Based on the mechanism of intramembranous ossification of the alveolar bone, it is necessary to design a biomimetic membrane material based on the principle of GBR (Guided Bone Regeneration) to simulate the biological microenvironment of alveolar bone regeneration, promote the direct differentiation of stem cells into osteoblasts and rapid mineralization, thereby achieving the goal of alveolar bone regeneration. This section, based on bionic principles, proposes to enhance the mechanical properties of the collagen membrane with silk fibroin to achieve synergistic regeneration of periodontal bone/soft tissue. This project employs silk fibroin-reinforced collagen membrane technology to overcome the dual bottlenecks of insufficient strength and excessively rapid degradation of existing materials; establishes a "structure-guided, mechanically supported, factor-controlled release" trinity regeneration strategy to achieve precise repair of periodontal composite tissues. This study will provide new materials and methods for periodontal regeneration and offer a theoretical reference for the combined regeneration of other hard/soft tissues.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
80
Silk Fibroin-Reinforced Collagen-Based Composite Membrane for Periodontal Bone Tissue Regeneration
Vertical Bone Defect Fill Height (VBH)
Three-dimensional reconstruction using CBCT (Cone Beam Computed Tomography) to measure the change in distance from the base of the bone defect to the alveolar crest between pre-operative and post-operative scans.
Time frame: Up to 12 month
Alveolar Bone Density
Gray value calculation of the region of interest (ROI) using CBCT software.
Time frame: Up to 12 month
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