牙槽
聚磷酸盐
牙槽嵴
再生(生物学)
吸收
止血
化学
脚手架
富血小板血浆
凝血酶
骨愈合
材料科学
生物医学工程
牙科
血小板
外科
医学
病理
细胞生物学
内科学
生物化学
磷酸盐
植入
生物
作者
Jun‐ting Gu,Kai Jiao,Jing Li,Jianfei Yan,Kaiyan Wang,Fu Wang,Yan Liu,Franklin Tay,Jihua Chen,Li‐na Niu
标识
DOI:10.1016/j.bioactmat.2021.12.019
摘要
Post-extraction bleeding and alveolar bone resorption are the two frequently encountered complications after tooth extraction that result in poor healing and rehabilitation difficulties. The present study covalently bonded polyphosphate onto a collagen scaffold (P-CS) by crosslinking. The P-CS demonstrated improved hemostatic property in a healthy rat model and an anticoagulant-treated rat model. This improvement is attributed to the increase in hydrophilicity, increased thrombin generation, platelet activation and stimulation of the intrinsic coagulation pathway. In addition, the P-CS promoted the in-situ bone regeneration and alveolar ridge preservation in a rat alveolar bone defect model. The promotion is attributed to enhanced osteogenic differentiation of bone marrow stromal cells. Osteogenesis was improved by both polyphosphate and blood clots. Taken together, P-CS possesses favorable hemostasis and alveolar ridge preservation capability. It may be used as an effective treatment option for post-extraction bleeding and alveolar bone loss.Collagen scaffold is commonly used for the treatment of post-extraction bleeding and alveolar bone loss after tooth extraction. However, its application is hampered by insufficient hemostatic and osteoinductive property. Crosslinking polyphosphate with collagen produces a modified collagen scaffold that possesses improved hemostatic performance and augmented bone regeneration potential.
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