纳米多孔金基质对细胞粘附和分化的异常影响,因为局灶性粘附的独立多分支信号传导。

IF 4.2 3区 医学 Q2 ENGINEERING, BIOMEDICAL
Peizheng Wu, Kazuya Yanagi, Kazuki Yokota, Masataka Hakamada, Mamoru Mabuchi
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引用次数: 0

摘要

多种细胞行为,如细胞粘附、运动和命运,可以通过表面拓扑结构和化学等底物特性来控制。特别是,底物的表面拓扑结构强烈影响细胞行为,拓扑间距是诱导细胞反应的关键因素。各种研究表明,尽管分化进展缓慢,但随着拓扑间距的减小,细胞粘附性增强。然而,也有例外,因此,拓扑间距和细胞反应之间的相关性仍然存在争议。我们发现纳米多孔金基质影响细胞粘附,而它既不影响成骨分化也不影响成脂分化。此外,随着孔径的减小,细胞粘附性降低。这与之前的研究结果不一致。局灶性粘附(FA)是包含特定蛋白质如FA激酶、talin和vinculin的模块的聚集体。因此,有人认为,由于各种细胞外信号可以从FA模块中独立分支出来,因此纳米多孔金基质的异常效应与FA的多分支有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unusual effects of a nanoporous gold substrate on cell adhesion and differentiation because of independent multi-branch signaling of focal adhesions

Unusual effects of a nanoporous gold substrate on cell adhesion and differentiation because of independent multi-branch signaling of focal adhesions

Unusual effects of a nanoporous gold substrate on cell adhesion and differentiation because of independent multi-branch signaling of focal adhesions

Unusual effects of a nanoporous gold substrate on cell adhesion and differentiation because of independent multi-branch signaling of focal adhesions

A variety of cell behaviors, such as cell adhesion, motility, and fate, can be controlled by substrate characteristics such as surface topology and chemistry. In particular, the surface topology of substrates strongly affects cell behaviors, and the topological spacing is a critical factor in inducing cell responses. Various works have demonstrated that cell adhesion was enhanced with decreasing topological spacing although differentiation progressed slowly. However, there are exceptions, and thus, correlations between topological spacing and cell responses are still debated. We show that a nanoporous gold substrate affected cell adhesion while it neither affected osteogenic nor adipogenic differentiation. In addition, the cell adhesion was reduced with decreasing pore size. These do not agree with previous findings. A focal adhesion (FA) is an aggregate of modules comprising specific proteins such as FA kinase, talin, and vinculin. Therefore, it is suggested that because various extracellular signals can be independently branched off from the FA modules, the unusual effects of nanoporous gold substrates are related to the multi-branching of FAs.

Graphical Abstract

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来源期刊
Journal of Materials Science: Materials in Medicine
Journal of Materials Science: Materials in Medicine 工程技术-材料科学:生物材料
CiteScore
8.00
自引率
0.00%
发文量
73
审稿时长
3.5 months
期刊介绍: The Journal of Materials Science: Materials in Medicine publishes refereed papers providing significant progress in the application of biomaterials and tissue engineering constructs as medical or dental implants, prostheses and devices. Coverage spans a wide range of topics from basic science to clinical applications, around the theme of materials in medicine and dentistry. The central element is the development of synthetic and natural materials used in orthopaedic, maxillofacial, cardiovascular, neurological, ophthalmic and dental applications. Special biomedical topics include biomaterial synthesis and characterisation, biocompatibility studies, nanomedicine, tissue engineering constructs and cell substrates, regenerative medicine, computer modelling and other advanced experimental methodologies.
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