牙槽
赫斯1
Notch信号通路
骨重建
川地31
运行x2
医学
病理
成骨细胞
牙科
细胞生物学
化学
解剖
生物
内分泌学
体外
信号转导
免疫组织化学
生物化学
作者
Ziqi Yan,Xiaokai Wang,Yong Zhou,Zhengguang Wang,Zhen‐Xing Wang,Ling Jin,Hao Yin,Kun Xia,Yi‐Juan Tan,Shi‐Kai Feng,Pingli Xie,Siyuan Tang,Changyun Fang,Jia Cao,Hui Xie
出处
期刊:Oral Diseases
[Wiley]
日期:2020-03-07
卷期号:26 (5): 998-1009
被引量:33
摘要
Abstract Objectives We aimed to investigate whether skeletal‐specific H‐type blood vessels exist in alveolar bone and how they function in alveolar bone remodeling. Materials and Methods H‐type vessels with high expression of CD31 and Endomucin (CD31 hi Emcn hi ) were immunostained in alveolar bone. Abundance and age‐related changes in CD31 hi Emcn hi endothelial cells (H‐ECs) were detected by flow cytometry. Osteoprogenitors association with H‐type vessels and bone mass were detected in tooth extraction model of alveolar bone remodeling by immunohistofluorescence and micro‐CT, respectively. Transcription and expression of H‐EC feature genes during in vitro Notch inhibition were measured by RT‐qPCR and immunocytofluorescence. Results We verified that H‐type vessels existed in alveolar bone, the abundance of which was highest at infancy age, then decreased but maintained a constant level during aging. In tooth extraction model, H‐ECs significantly increased with concomitant perivascular accumulation of Runx2 + osteoprogenitors and gradually augmentation of bone mass. Notch inhibition of in vitro cultured H‐ECs resulted in decreased expression levels of Emcn and hes1 , but not Pecam1 or Kdr genes, with decreased expression levels of H‐EC numbers, accordingly. Conclusions The present study suggests that H‐type vessels promote osteogenesis during alveolar bone remodeling. Notch signaling pathway regulates expression of Emcn and possibly determines fate and functions of alveolar H‐ECs.
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