Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, PR China.
Wuxi School of Medicine, Jiangnan University, Lihu Avenue 1800, Wuxi 214122, PR China.
Int J Biol Macromol. 2024 Jun;271(Pt 1):131980. doi: 10.1016/j.ijbiomac.2024.131980. Epub 2024 May 31.
The mass proliferation of seed cells and imitation of meat structures remain challenging for cell-cultured meat production. With excellent biocompatibility, high water content and porosity, hydrogels are frequently-studied materials for anchorage-dependent cell scaffolds in biotechnology applications. Herein, a scaffold based on gelatin/alginate/ε-Poly-l-lysine (GAL) hydrogel is developed for skeletal muscle cells, which has a great prospect in cell-cultured meat production. In this work, the hydrogel GAL-4:1, composed of gelatin (5 %, w/v), alginate (5 %, w/v) and ε-Poly-l-lysine (molar ratio vs. alginate: 4:1) is selected as cell scaffold based on Young's modulus of 11.29 ± 1.94 kPa, satisfactory shear-thinning property and suitable porous organized structure. The commercially available C2C12 mouse skeletal myoblasts and porcine muscle stem cells (PMuSCs), are cultured in the 3D-printed scaffold. The cells show strong ability of attachment, proliferation and differentiation after induction, showing high biocompatibility. Furthermore, the cellular bioprinting is performed with GAL-4:1 hydrogel and freshly extracted PMuSCs. The extracted PMuSCs exhibit high viability and display early myogenesis (desmin) on the 3D scaffold, suggesting the great potential of GAL hydrogel as 3D cellular constructs scaffolds. Overall, we develop a novel GAL hydrogel as a 3D-printed bioactive platform for cultured meat research.
种子细胞的大量增殖和肉类结构的模拟仍然是细胞培养肉生产面临的挑战。水凝胶具有优异的生物相容性、高含水量和多孔性,是生物技术应用中锚定依赖性细胞支架的常用材料。本文开发了一种基于明胶/海藻酸钠/ε-聚赖氨酸(GAL)水凝胶的骨骼肌细胞支架,在细胞培养肉生产方面具有广阔的前景。在这项工作中,选择了水凝胶 GAL-4:1 作为细胞支架,其组成为明胶(5%,w/v)、海藻酸钠(5%,w/v)和 ε-聚赖氨酸(与海藻酸钠的摩尔比:4:1),基于 11.29±1.94kPa 的杨氏模量、令人满意的剪切稀化特性和合适的多孔组织结构。商用 C2C12 小鼠骨骼肌成肌细胞和猪肌肉干细胞(PMuSCs)在 3D 打印支架中培养。诱导后,细胞表现出很强的附着、增殖和分化能力,表现出很高的生物相容性。此外,还使用 GAL-4:1 水凝胶和新鲜提取的 PMuSCs 进行细胞生物打印。提取的 PMuSCs 表现出高活力,并在 3D 支架上显示早期肌发生(结蛋白),表明 GAL 水凝胶作为 3D 细胞构建支架具有巨大的潜力。总的来说,我们开发了一种新型的 GAL 水凝胶作为用于培养肉研究的 3D 打印生物活性平台。