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羟基磷灰石涂层的Ti6Al4V ELI合金:体外细胞黏附

Hydroxyapatite-Coated Ti6Al4V ELI Alloy: In Vitro Cell Adhesion.

作者信息

Ruggeri Marco, Miele Dalila, Caliogna Laura, Bianchi Eleonora, Jepsen Johannes Maui, Vigani Barbara, Rossi Silvia, Sandri Giuseppina

机构信息

Department of Drug Sciences, University of Pavia, Viale Taramelli 12, 27100 Pavia, Italy.

Orthopaedic and Traumatology, Fondazione IRCCS Policlinico San Matteo, 27100 Pavia, Italy.

出版信息

Nanomaterials (Basel). 2024 Jul 11;14(14):1181. doi: 10.3390/nano14141181.

Abstract

The high rate of rejection and failure of orthopedic implants is primarily attributed to incomplete osseointegration and stress at the implant-to-bone interface due to significant differences in the mechanical properties of the implant and the surrounding bone. Various surface treatments have been developed to enhance the osteoconductive properties of implants. The aim of this work was the in vitro characterization of titanium alloy modified with a nanocrystalline hydroxyapatite surface layer in relative comparison to unmodified controls. This investigation focused on the behavior of the surface treatment in relation to the physiological environment. Moreover, the osteogenic response of human osteoblasts and adipose stem cells was assessed. Qualitative characterization of cellular interaction was performed via confocal laser scanning microscopy focusing on the cell nuclei and cytoskeletons. Filipodia were assessed using scanning electron microscopy. The results highlight that the HA treatment promotes protein adhesion as well as gene expression of osteoblasts and stem cells, which is relevant for the inorganic and organic components of the extracellular matrix and bone. In particular, cells grown onto HA-modified titanium alloy are able to promote ECM production, leading to a high expression of collagen I and non-collagenous proteins, which are crucial for regulating mineral matrix formation. Moreover, they present an impressive amount of filipodia having long extensions all over the test surface. These findings suggest that the HA surface treatment under investigation effectively enhances the osteoconductive properties of Ti6Al4V ELI.

摘要

骨科植入物的高排斥率和失败率主要归因于骨整合不完全以及由于植入物与周围骨骼的机械性能存在显著差异而导致的植入物与骨界面处的应力。已经开发了各种表面处理方法来增强植入物的骨传导性能。这项工作的目的是对用纳米晶羟基磷灰石表面层改性的钛合金进行体外表征,并与未改性的对照进行相对比较。本研究重点关注表面处理在生理环境中的行为。此外,还评估了人成骨细胞和脂肪干细胞的成骨反应。通过聚焦于细胞核和细胞骨架的共聚焦激光扫描显微镜对细胞相互作用进行定性表征。使用扫描电子显微镜评估丝状伪足。结果表明,HA处理促进了成骨细胞和干细胞的蛋白质粘附以及基因表达,这与细胞外基质和骨骼的无机和有机成分相关。特别是,生长在HA改性钛合金上的细胞能够促进细胞外基质的产生,导致I型胶原蛋白和非胶原蛋白的高表达,这对于调节矿物质基质的形成至关重要。此外,它们在整个测试表面呈现出大量具有长延伸的丝状伪足。这些发现表明,所研究的HA表面处理有效地增强了Ti6Al4V ELI的骨传导性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c3b/11279432/f1aa35611ad6/nanomaterials-14-01181-g001.jpg

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