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Updated: Jan 14, 2026

Author Spotlight: Enhancing Bone Regeneration with Vascularized Artificial Cartilage Integration
Published on: July 14, 2023
Cellulose-engineered janus periosteum with compartmentalized angiogenic and osteo-immunomodulatory abilities for bone
Wuyan Xu1, Kun Liu2, Jiaqing Chen2
1Department of Orthopedics, Shenzhen People's Hospital (The First Affiliated Hospital, Southern University of Science and Technology, The Second Clinical Medical College, Jinan University), Shenzhen, 518020, China.
Abstract:
Bone regeneration is clinically challenging because vascularization, osteo-induction, and immune modulation are difficult to synchronize. Inspired by the native periosteum's bilayer architecture and multifunctional roles, we developed a wood-engineered Janus periosteum (EW-P-D@HACA-T) that integrates deferoxamine (DFO)-functionalized elastic wood (EW-P-D) with a bio-adhesive catechol-modified hyaluronic acid/tricalcium phosphate hydrogel (HACA-T). This construct mimics the anisotropic structure and compartmentalized functions of natural periosteum, providing dual support for angiogenesis and osteo-immunomodulation. EW-P-D maintains mechanical integrity and guides cell orientation, while sustained release activates the HIF-1α/VEGF pathway to enhance endothelial maturation and bone formation. Concurrently, the HACA-T composite hydrogel promotes osteogenic differentiation and polarizes macrophages toward an M2 phenotype, creating a pro-regenerative immune microenvironment. Furthermore, transcriptomic profiling revealed coordinated activation of p53, TGF-β, and ECM remodeling pathways, highlighting the scaffold's capacity to orchestrate tissue regeneration at the molecular level. In vivo evaluation using a rat skull defect model confirmed superior bone bridging, collagen deposition, neovascularization, and systemic biosafety. This study presents a structurally and functionally integrated wood-engineered periosteum substitute, demonstrating a paradigm shift toward engineered solutions that synchronize mechanical, angiogenic, and immunomodulatory cues for bone defect repair.
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