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用于在生物羟基磷灰石/TiAl V植入物上轻松研究牙周韧带形成的芯片上生物植入物

Bioimplant-on-a-Chip for Facile Investigation of Periodontal Ligament Formation on Biogenic Hydroxyapatite/TiAl V Implants.

作者信息

Park Sangbae, Kim Jae Eun, Lee Juo, Kim Woochan, Choi Woobin, Lee Myung Chul, Lim Jae Woon, Jang Kyoung-Je, Seonwoo Hoon, Kim Jangho, Chung Jong Hoon

机构信息

Department of Biosystems Engineering, Seoul National University, Seoul 08826, Korea.

Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul 08826, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2025 May 28;17(21):30673-30685. doi: 10.1021/acsami.5c04687. Epub 2025 May 13.

Abstract

Highly osseointegrative dental implants surrounded by reconstructed periodontal tissues represent a promising strategy for functional tooth replacement, as they mimic the structural and physiological characteristics of natural teeth. However, there is currently a lack of in vitro platforms that can effectively evaluate the integration of engineered periodontal ligament (PDL) tissues with bioimplants. In this study, we developed a bioimplant-on-a-chip (BoC) platform designed to recapitulate the native PDL-cementum interface and assess the early stage biological performance of bioimplants in vitro. The BoC consists of a dental implant, a calcium phosphate cement (CPC) insert, a nanopatterned polydimethylsiloxane (PDMS) substrate, and PDL-like tissue derived from human dental pulp stem cells (DPSCs). To establish viable culture conditions within the platform, surface coatings and cell seeding densities were optimized to support the formation of PDL-like tissue. Nanogrooved substrates were incorporated to guide cellular alignment, which was assessed through orientation analysis. Collagen fiber organization and matrix deposition were further examined as indicators of ligamentous tissue maturation. Cementogenic activity was evaluated by immunofluorescent staining of cementum protein-1 (CEMP-1) in response to varying biogenic hydroxyapatite (bHA) contents in the bioimplants. The results demonstrated successful reproduction of a PDL-like tissue interface and material-dependent differences in CEMP-1 expression. This platform provides a modular and reproducible tool for the comparative evaluation of bioimplants in a physiologically relevant setting and may be useful in advancing regenerative strategies in dental implantology.

摘要

被重建牙周组织包围的具有高度骨整合性的牙种植体是功能性牙齿替代的一种有前景的策略,因为它们模仿了天然牙齿的结构和生理特征。然而,目前缺乏能够有效评估工程化牙周韧带(PDL)组织与生物植入物整合情况的体外平台。在本研究中,我们开发了一种芯片上生物植入物(BoC)平台,旨在重现天然的PDL-牙骨质界面,并在体外评估生物植入物的早期生物学性能。BoC由一个牙种植体、一个磷酸钙骨水泥(CPC)插入物、一个纳米图案化的聚二甲基硅氧烷(PDMS)基质以及源自人牙髓干细胞(DPSC)的类PDL组织组成。为了在该平台内建立可行的培养条件,对表面涂层和细胞接种密度进行了优化,以支持类PDL组织的形成。纳入纳米沟槽基质以引导细胞排列,并通过取向分析对其进行评估。进一步检查胶原纤维组织和基质沉积情况,作为韧带组织成熟的指标。通过对生物植入物中不同生物活性羟基磷灰石(bHA)含量的反应,对牙骨质蛋白-1(CEMP-1)进行免疫荧光染色来评估牙骨质生成活性。结果表明成功重现了类PDL组织界面以及CEMP-1表达的材料依赖性差异。该平台为在生理相关环境中对生物植入物进行比较评估提供了一种模块化且可重复的工具,可能有助于推进牙种植学中的再生策略。

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