Shuai Yajun, Yang Tao, Zheng Meidan, Zheng Li, Wang Jie, Mao Chuanbin, Yang Mingying
Institute of Applied Bioresource Research, College of Animal Sciences, Zhejiang University, Hangzhou, 310058, China.
Key Laboratory of Silkworm and Bee Resource Utilization and Innovation of Zhejiang Province, Zhejiang University, Hangzhou, 310058, China.
Adv Mater. 2025 Mar;37(10):e2414543. doi: 10.1002/adma.202414543. Epub 2025 Jan 28.
Assembling natural proteins into large, strong, bone-mimetic scaffolds for repairing bone defects in large-animal load-bearing sites remain elusive. Here this challenge is tackled by assembling pure silk fibroin (SF) into 3D scaffolds with cortical-bone-like lamellae, superior strength, and biodegradability through freeze-casting. The unique lamellae promote the attachment, migration, and proliferation of tissue-regenerative cells (e.g., mesenchymal stem cells [MSCs] and human umbilical vein endothelial cells) around them, and are capable of developing in vitro into cortical-bone organoids with a high number of MSC-derived osteoblasts. High-SF-content lamellar scaffolds, regardless of MSC inoculation, regenerated more bone than non-lamellar or low-SF-content lamellar scaffolds. They accelerated neovascularization by transforming macrophages from M1 to M2 phenotype, promoting bone regeneration to repair large segmental bone defects (LSBD) in minipigs within three months, even without growth factor supplements. The bone regeneration can be further enhanced by controlling the orientation of the lamella to be parallel to the long axis of bone during implantation. This work demonstrates the power of oriented lamellar bone-like protein scaffolds in repairing LSBD in large animal models.
将天然蛋白质组装成大型、坚固、仿骨支架以修复大型动物承重部位的骨缺损仍然难以实现。在此,通过冷冻铸造将纯丝素蛋白(SF)组装成具有皮质骨样薄片、优异强度和生物降解性的三维支架,解决了这一挑战。独特的薄片促进周围组织再生细胞(如间充质干细胞[MSCs]和人脐静脉内皮细胞)的附着、迁移和增殖,并能够在体外发育成含有大量MSC来源成骨细胞的皮质骨类器官。高SF含量的层状支架,无论是否接种MSC,都比非层状或低SF含量的层状支架再生更多的骨。它们通过将巨噬细胞从M1表型转变为M2表型来加速新血管形成,促进骨再生,从而在三个月内修复小型猪的大段骨缺损(LSBD),甚至无需补充生长因子。在植入过程中,通过控制薄片的方向使其与骨的长轴平行,可以进一步增强骨再生。这项工作证明了定向层状骨样蛋白质支架在修复大型动物模型中LSBD方面的作用。