酸酶、Oct4、Sox2、Nanog和Klf4)并聚集生长形成3D球体。添加福斯高林可增强多能性维持。证实了3D球体内存在脂肪生成和肌生成谱系细胞,证明了它们作为细胞培养肉种子细胞的潜力。使用小分子鸡尾酒5LRCF(5-氮杂胞苷、LY411575、RepSox、CHIR99021和福斯高林),我们成功地将TCCF2022细胞分化为功能性肌管。此外,我们建立了一种同时诱导TCCF2022细胞分化为脂肪细胞的方法。因此,TCCF2022细胞系可用于改善肌肉纤维形成和脂质组成,潜在地提高养殖鱼肉的营养成分和风味。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d26/12191693/6e68db85e5cb/foods-14-02075-g001.jpg

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