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用于高通量活循环肿瘤细胞分离的锥形狭缝膜过滤器。

Tapered-slit membrane filters for high-throughput viable circulating tumor cell isolation.

作者信息

Kang Yoon-Tae, Doh Il, Cho Young-Ho

机构信息

Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, South Korea.

出版信息

Biomed Microdevices. 2015 Apr;17(2):45. doi: 10.1007/s10544-015-9949-6.

Abstract

This paper presents tapered-slit membrane filters for high-throughput viable circulating tumor cell (CTC) isolation. The membrane filter with a 2D array of vertical tapered slits with a gap that is wide at the entrance and gradually decreases with depth, provide minimal cell stress and reduce 82.14% of the stress generated in conventional straight-hole filters. We designed two types of tapered-slit filters, Filters 6 and 8, respectively, containing the tapered slits with outlet widths of 6 μm and 8 μm at a slit density of 34,445/cm(2) on the membrane. We fabricated the vertical slits with a tapered angle of 2 ° on a SU8 membrane by adjusting the UV expose dose and the air gap between the membrane and the photomask during lithography. In the experimental study, the proposed tapered-slit filter captured 89.87% and 82.44% of the cancer cells spiked in phosphate buffered saline (PBS) and diluted blood (blood: PBS = 1:4), respectively, at a sample flow rate of 5 ml per hour, which is 33.3 times faster than previous lateral tapered-slit filters. We further verified the capability to culture on chip after capturing: 72.33% of cells among the captured cells still remained viable after a 5-day culture. The proposed tapered-slit membrane filters verified high-throughput viable CTC isolation capability, thereby inaugurating further advanced CTC research for cancer diagnosis and prognosis.

摘要

本文介绍了用于高通量活循环肿瘤细胞(CTC)分离的锥形狭缝膜过滤器。这种膜过滤器具有二维阵列的垂直锥形狭缝,其间隙在入口处较宽,并随深度逐渐减小,可使细胞应力最小化,并减少传统直孔过滤器中产生的82.14%的应力。我们分别设计了两种类型的锥形狭缝过滤器,即过滤器6和过滤器8,在膜上以34445/cm²的狭缝密度包含出口宽度为6μm和8μm的锥形狭缝。我们通过在光刻过程中调整紫外线曝光剂量以及膜与光掩模之间的气隙,在SU8膜上制造了锥角为2°的垂直狭缝。在实验研究中,所提出的锥形狭缝过滤器在每小时5ml的样品流速下,分别捕获了添加到磷酸盐缓冲盐水(PBS)和稀释血液(血液:PBS = 1:4)中的89.87%和82.44%的癌细胞,这比以前的横向锥形狭缝过滤器快33.3倍。我们进一步验证了捕获后在芯片上培养的能力:捕获的细胞中有72.33%在5天培养后仍保持存活。所提出的锥形狭缝膜过滤器验证了高通量活CTC分离能力,从而开创了用于癌症诊断和预后的进一步先进的CTC研究。

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