基于聚合物的微器件的超声分选:早期检测的应用

I. González, M. Tijero, J. Berganzo, A. Castillejo, J. Soto, A. Martin, M. Bouali
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引用次数: 0

摘要

这项工作提出了一项由压电致动器实现的聚合物微器件的研究,用于对流动悬浮液进行分类/分离过程,作为声镊子分别提取目标颗粒或细胞。它们提供了一个低成本和无标签的平台,利用了尺寸、密度和可压缩性的差异。它们从白细胞中分离肿瘤细胞的能力使其成为医疗应用的战略工具,如早期检测或未来监测个性化化疗的工具。基于聚合物的超声波微设备已经开发出来,可以分离这些细胞,效率高达70%。该技术目前正在进行优化,以达到90%以上的临床应用效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrasonic sorting in polymer-based microdevices: Application to early detection
This work presents a study of polymeric microdevices implemented by piezoelectric actuators to carry out processes of sorting/separation on flowing suspensions, acting as acoustic tweezers to extract separately target particles or cells. They provide a low-cost and label-free platform, exploiting the difference of size, density and compressibility. Their ability to perform isolation of tumor cells from white blood cells makes them strategic tools for medical applications such as early detection or future tools for monitoring personalized chemotherapy. Polymer-based microdevices implemented by ultrasounds have been developed to isolate these cells with an efficiency level up to 70%. This technology is currently being optimized to reach efficiencies higher than 90% for its clinical application.
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