Lyu Chengqi, Cheng Chi, He YuShi, Qiu Ling, He Zijun, Zou Derong, Li Dan, Lu Jiayu
Department of Stomatology, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, Shanghai 200233, P. R. China.
Department of Chemical Engineering, The University of Melbourne, Parkville, VIC 3010, Australia.
ACS Appl Mater Interfaces. 2022 Dec 14;14(49):54431-54438. doi: 10.1021/acsami.2c11307. Epub 2022 Nov 29.
Porous scaffolds have widely been exploited in cartilage tissue regeneration. However, it is often difficult to understand how the delicate hierarchical structure of the scaffold material affects the regeneration process. Graphene materials are versatile building blocks for robust and biocompatible porous structures, enabling investigation of structural cues on tissue regeneration otherwise challenging to ascertain. Here, we utilize a graphene hydrogel with stable and tunable structure as a model scaffold to examine the effect of porous structure on matrix remodeling associated with ingrowth of chondrocytes on scaffolds. We observe much-accelerated yet balanced cartilage remodeling correlating the ingrowth of chondrocytes into the graphene scaffold with an open pore structure on the surface. Importantly, such an enhanced remodeling selectively promotes the expression of collagen type II fibrils over proteoglycan aggrecan, hence clearly illustrating that chondrocytes maintain a stable phenotype when they migrate into the scaffold while offering new insights into scaffold design for cartilage repair.
多孔支架已广泛应用于软骨组织再生。然而,通常很难理解支架材料精细的层次结构如何影响再生过程。石墨烯材料是构建坚固且生物相容的多孔结构的通用组件,能够研究组织再生中的结构线索,否则这些线索难以确定。在此,我们使用具有稳定且可调节结构的石墨烯水凝胶作为模型支架,以研究多孔结构对与软骨细胞在支架上向内生长相关的基质重塑的影响。我们观察到软骨重塑加速且平衡,这与软骨细胞向内生长到具有表面开放孔结构的石墨烯支架中相关。重要的是,这种增强的重塑选择性地促进了II型胶原纤维的表达,而不是蛋白聚糖聚集蛋白聚糖的表达,因此清楚地表明软骨细胞在迁移到支架中时保持稳定的表型,同时为软骨修复的支架设计提供了新的见解。