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Implant Surface Design Regulates Mesenchymal Stem Cell Differentiation and Maturation

机译:植入物表面设计调节间充质干细胞的分化和成熟

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摘要

Changes in dental implant materials, structural design, and surface properties can all affect biological response. While bulk properties are important for mechanical stability of the implant, surface design ultimately contributes to osseointegration. This article reviews the surface parameters of dental implant materials that contribute to improved cell response and osseointegration. In particular, we focus on how surface design affects mesenchymal cell response and differentiation into the osteoblast lineage. Surface roughness has been largely studied at the microscale, but recent studies have highlighted the importance of hierarchical micron/submicronanosurface roughness, as well as surface roughness in combination with surface wettability. Integrins are transmembrane receptors that recognize changes in the surface and mediate downstream signaling pathways. Specifically, the noncanonical Wnt5a pathway has been implicated in osteoblastic differentiation of cells on titanium implant surfaces. However, much remains to be elucidated. Only recently have studies been conducted on the differences in biological response to implants based on sex, age, and clinical factors; these all point toward differences that advocate for patient-specific implant design. Finally, challenges in implant surface characterization must be addressed to optimize and compare data across studies. An understanding of both the science and the biology of the materials is crucial for developing novel dental implant materials and surface modifications for improved osseointegration.
机译:牙种植体材料,结构设计和表面特性的变化都会影响生物学反应。虽然整体性质对于植入物的机械稳定性很重要,但表面设计最终有助于骨整合。本文介绍了有助于改善细胞反应和骨整合的牙科植入物材料的表面参数。特别是,我们专注于表面设计如何影响间充质细胞反应和分化为成骨细胞谱系。表面粗糙度已经在微观尺度上进行了大量研究,但是最近的研究强调了微米级/亚微米级/纳米表面粗糙度的重要性,以及与表面润湿性结合的表面粗糙度的重要性。整联蛋白是识别表面变化并介导下游信号传导途径的跨膜受体。具体而言,非经典的Wnt5a途径与钛植入物表面细胞的成骨细胞分化有关。但是,还有许多事情有待阐明。直到最近,才根据性别,年龄和临床因素对植入物的生物学反应差异进行研究。所有这些都指向倡导针对特定患者的植入物设计的差异。最后,必须解决植入物表面表征方面的挑战,以优化和比较研究中的数据。对材料的科学和生物学的理解对于开发新型牙科植入物材料和表面改性以改善骨整合至关重要。

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