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使用可食用大孔微载体可扩展生产载有肌肉和脂肪细胞的微组织,用于养殖鱼片的3D打印。

Scalable production of muscle and adipose cell-laden microtissues using edible macroporous microcarriers for 3D printing of cultured fish fillets.

作者信息

Zhou Xuan, Zheng Hongwei, Wu Yanchi, Yin Haowen, Mao Xiangzhao, Li Ningyang, Guo Huarong, Chang Yaoguang, Jiang Xiaoming, Ai Qinghui, Xue Changhu

机构信息

State Key Laboratory of Marine Food Processing and Safety Control, College of Food Science and Engineering, Ocean University of China, Qingdao, 266404, China.

Qingdao Institute of Marine Bioresources for Nutrition & Health Innovation, Qingdao, 266109, China.

出版信息

Nat Commun. 2025 Feb 18;16(1):1740. doi: 10.1038/s41467-025-57015-1.

Abstract

Cellular agriculture is a novel platform for addressing the issues of protein scarcity, environmental pressures, and food safety. However, expanding seed cells at a large scale remains a prerequisite for achieving industrial cultured meat production. We here propose the production of large-pore-sized edible porous microcarriers (EPMs) by using NaCl to precisely control ice crystal growth during cryogenic crosslinking. Muscle satellite cells (SCs) and adipose-derived stem cells (ASCs) from large yellow croakers exhibit remarkable adhesion, proliferation, and differentiation on gelatin-based EPMs. Following consecutive expansion, SCs and ASCs densities reach 6.25 × 10 and 5.77 × 10 cells/mL, leading to a 499-fold and 461-fold increase in cell numbers, respectively. Subsequently, the mature microtissues are incorporated into a bioink, thereby enabling successful three-dimensional printing of cultured fish fillets with sensory properties similar to native fish fillets. EPM-based cell expansion and food structuring techniques are promising in facilitating large-scale cultured fish meat production.

摘要

细胞农业是解决蛋白质短缺、环境压力和食品安全问题的新型平台。然而,大规模扩增种子细胞仍然是实现工业化养殖肉类生产的先决条件。我们在此提出通过使用氯化钠精确控制低温交联过程中的冰晶生长来生产大孔径可食用多孔微载体(EPM)。大黄鱼的肌肉卫星细胞(SC)和脂肪来源干细胞(ASC)在基于明胶的EPM上表现出显著的黏附、增殖和分化能力。经过连续扩增后,SC和ASC的密度分别达到6.25×10和5.77×10个细胞/毫升,细胞数量分别增加了499倍和461倍。随后,将成熟的微组织掺入生物墨水,从而成功地3D打印出具有与天然鱼片相似感官特性的养殖鱼片。基于EPM的细胞扩增和食品构建技术有望推动大规模养殖鱼肉的生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a716/11836453/df67e74f50c8/41467_2025_57015_Fig1_HTML.jpg

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