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Investigation of the Interfacial Effects of Small Chemical-Modified TiO2 Nanotubes on 3T3 Fibroblast Responses

机译:化学修饰的小型TiO2纳米管对3T3成纤维细胞反应的界面效应研究

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In order to gain insight into how interfacial effects influence cell responses, chemically modified anodized TiO2 nanotubes (ATNs) were used to simultaneously investigate the effects of nanoscale substrate structure and angstrom-scale chemicals on cell morphological change and cell growth. Two small chemicals were used to modify the ATNs, namely, 3-aminopropyltrimethoxysilane (APTMS) and 3-mercaptopropyltrimethoxysilane (MPTMS), resulting in APTMS-modified ATNs (APTMS-ATNs) and MPTMS- modified ATNs (MPTMS-ATNs), respectively. In our in vitro observation of NIH/3T3 fibroblasts, cells thrived on both unmodified and modified ATNs. Quantitative analyses of cell numbers exhibited that APTMS-ATNs effectively facilitated cell proliferation and directed cell orientation owing to full cell—substrate contact caused by positively charged amino groups (—NH3~+) on the surface. In addition, scanning electron microscopy and fluorescence images showed different cell morphologies on APTMS-ATNs and MPTMS-ATNs. APTMS-ATNs resulted in flat spreading of fibroblasts, while MPTMS-ATNs resulted in fibroblasts with a three-dimensional solid shape and clear contours. The results indicate that the synergistic effects of nanotube surface topology and small chemical modification and, to a lesser extent, surface hydrophilicity, alter the interfacial interactions between cells and substrates, significantly affecting cell morphology, attachment, and growth. Using ATNs with different interfacial effects from various small chemicals, orientation of cells into various patterns can be achieved and investigation of cell fates, such as proliferation or stem cell differentiation, can be performed for future advanced medical or biological applications.
机译:为了深入了解界面效应如何影响细胞反应,使用化学修饰的阳极氧化TiO2纳米管(ATN)来同时研究纳米级基底结构和埃级化学物质对细胞形态变化和细胞生长的影响。使用两种小型化学品来修饰ATN,即3-氨丙基三甲氧基硅烷(APTMS)和3-巯基丙基三甲氧基硅烷(MPTMS),分别得到APTMS修饰的ATN(APTMS-ATN)和MPTMS修饰的ATN(MPTMS-ATN)。在我们对NIH / 3T3成纤维细胞的体外观察中,细胞在未修饰的和修饰的ATN上均旺盛生长。细胞数量的定量分析显示,由于表面上带正电荷的氨基(-NH3〜+)引起的细胞与底物的充分接触,APTMS-ATN有效地促进了细胞增殖和定向细胞定向。此外,扫描电子显微镜和荧光图像显示了APTMS-ATN和MPTMS-ATN上不同的细胞形态。 APTMS-ATN导致成纤维细胞的平坦扩散,而MPTMS-ATN导致成纤维细胞具有三维立体形状和轮廓清晰。结果表明,纳米管表面拓扑和小的化学修饰以及较小程度的表面亲水性的协同作用改变了细胞和底物之间的界面相互作用,从而显着影响细胞的形态,附着和生长。使用来自各种小化学物质的具有不同界面作用的ATN,可以将细胞定向为各种模式,并可以进行细胞命运的研究,例如增殖或干细胞分化,以用于将来的先进医学或生物学应用。

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