生物医学工程
材料科学
双层
矿化(土壤科学)
肌腱
组织工程
干细胞
化学
解剖
细胞生物学
膜
医学
生物
生物化学
有机化学
氮气
作者
Tingyun Lei,Tao Zhang,Tianshun Fang,Jie Han,Chunkai Gu,Youguo Liao,Yang Fei,Junchao Luo,Huanhuan Liu,Yan Wu,Weiliang Shen,Xiao Chen,Zi Yin,Junjuan Wang
标识
DOI:10.1016/j.bioactmat.2025.03.001
摘要
The tendon-bone interface effectively transfers mechanical stress for movement, yet its regeneration presents significant clinical challenges due to its hierarchical structure and composition. Biomimetic strategies that replicate the distinctive characteristics have demonstrated potential for enhancing the healing process. However, there remains a challenge in developing a composite that replicates the nanostructure of the tendon-bone interface and embeds living cells. Here, we engineered a nanoscale biomimetic bilayer hydrogel embedded with tendon stem cells for tendon-bone interface healing. Specifically, the biomimetic hydrogel incorporates intra- and extrafibrillar mineralized collagen fibrils as well as non-mineralized collagen fibrils resembling the tendon-bone interface at the nanoscale. Furthermore, biomimetic mineralization with the presence of cells realizes living tendon-bone-like tissue constructs. In the in vivo patella-patellar tendon-interface injury model, the tendon stem cell-laden biomimetic hydrogel promoted tendon-bone interface regeneration, demonstrated by increased fibrocartilage formation, improved motor function, and enhanced biomechanical outcomes. This study highlights the potential of the stem cell-laden biomimetic hydrogel as an effective strategy for tendon-bone interface regeneration, offering a novel approach to engineering complex tissue interfaces. • Biomimetic mineralization strategy induced mineralization of collagen hydrogel in the presence of living cells. • Biomimetic hydrogel mimicked the nanoscale structure of native tendon-bone interface. • Tendon stem cell-laden biomimetic hydrogel promoted tendon-bone interface healing.
科研通智能强力驱动
Strongly Powered by AbleSci AI