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The Ionic Products of Bioactive Glass Particle Dissolution Enhance Periodontal Ligament Fibroblast Osteocalcin Expression and Enhance Early Mineralized Tissue Development

机译:生物活性玻璃颗粒溶解的离子产物增强牙周韧带成纤维细胞骨质虫表达增强早期矿化组织发育

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摘要

This study resulted in enhanced collagen type 1 and osteocalcin expression in human periodontal ligament fibroblasts (hPDLF) when exposed to glass conditioned media from bioactive glasses that subsequently may promote early mineralized tissue development. Commercial Bioglass™ (45S5) and experimental bioactive coating glass (6P53-b), were used to make a glass conditioned media (GCM) for comparison to control medium. ICP-MS analysis showed increased concentrations of Ca2+, PO43–,Si4+, and Na+, for 45S5 GCM and Mg2+, K+, Ca2+, PO43–,Si4+, and Na+ for 6P53-b GCM (relative to control medium). Differentiating hPDLF cultures exposed to 45S5 and 6P53-b GCM showed enhanced expression of collagen type 1 (Col1α1, Col1α2), osteocalcin, and alkaline phosphatase gene expression. These GCM also enhanced osteocalcin protein expression. After 16 days of culture, 45S5 and 6P53-b GCM treated cells showed regions of deep red Alizarin staining, indicating increased Ca within their respective extracellular matrices (ECM), while control-treated cells did not. SEM analysis showed more developed ECM in GCM treated cultures, indicated by multiple tissue layering and abundant collagen fiber bundle formation, while control treated cells did not. SEM analysis showed polygonal structures suggestive of CaP in 45S5 GCM treated cultures. These results indicate the osteogenic potential of bioactive coating glass in periodontal bone defect filling applications.

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