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Simulation of magnetic active polymers for versatile microfluidic devices

机译:多功能微流体装置磁性活性聚合物的模拟

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We propose to use a compound of magnetic nanoparticles (20-100 nm) embedded in a flexible polymer (Polydimethylsiloxane PDMS) to filter circulating tumor cells (CTCs). The analysis of CTCs is an emerging tool for cancer biology research and clinical cancer management including the detection, diagnosis and monitoring of cancer. The combination of experiments and simulations lead to a versatile microfluidic lab-on-chip device. Simulations are essential to understand the influence of the embedded nanoparticles in the elastic PDMS when applying a magnetic gradient field. It combines finite element calculations of the polymer, magnetic simulations of the embedded nanoparticles and the fluid dynamic calculations of blood plasma and blood cells. With the use of magnetic active polymers a wide range of tunable microfluidic structures can be created. The method can help to increase the yield of needed isolated CTCs.
机译:我们提出使用嵌入柔性聚合物(聚二甲基硅氧烷PDMS)中的磁性纳米颗粒(20-100nm)化合物以过滤循环肿瘤细胞(CTC)。 CTC的分析是癌症生物学研究和临床癌症管理的新兴工具,包括检测,诊断和监测癌症。实验和模拟的组合导致多功能的微流体实验室装置。在施加磁性梯度场时,模拟对于了解弹性PDMS中的嵌入式纳米颗粒的影响是必不可少的。它结合了聚合物的有限元计算,嵌入纳米颗粒的磁性模拟以及血浆和血细胞的流体动态计算。随着磁性活性聚合物的使用,可以产生各种可调微流体结构。该方法可以有助于增加所需CTC的产量。

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