首页> 外文会议>2019 20th International Conference on Solid-State Sensors, Actuators and Microsystems amp; Eurosensors XXXIII >Concentration Match Based Modulation for Clogging-Free Filtration Through Micropore Arrays
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Concentration Match Based Modulation for Clogging-Free Filtration Through Micropore Arrays

机译:基于浓度匹配的微孔阵列无堵塞过滤调制

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摘要

Liquid biopsy techniques for the rare tumor cell separation from various body fluids have shown enormous promise in cancer detection and prognosis monitoring. High throughput is a critical index in practical application for the liquid biopsy of a large-volume (>10 mL) clinical sample. The micropore array based filtration has been well known as the most promising technique to realize a high throughput at mL/min level, along with a high recovery rate of rare cells. However, restricted by the filtration area and density of micropore number, clogging often happens in the operation of practical clinical samples with complicated components, and thus results in a failure of the specific target separation. Therefore, an effective strategy to solve the clogging problem is urgent in the micropore array filtration based liquid biopsy. This paper proposes a concentration match based modulation mechanism for the first time, and develops a dilution aiding method to solve the clogging problem in the micropore array filtration. Theoretical analysis and experimental verifications demonstrate this strategy could simply and reliably fulfill a clogging-free filtration and thus a high-efficiency separation of different targets from complicated clinical samples. This strategy will be widely applicable as a common and key technology to guide clinical sample pretreatments and device designs in the micropore array filtration based liquid biopsy.
机译:液体活检技术可从各种体液中罕见地分离肿瘤细胞,在癌症检测和预后监测中显示出巨大的希望。对于大量(> 10 mL)临床样品的液体活检,高通量是实际应用中的关键指标。基于微孔阵列的过滤是众所周知的最有前途的技术,可以实现mL / min的高通量以及稀有细胞的高回收率。然而,受过滤面积和微孔数密度的限制,在具有复杂成分的实际临床样品的操作中经常发生堵塞,从而导致特定靶标分离的失败。因此,在基于微孔阵列过滤的液体活检中,解决堵塞问题的有效策略迫在眉睫。本文首次提出了一种基于浓度匹配的调制机制,并提出了一种稀释辅助方法来解决微孔阵列过滤中的堵塞问题。理论分析和实验验证表明,该策略可以简单,可靠地实现无堵塞过滤,因此可以从复杂的临床样品中高效分离出不同的目标。该策略将广泛用作指导基于微孔阵列过滤的液体活检中临床样品预处理和设备设计的通用和关键技术。

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