Bai Mingxuan, Kang Ning, Xu Yang, Wang Jing, Shuai Xinxing, Liu Caojie, Jiang Yixuan, Du Yu, Gong Ping, Lin Hai, Zhang Xingdong
State Key Laboratory of Oral Diseases & National Center for Stomatology & National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, Sichuan 610041, P.R. China.
National Engineering Research Center for Biomaterials, College of Biomedical Engineering, Sichuan University, Chengdu, Sichuan 610065, P.R. China.
Regen Biomater. 2023 Oct 16;10:rbad089. doi: 10.1093/rb/rbad089. eCollection 2023.
Recombinant humanized collagen (rhCol) was an extracellular matrix (ECM)-inspired biomimetic biomaterial prepared by biosynthesis technology, which was considered non-allergenic and could possibly activate tissue regeneration. The influence of tag sequence on both structures and performances of rhCol type III (rhCol III) was investigated, and the effect of rhCol III on cell behaviors was evaluated and discussed using Schwann cells (SCs) as model that was critical in the repair process after peripheral nerve injury. The results demonstrated that the introduction of tag sequence would influence both advanced structures and properties of rhCol III, while rhCol III regulated SCs adhesion, spreading, migration and proliferation. Also, both nerve growth factor and brain-derived neurotrophic factor increased when exposed to rhCol III. As the downstream proteins of integrin-mediated cell adhesions, phosphorylation of focal adhesion kinase and expression of vinculin was up-regulated along with the promotion of SCs adhesion and migration. The current findings contributed to a better knowledge of the interactions between rhCol III and SCs, and further offered a theoretical and experimental foundation for the development of rhCol III-based medical devices and clinical management of peripheral nerve injury.
重组人源化胶原蛋白(rhCol)是一种受细胞外基质(ECM)启发,通过生物合成技术制备的仿生生物材料,被认为无致敏性且可能激活组织再生。研究了标签序列对III型重组人源化胶原蛋白(rhCol III)结构和性能的影响,并以雪旺细胞(SCs)为模型评估和讨论了rhCol III对细胞行为的影响,雪旺细胞在周围神经损伤后的修复过程中至关重要。结果表明,标签序列的引入会影响rhCol III的高级结构和性能,而rhCol III可调节雪旺细胞的黏附、铺展、迁移和增殖。此外,暴露于rhCol III时,神经生长因子和脑源性神经营养因子均增加。作为整合素介导的细胞黏附的下游蛋白,随着雪旺细胞黏附与迁移的促进,黏着斑激酶的磷酸化和纽蛋白的表达上调。目前的研究结果有助于更好地了解rhCol III与雪旺细胞之间的相互作用,并进一步为基于rhCol III的医疗器械开发和周围神经损伤的临床治疗提供理论和实验基础。