4.7 Article

Self-healing hybrid hydrogels with sustained bioactive components release for guided bone regeneration

Journal

JOURNAL OF NANOBIOTECHNOLOGY
Volume 21, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12951-023-01811-8

Keywords

Self-healing; Hybird hydrogel; Bioactive components; Barrier membrane; Guided bone regeneration

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A bi-layered scaffold for guided bone regeneration (GBR) composed of a fiber barrier layer and a self-healing hydrogel repair layer has been successfully fabricated. This system can provide an osteogenic microenvironment, maintain the stability of the osteogenic space, and regulate the release of bioactive substances. The study shows that the hybrid scaffold has good biocompatibility, cell barrier function, and can enhance bone regeneration activity.
Guided bone regeneration (GBR) is widely used in treating oral bone defects to exclude the influence of non-osteogenic tissue on the bone healing process. The traditional method of GBR with a titanium mesh to treat large-area bone defects is limited by the deficiency of increased trauma and costs to patients. Herein, a bi-layered scaffold for GBR composed of a fiber barrier layer and a self-healing hydrogel repair layer is successfully fabricated. The barrier layer is a fibrous membrane material with specific porosity constructed by electrospinning, while the functional layer is a self-healing hydrogel material formed by multiple dynamic covalent bonds. The system can provide an osteogenic microenvironment by preventing the infiltration of connective tissue to bone defects, maintain the stability of the osteogenic space through the self-healing property, and regulate the release of bioactive substances in the dynamic physical condition, which is beneficial to osteoblast proliferation, differentiation, and bone regeneration. This study focused on exploring the effects of different crosslinkers and bonding methods on the comprehensive properties of hydrogels. and proved that the hybrid scaffold system has good biocompatibility, cell barrier function and can enhance bone regeneration activity. Thereby it could be a promising clinical strategy for bone regeneration.

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