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通过无配体尺寸选择大量收集循环肿瘤细胞的抗堵塞血液滤过装置

Anticlogging Hemofiltration Device for Mass Collection of Circulating Tumor Cells by Ligand-Free Size Selection.

作者信息

Wu Tzu-Hsien, Wu Cheng-Han, Huang Chun-Jen, Chang Ying-Chih

机构信息

Department of Biomedical Sciences and Engineering, National Central University, Jhong-Li, Taoyuan 320, Taiwan.

Chemical & Materials Engineering Department, National Central University, Jhong-Li, Taoyuan 320, Taiwan.

出版信息

Langmuir. 2021 Mar 23;37(11):3399-3409. doi: 10.1021/acs.langmuir.0c03613. Epub 2021 Mar 9.

Abstract

A new hemofiltration system was developed to continuously capture circulating tumor cells (CTCs) from a large volume of whole blood using a column that was packed with antifouling zwitterionized silica microspheres. The silica microspheres were modified with sulfobetaine silane (SBSi) to inhibit fouling, resist clogging, and give a high surface wettability and prolonged operation time. Packed microspheres with different diameters formed size-controllable interstitial pores that effectively captured CTCs by ligand-free size selection. For optimized performance of the hemofiltration system, operational factors, including the size of microspheres, flow rate, and cross-sectional area of the column, were considered with respect to the removal rate for colorectal cancer cells and the retention rate for white blood cells and red blood cells. The captured CTCs were collected from the column by density sedimentation. A large quantity of colorectal cancer cells was spiked into sheep blood, and the sample was circulated for 5 h with a total operational volume of 2 L followed by collection and culture in vitro. The results showed that the proposed hemofiltration device selectively removed abundant CTCs from in vitro circulatory blood. The viable cells were harvested for amplification and potential applications for precision medicine.

摘要

一种新的血液滤过系统被开发出来,该系统使用填充有抗污染两性离子化二氧化硅微球的柱子,从大量全血中连续捕获循环肿瘤细胞(CTC)。二氧化硅微球用磺基甜菜碱硅烷(SBSi)进行了改性,以抑制污染、防止堵塞,并具有高表面润湿性和延长的操作时间。不同直径的填充微球形成了尺寸可控的间隙孔,通过无配体尺寸选择有效地捕获了CTC。为了优化血液滤过系统的性能,考虑了包括微球尺寸、流速和柱子横截面积在内的操作因素对大肠癌细胞去除率以及白细胞和红细胞保留率的影响。通过密度沉降从柱子中收集捕获的CTC。将大量大肠癌细胞加入羊血中,样品以2 L的总操作体积循环5小时,然后进行收集并在体外培养。结果表明,所提出的血液滤过装置能从体外循环血液中选择性地去除大量CTC。收获存活细胞用于扩增以及精准医学的潜在应用。

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