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植入生物材料对骨细胞影响的综述。

A Review of the Impact of Implant Biomaterials on Osteocytes.

机构信息

1 Department of Biomaterials, Sahlgrenska Academy, University of Gothenburg, Göteborg, Sweden.

出版信息

J Dent Res. 2018 Aug;97(9):977-986. doi: 10.1177/0022034518778033. Epub 2018 Jun 4.

Abstract

In lamellar bone, a network of highly oriented interconnected osteocytes is organized in concentric layers. Through their cellular processes contained within canaliculi, osteocytes are highly mechanosensitive and locally modulate bone remodeling. We review the recent developments demonstrating the significance of the osteocyte lacuno-canalicular network in bone maintenance around implant biomaterials. Drilling during implant site preparation triggers osteocyte apoptosis, the magnitude of which correlates with drilling speed and heat generation, resulting in extensive remodeling and delayed healing. In peri-implant bone, osteocytes physically communicate with implant surfaces via canaliculi and are responsive to mechanical loading, leading to changes in osteocyte numbers and morphology. Certain implant design features allow peri-implant osteocytes to retain a less aged phenotype, despite highly advanced extracellular matrix maturation. Physicochemical properties of anodically oxidized surfaces stimulate bone formation and remodeling by regulating the expression of RANKL (receptor activator of nuclear factor-κB ligand), RANK, and OPG (osteoprotegerin) from implant-adherent cells. Modulation of certain osteocyte-related molecular signaling mechanisms (e.g., sclerostin blockade) may enhance the biomechanical anchorage of implants. Evaluation of the peri-implant osteocyte lacuno-canalicular network should therefore be a necessary component in future investigations of osseointegration to more completely characterize the biological response to materials for load-bearing applications in dentistry and orthopedics.

摘要

在板层骨中,高度定向的相互连接的骨细胞网络以同心层的形式组织。通过包含在小管中的细胞过程,骨细胞具有高度的机械敏感性,并局部调节骨重塑。我们回顾了最近的研究进展,这些进展证明了骨细胞腔管网络在围绕植入生物材料的骨维持中的重要性。在种植体部位准备过程中钻孔会引发骨细胞凋亡,其程度与钻孔速度和产热相关,导致广泛的重塑和延迟愈合。在种植体周围骨中,骨细胞通过小管与种植体表面进行物理通讯,并对机械加载有反应,导致骨细胞数量和形态的变化。某些种植体设计特征允许种植体周围骨细胞保持较年轻的表型,尽管细胞外基质成熟度很高。阳极氧化表面的物理化学性质通过调节种植体附着细胞中 RANKL(核因子-κB 配体受体激活剂)、RANK 和 OPG(骨保护素)的表达来刺激骨形成和重塑。某些与骨细胞相关的分子信号机制的调节(例如,阻断硬骨素)可能会增强种植体的生物力学锚固。因此,评估种植体周围骨细胞腔管网络应该成为未来骨整合研究的必要组成部分,以更全面地描述对用于牙科和骨科承重应用的材料的生物学反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da5d/6055115/402e23c5e526/10.1177_0022034518778033-fig1.jpg

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