再生(生物学)
软组织
牙槽
牙槽嵴
生物医学工程
山脊
脚手架
材料科学
骨愈合
牙科
植入
医学
外科
解剖
细胞生物学
古生物学
生物
作者
Yongsheng Pan,Yüe Zhao,Rong Kuang,Hou Liu,Duo Sun,Tianjiao Mao,Kexin Jiang,Xinting Yang,Nobumoto Watanabe,Kevin H. Mayo,Quan Lin,Jiang Li
标识
DOI:10.1016/j.msec.2020.111158
摘要
In stomatology, the promotion of alveolar bone regeneration while preventing the reduction of ridge absorption remains a challenge. In this work, we designed and prepared bio-mimetic polysaccharide hydrogels that are multi-functional in terms of being injectable, promote self-healing, degradable, porous structure, et al. After introducing nano-hydroxyapatite particles, the composite scaffold of hydrogel/hydroxyapatite (GH) stent was obtained. When GH material was injected into the mandibular incisors of rats following tooth extraction, the new bone area was enhanced more than 50%, while the alveolar ridge was promoted in excess of 60% after 4 weeks. What's more, the wound soft tissue was healed within 1 week. Overall, our results indicate that this optimized GH stent has the potential to both maintain dimensional alveolar ridge, as well as to promote soft tissue healing. Moreover, using the hydroxyapatite-containing hydrogel platform has the potential to promote bone and soft tissue regeneration.
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