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2.5-Dimensional Parylene C micropore array with a large area and a high porosity for high-throughput particle and cell separation

机译:具有大面积和高孔隙率的2.5维聚对二甲苯C微孔阵列用于高通量颗粒和细胞分离

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摘要

Large-area micropore arrays with a high porosity are in high demand because of their promising potential in liquid biopsy with a large volume of clinical sample. However, a micropore array with a large area and a high porosity faces a serious mechanical strength challenge. The filtration membrane may undergo large deformation at a high filtration throughput, which will decrease its size separation accuracy. In this work, a keyhole-free Parylene molding process has been developed to prepare a large (>20 mm × 20 mm) filtration membrane containing a 2.5-dimensional (2.5D) micropore array with an ultra-high porosity (up to 91.37% with designed pore diameter/space of 100 μm/4 μm). The notation 2.5D indicates that the large area and the relatively small thickness (approximately 10 μm) of the fabricated membranes represent 2D properties, while the large thickness-to-width ratio (10 μm/ < 4 μm) of the spaces between the adjacent pores corresponds to a local 3D feature. The large area and high porosity of the micropore array achieved filtration with a throughput up to 180 mL/min (PBS solution) simply driven by gravity. Meanwhile, the high mechanical strength, benefiting from the 2.5D structure of the micropore array, ensured a negligible pore size variation during the high-throughput filtration, thereby enabling high size resolution separation, which was proven by single-layer and multi-layer filtrations for particle separation. Furthermore, as a preliminary demonstration, the prepared 2.5-dimensional Parylene C micropore array was implemented as an efficient filter for rare cancer cell separation from a large volume, approximately 10 cells in 10 mL PBS and undiluted urine, with high recovery rates of 87 ± 13% and 56 ± 13%, respectively.
机译:具有高孔隙率的大面积微孔阵列的需求量很大,因为它们在具有大量临床样品的液体活检中具有广阔的前景。然而,具有大面积和高孔隙率的微孔阵列面临严重的机械强度挑战。过滤膜在高过滤通量下可能会发生较大变形,这将降低其尺寸分离精度。在这项工作中,已开发出无钥孔的聚对二甲苯成型工艺,以制备包含2.5维(2.5D)微孔阵列且具有超高孔隙率(高达91.37%)的大(> 20mmmm×x20mm)滤膜。设计孔径/间距为100μm/ 4μm)。符号2.5D表示所制作的膜的大面积和相对较小的厚度(大约10μm)代表2D特性,而相邻膜之间的空间的宽宽比大(10μm/ <4μm)。毛孔对应于局部3D特征。微孔阵列的大面积和高孔隙率仅通过重力即可实现高达180 mL / min(PBS溶液)的通量过滤。同时,得益于微孔阵列的2.5D结构,高机械强度确保了在高通量过滤过程中孔径变化可忽略不计,从而实现了高分离度分离,这一点已通过单层和多层过滤证明用于颗粒分离。此外,作为初步证明,所制备的2.5维Parylene C微孔阵列可作为一种有效的过滤器,用于从10μmLPBS和未稀释的尿液中大体积分离约10个细胞的稀有癌细胞,回收率高达87±分别为13%和56%±13%。

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