ArticleBioactive materials2025
Self-assembled hybrid hydrogel microspheres create a bone marrow-mimicking niche for bone regeneration.
Article in Bioactive materials, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed.
- Injectable microsphere-based delivery strategies for stem cells and their derivatives in tissue regeneration.Bioactive materials · 2026Review
- Stage-specific biomimetic nanoparticles reprogram osteoblast-adipocyte equilibrium for targeted osteoporosis therapy.Bioactive materials · 2026Article
- Hydrogel microspheres for precision biomedicine: network engineering, microfabrication, and therapeutic applications.RSC advances · 2026Review
- A Bone Marrow-Mimetic Hydrogel Enables Dual-Phase Hemostasis and Vascularized Osteogenesis for Cranial Defects.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Immunometabolic Modulation of the Bone Marrow Niche by Bioactive Materials to Rescue Impaired Fracture Healing.Stem cell reviews and reports · 2026Review
- High-performance hydrogels in orthopedics: Structural design, performance tuning, and clinical potential.Materials today. Bio · 2026Review
- Ultrasound-guided nanocomposite hydrogel injection to enhance nerve repair via temporal delivery of a colony-stimulating factor 1 receptor inhibitor.Journal of controlled release : official journal of the Controlled Release Society · 2026Article
- Construction Strategies and Advances in Bone Marrow Microphysiological Systems.International journal of molecular sciences · 2026Review
- 3D bioprinted composite scaffold incorporating microfluidics-derived chondrocyte microspheroids promotes auricular cartilage regeneration.Materials today. Bio · 2026Article
- [Influence of porosity and Young's modulus of gelatin methacrylate anhydride hydrogels on the biological behavior of mouse bone marrow mesenchymal stem cells].Zhonghua shao shang yu chuang mian xiu fu za zhi · 2025Article
- Research Progress of Sodium Alginate-Based Hydrogels in Biomedical Engineering.Gels (Basel, Switzerland) · 2025Review
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Authors and funding
21 authors.
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Abstract
Bone marrow (BM), a natural niche rich in growth factors and bone marrow mesenchymal stem cells (BMSCs), provides an optimal regenerative microenvironment and is widely used in clinical applications. However, the limited proliferative capacity of BMSCs and the mismatch between bone regeneration and growth factors release constrain their effectiveness in treating critical bone defects. Drawing inspiration from the regenerative properties of BM, we developed self-assembled hybrid microspheres to replicate its function and address these challenges through a tissue engineering approach. This BM-mimicking niche enriched BMSCs via fast-degrading gelatin methacryloyl (GelMA) microspheres, which were loaded with exogenous BMSCs and conjugated with stem cell homing peptides (SKP) to recruit endogenous BMSCs. SKP further enhanced the stemness of BMSCs, thereby promoting angiogenesis and resolving inflammation. Slow-degrading chitosan methacryloyl (ChitoMA) microspheres facilitated sustained release of angiogenic (KLT) and osteogenic (OGP) peptides, supporting blood vessel maturation and osteogenesis. The early release of BMSCs and SKP, followed by the subsequent release of OGP and KLT, aligned with the dynamic process of bone regeneration. In a rat critical femoral condyle defect model, the BM-mimicking niche formed an in-situ ossification center, significantly enhancing bone regeneration. This study introduces a novel BM-mimicking niche characterized by a BMSC-enriched environment and the sequential release of therapeutic factors, offering a promising strategy for treating critical bone defects.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.