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Nanotextured polymer substrates show enhanced cancer cell isolation and cell culture

机译:纳米纹理的聚合物底物显示出增强的癌细胞分离和细胞培养

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Detection of circulating tumor cells (CTCs) in the early stages of cancer is a great challenge because of their exceedingly small concentration. There are only a few approaches sensitive enough to differentiate tumor cells from the plethora of other cells in a sample like blood. In order to detect CTCs, several antibodies and aptamers have already shown high affinity. Nanotexture can be used to mimic basement membrane to further enhance this affinity. This article reports an approach to fabricate nanotextured polydimethylsiloxane (PDMS) substrates using micro reactive ion etching (micro-RIE). Three recipes were used to prepare nanotextured PDMS using oxygen and carbon tetrafluoride. Micro-RIE provided better control on surface properties. Nanotexturing improved the affinity of PDMS surfaces to capture cancer cells using surface immobilized aptamers against cell membrane overexpressed with epidermal growth factor receptors. In all cases, nanotexture of PDMS increased the effective surface area by creating nanoscale roughness on the surface. Nanotexture also enhanced the growth rate of cultured cells compared to plain surfaces. A comparison among the three nanotextured surfaces demonstrated an almost linear relationship between the surface roughness and density of captured tumor cells. The nanotextured PDMS mimicked biophysical environments for cells to grow faster. This can have many implications in microfluidic platforms used for cell handling.
机译:由于其浓度非常低,因此在癌症的早期阶段检测循环肿瘤细胞(CTC)是一项巨大的挑战。只有几种方法足够灵敏,可以区分样品(如血液)中的肿瘤细胞与过多其他细胞。为了检测CTC,几种抗体和适体已经显示出高亲和力。纳米纹理可用于模拟基底膜,以进一步增强这种亲和力。本文报道了一种使用微反应离子刻蚀(micro-RIE)制造纳米织构聚二甲基硅氧烷(PDMS)基板的方法。使用三种配方来制备使用氧气和四氟化碳的纳米纹理PDMS。 Micro-RIE提供了更好的表面性能控制。纳米纹理使用表面固定的适体来对抗表皮生长因子受体过度表达的细胞膜,从而改善了PDMS表面捕获癌细胞的亲和力。在所有情况下,PDMS的纳米纹理都通过在表面上产生纳米级粗糙度来增加有效表面积。与平整表面相比,纳米纹理还提高了培养细胞的生长速率。三个纳米结构化表面之间的比较表明,表面粗糙度和捕获的肿瘤细胞密度之间几乎呈线性关系。纳米纹理的PDMS模仿了细胞的生物物理环境,以使其生长更快。这在用于细胞处理的微流体平台中可能有很多含义。

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