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Stripe-like Clay Nanotubes Patterns in Glass Capillary Tubes for Capture of Tumor Cells

机译:玻璃毛细管捕获肿瘤细胞中的条纹状粘土纳米管模式。

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Here, we used capillary tubes, to,evaporate an aqueous dispersion of halloysite nanotubes (HNTs) in a controlled manner to prepare a patterned surface with ordered alignment of the nanotubes. Sodium polystyrenesulfonate (PSS) was added to improve the surface charges of the tubes. An increased negative charge of HNTs is realized by PSS coating (from -26.1 mV to -52.2 mV). When the HNTs aqueous dispersion concentration is higher than 10%, liquid crystal phenomenon of the dispersion is found. A typical shear flow behavior and decreased viscosity upon shear is found when HNTs dispersions with concentrations higher than 10%. Upon drying the HNTs aqueous dispersion in capillary tubes, a regular pattern is formed in the wall of the tube. The width and spacing of the bands increase with HNTs dispersion concentration and decrease with the drying temperature for a given initial concentration. Morphology results show that an ordered alignment of HNTs is found especially for the sample of 10%, The patterned, surface can be used as a model for preparing PDMS molding with regular micro-anostructure. Also; the HNTs rough surfaces can provide much higher tumor cell capture efficiency compared to blank glass surfaces. The HNTs ordered surfaces provide promising application for biomedical areas such as biosensors.
机译:在这里,我们使用毛细管以受控方式蒸发埃洛石纳米管(HNT)的水分散体,以制备具有纳米管有序排列的图案化表面。加入聚苯乙烯磺酸钠(PSS)以改善管的表面电荷。通过PSS涂层(从-26.1 mV到-52.2 mV)可以实现HNT负电荷的增加。当HNTs水分散体浓度高于10%时,发现分散体的液晶现象。当HNTs分散液的浓度高于10%时,会发现典型的剪切流动行为和剪切粘度降低。在毛细管中干燥HNTs水分散体后,在管壁上会形成规则的图案。对于给定的初始浓度,带的宽度和间距随HNTs分散浓度而增加,并随干燥温度而减小。形态学结果表明,特别是对于10%的样品,发现HNTs有序排列。带图案的表面可以用作制备具有规则微/纳米结构的PDMS模塑的模型。也;与空白玻璃表面相比,HNTs的粗糙表面可以提供更高的肿瘤细胞捕获效率。 HNTs有序表面为生物医学领域(如生物传感器)提供了有希望的应用。

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