Kong Yan, Jing Linzhi, Huang Dejian
Department of Food Science and Technology, 2 Science Drive 2, National University of Singapore, Singapore, Singapore.
National University of Singapore (Suzhou) Research Institute, Suzhou, China.
Crit Rev Food Sci Nutr. 2024;64(15):4966-4976. doi: 10.1080/10408398.2022.2147144. Epub 2022 Nov 17.
Edible microcarriers are essential for developing cell-based meat in large-scale cell cultures. As they are required to be embedded in the final products, the microcarriers should be edible, biocompatible, cost-effective, and pathogen-free. The invention of edible animal-free microcarriers would be a breakthrough for cell-based meat culture. We reviewed the fabrication techniques and the materials of microcarriers, and found that plant proteins, having diverse structures and composition, could possess the active domains that are hypnotized to replace the animal-based extracellular matrix (ECM) for meat culture applications. In addition, the bioactive peptides in plants have been reviewed and most of them were resulted from enzyme hydrolysis. Therefore, plant proteins with rich bioactive peptides have the potential in the development microcarriers. Our work provided some new trains of thought for developing plant-based biomaterials as ECM materials and advances the fabrication of microcarriers for meat culture.
可食用微载体对于大规模细胞培养中基于细胞的肉类生产至关重要。由于它们需要嵌入最终产品中,微载体应具有可食用、生物相容性、成本效益高和无病原体的特点。可食用无动物微载体的发明将是基于细胞的肉类培养的一项突破。我们回顾了微载体的制造技术和材料,发现具有多样结构和组成的植物蛋白可能拥有被认为可替代基于动物的细胞外基质(ECM)用于肉类培养应用的活性结构域。此外,对植物中的生物活性肽进行了综述,发现它们大多是酶解产生的。因此,富含生物活性肽的植物蛋白在开发微载体方面具有潜力。我们的工作为开发基于植物的生物材料作为ECM材料提供了一些新的思路,并推动了用于肉类培养的微载体的制造。