再生(生物学)
运行x2
细胞生物学
组织工程
牙囊
骨愈合
生物相容性
骨组织
干细胞
生物医学工程
脚手架
碱性磷酸酶
材料科学
生物
解剖
医学
生物化学
酶
冶金
作者
Zhentao Li,Di Wang,Jie Li,Hao Liu,Li Nie,Conghua Li
出处
期刊:ACS Biomaterials Science & Engineering
[American Chemical Society]
日期:2024-04-12
卷期号:10 (5): 3173-3187
标识
DOI:10.1021/acsbiomaterials.3c01981
摘要
The application of bioengineering techniques for achieving bone regeneration in the oral environment is an increasingly prominent field. However, the clinical use of synthetic materials carries certain risks. The liquid phase of concentrated growth factor (LPCGF), as a biologically derived material, exhibits superior biocompatibility. In this study, LPCGF was employed as a tissue engineering scaffold, hosting dental follicle cells (DFCs) to facilitate bone regeneration. Both in vivo and in vitro experimental results demonstrate that this platform significantly enhances the expression of osteogenic markers in DFCs, such as alkaline phosphatase (ALP), runt-related transcription factor 2 (Runx2), and type I collagen (Col1a1). Simultaneously, it reduces the expression of inflammation-related genes, particularly interleukin-6 (IL-6) and interleukin-8 (IL-8), thereby alleviating the negative impact of the inflammatory microenvironment on DFCs. Further investigation into potential mechanisms reveals that this process is regulated over time by the WNT pathway. Our research results demonstrate that LPCGF, with its favorable physical characteristics, holds great potential as a scaffold. It can effectively carry DFCs, thereby providing an optimal initial environment for bone regeneration. Furthermore, LPCGF endeavors to closely mimic the mechanisms of bone healing post-trauma to facilitate bone formation. This offers new perspectives and insights into bone regeneration engineering.
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