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细胞力学微环境在工程化结构化培养肉中的重要作用:最新进展

The important role of cellular mechanical microenvironment in engineering structured cultivated meat: Recent advances.

作者信息

Zhang Pan, Zhao Xu, Zhang Shiling, Li Guoliang, Midgley Adam C, Fang Yapeng, Zhao Mouming, Nishinari Katsuyoshi, Yao Xiaolin

机构信息

School of Food Science and Engineering, Shaanxi University of Science and Technology, Xi'an, Shaanxi 710021, China.

Key Laboratory of Bioactive Materials (MoE), College of Life Sciences, Nankai University, Tianjin, 300071, China.

出版信息

Curr Res Food Sci. 2024 Sep 21;9:100865. doi: 10.1016/j.crfs.2024.100865. eCollection 2024.

Abstract

Cultivated meat (CM) provides a potential solution to meet the rising demand for eco-friendly meat supply systems. Recent efforts focus on producing CM that replicates the architecture and textural toughness of natural skeletal muscle. Significance of the regulated role of cellular microenvironment in myogenesis has been reinforced by the substantial influence of mechanical cues in mediating the muscle tissue organization. However, the formation of structured CM has not been adequately described in context of the mechanical microenvironment. In this review, we provide an updated understanding of the myogenesis process within mechanically dynamic three-dimensional microenvironments, discuss the effects of environmental mechanical factors on muscle tissue regeneration and how cell mechanics respond to the mechanical condition, and further highlight the role of mechanical cues as important references in constructing a sustainable Hydrocolloids-based biomaterials for CM engineering. These findings help to overcome current limitations in improving the textural properties of CM.

摘要

养殖肉(CM)为满足对环保肉类供应系统不断增长的需求提供了一种潜在解决方案。近期的研究重点是生产能够复制天然骨骼肌结构和质地韧性的CM。机械信号在介导肌肉组织组织化过程中的重大影响,强化了细胞微环境在肌生成中调控作用的重要性。然而,在机械微环境背景下,结构化CM的形成尚未得到充分描述。在本综述中,我们提供了对机械动态三维微环境中肌生成过程的最新理解,讨论了环境机械因素对肌肉组织再生的影响以及细胞力学如何响应机械条件,并进一步强调了机械信号作为构建基于水胶体的可持续CM工程生物材料的重要参考的作用。这些发现有助于克服当前在改善CM质地特性方面的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d7d/11481608/02aa125949d6/ga1.jpg

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