Publication | Closed Access
<i>In situ</i> mineralized PLGA/zwitterionic hydrogel composite scaffold enables high-efficiency rhBMP-2 release for critical-sized bone healing
18
Citations
62
References
2021
Year
Tissue EngineeringEngineeringBiomaterials DesignBone RepairPlga/zwitterionic HydrogelBiomedical EngineeringHigh-efficiency Sustained ReleaseOrthopaedic SurgeryOxidative StressRegenerative MedicineHydrogelsTranslational MedicineSynthetic Bone SubstituteCritical-sized Bone HealingUltralow DosageRobust HealingRegenerative BiomaterialsRadiation OncologyHigh-efficiency Rhbmp-2 ReleasePharmacologyFracture HealingMedicineBiomaterialsBiocompatible Material
In situ mineralized PLGA/PSBMA scaffold enables high-efficiency sustained release of rhBMP-2 (only 1.7% within 35 days) and robust healing of critical-sized (5 mm) nonunion calvarial defects in rats with an ultralow dosage of rhBMP-2 (150 ng per scaffold).
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