Bio-Inspired NanoVilli Chips for Enhanced Capture of Tumor-Derived Extracellular Vesicles: Toward Non-Invasive Detection of Gene Alterations in Non-Small Cell Lung Cancer

生物启发纳米绒毛芯片用于增强对肿瘤衍生细胞外囊泡的捕获:实现非小细胞肺癌基因变异的非侵入性检测

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作者:Jiantong Dong, Ryan Y Zhang, Na Sun, Matthew Smalley, Zipeng Wu, Anqi Zhou, Shih-Jie Chou, Yu Jen Jan, Peng Yang, Lirong Bao, Dongping Qi, Xinghong Tang, Patrick Tseng, Yue Hua, Dianwen Xu, Rueihung Kao, Meng Meng, Xirun Zheng, Ying Liu, Tatyana Vagner, Xiaoshu Chai, Dongjing Zhou, Mengyuan Li, Shih

Abstract

Tumor-derived extracellular vesicles (EVs) present in bodily fluids are emerging liquid biopsy markers for non-invasive cancer diagnosis and treatment monitoring. Because the majority of EVs in circulation are not of tumor origin, it is critical to develop new platforms capable of enriching tumor-derived EVs from the blood. Herein, we introduce a biostructure-inspired NanoVilli Chip, capable of highly efficient and reproducible immunoaffinity capture of tumor-derived EVs from blood plasma samples. Anti-EpCAM-grafted silicon nanowire arrays were engineered to mimic the distinctive structures of intestinal microvilli, dramatically increasing surface area and enhancing tumor-derived EV capture. RNA in the captured EVs can be recovered for downstream molecular analyses by reverse transcription Droplet Digital PCR. We demonstrate that this assay can be applied to monitor the dynamic changes of ROS1 rearrangements and epidermal growth factor receptor T790M mutations that predict treatment responses and disease progression in non-small cell lung cancer patients.

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