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◆ Advanced Science2026-04-09· Scaffold

Multifunctional Bioactive Scaffold Facilitating BMSCs‐Driven Osteogenesis and Vascularization in Critical‐Sized Bone Defect Repair

Yunze Feng, Bingzhi Chen, Yiqing Xu, Xin Xu, Bingtao Hu, Tao Li, Dingxin Zhang, Baoshuai Bai, Chen Liu, Wanlong Xu, Lei Li, Wencan Zhang, Haipeng Si

原始摘要(英文原文)· Original abstract
Critical-sized bone defects (CSD) remain a major clinical challenge due to three interrelated barriers: inadequate mechanical support, insufficient osteogenic induction, and impaired angiogenesis, all of which hinder effective regeneration. To tackle these, we developed a dual-network bioactive scaffold, ermd bFGF@CB-gel, based on a chondroitin sulfate methacryloyl/bacterial cellulose gel (CB-gel) which synergistically combines three key properties: i) a photocurable biomimetic mineralized scaffold (CB-gel) for in situ bone repair with mechanical support and a bone-ECM-mimicking microenvironment for delivering bone marrow mesenchymal stem cells (BMSCs); ii) a bio-nano carrier (BC) for sustained release of bFGF which enhances the adhesion and proliferation via EGFL/Itga2b pathway, strengthens osteogenic differentiation and mineralization by activating the COMP/PI3K/AKT pathway of rat BMSCs; iii) bFGF released by the dual-network promotes migration and angiogenesis of microvascular endothelial cells by combining FGFR to activate the PI3K/AKT/eNOS pathway. In a rat CSD model, the bFGF@CB-gel achieved a statistically significant increase in new bone volume, as quantified by micro-CT, and enhanced vascular density, evaluated via immunohistochemical staining. These findings highlight the potential of bFGF@CB-gel as an effective local delivery system of BMSCs via linking biomechanics, molecular signaling, and cellular activity, which moves beyond simplistic function stacking to a rational, synergistic design for bone regeneration in CSD, addressing key challenges in reconstructive surgery.
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Multifunctional Bioactive Scaffold Facilitating BMSCs‐Driven Osteogenesis and Vascularization in Critical‐Sized Bone Defect Repair — 科研速览 Science Skim