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人源纳米纹理钛植入物表面附近骨细胞陷窝-小管网络的高分辨率可视化

High-Resolution Visualization of the Osteocyte Lacuno-Canalicular Network Juxtaposed to the Surface of Nanotextured Titanium Implants in Human.

作者信息

Shah Furqan A, Wang Xiaoyue, Thomsen Peter, Grandfield Kathryn, Palmquist Anders

机构信息

Department of Materials Science and Engineering, McMaster University, Hamilton, ON L8S 4L7, Canada.

出版信息

ACS Biomater Sci Eng. 2015 May 11;1(5):305-313. doi: 10.1021/ab500127y. Epub 2015 Apr 13.

Abstract

Osseointegration is controlled by a number of cellular mechanisms. Although factors governing bone formation are well-understood, the maintenance of bone at the bone-implant interface is less clear. Of some interest is the role of osteocytes, which via mechanotransduction are believed to be responsible for mechanical loading-based remodelling events in bone. Using a resin cast etching technique, we investigated the osteocyte lacuno-canalicular network adjacent to nanostructured titanium human dental implants after four years in clinical function. Correlative electron microscopy showed nanoscale osteocyte processes extending directly onto the implant surface. Calcium signal mapping via electron energy loss spectroscopy (EELS) showed apatite ingrowth into the nanotextured surface, while the apatite platelet -axis was oriented approximately parallel to the collagen fibril direction. Furthermore, Z-contrast electron tomography demonstrated that natural bone-osteocyte and engineered bone-implant interfaces are similar in ultrastructural morphology. The present ultrastructural observation of multiple connections between osteocyte canaliculi and the nanotextured surface oxide suggests that osteocytes contribute toward the maintenance of osseointegration in long-term clinical function.

摘要

骨整合受多种细胞机制控制。尽管调控骨形成的因素已为人熟知,但骨-种植体界面处骨的维持情况尚不清楚。骨细胞的作用值得关注,据信骨细胞通过机械转导作用负责基于机械负荷的骨重塑过程。我们采用树脂铸型蚀刻技术,研究了纳米结构钛制人类牙种植体临床使用四年后邻近的骨细胞腔隙-小管网络。相关电子显微镜检查显示纳米级骨细胞突起直接延伸到种植体表面。通过电子能量损失谱(EELS)进行的钙信号映射显示磷灰石向内生长到纳米纹理表面,而磷灰石片晶轴大致平行于胶原纤维方向。此外,Z 衬度电子断层扫描表明天然骨-骨细胞界面和工程化骨-种植体界面在超微结构形态上相似。目前对骨细胞小管与纳米纹理表面氧化物之间多种连接的超微结构观察表明,骨细胞有助于长期临床功能中骨整合的维持。

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