适体
循环肿瘤细胞
化学
微流控
组合化学
微流控芯片
实验室晶片
纳米技术
癌细胞
生物物理学
癌症
分子生物学
材料科学
生物
遗传学
转移
作者
Yanling Song,Yuanzhi Shi,Mengjiao Huang,Wei Wang,Yang Wang,Jie Cheng,Zhi‐Chao Lei,Zhi Zhu,Chaoyong Yang
标识
DOI:10.1002/ange.201809337
摘要
Abstract Circulating tumor cell (CTC)‐enrichment by using aptamers has a number of advantages, but the issue of compromised binding affinities and stabilities in real samples hinders its wide applications. Inspired by the high efficiency of the prey mechanism of the octopus, we engineered a deterministic lateral displacement (DLD)‐patterned microfluidic chip modified with multivalent aptamer‐functionalized nanospheres (AP‐Octopus‐Chip) to enhance capture efficiency. The multivalent aptamer–antigen binding efficiency improves 100‐fold and the capture efficiency is enhanced more than 300 % compared with a monovalent aptamer‐modified chip. Moreover, the captured cancer cells can be released through a thiol exchange reaction with up to 80 % efficiency and 96 % viability, which is fully compatible with downstream mutation detection and CTC culture. Using the chip, we were able to find CTCs in all cancer samples analyzed.
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