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磁驱动微流控技术用于分离循环肿瘤细胞。

Magnetically driven microfluidics for isolation of circulating tumor cells.

机构信息

School of Chemical Engineering, Kunming University of Science and Technology, Kunming, China.

Chongqing Key Laboratory of Micro-Nano System and Intelligent Sensing, Chongqing Technology and Business University, Chongqing, China.

出版信息

Cancer Med. 2020 Jun;9(12):4207-4231. doi: 10.1002/cam4.3077. Epub 2020 Apr 23.

Abstract

Circulating tumor cells (CTCs) largely contribute to cancer metastasis and show potential prognostic significance in cancer isolation and detection. Miniaturization has progressed significantly in the last decade which in turn enabled the development of several microfluidic systems. The microfluidic systems offer a controlled microenvironment for studies of fundamental cell biology, resulting in the rapid development of microfluidic isolation of CTCs. Due to the inherent ability of magnets to provide forces at a distance, the technology of CTCs isolation based on the magnetophoresis mechanism has become a routine methodology. This historical review aims to introduce two principles of magnetic isolation and recent techniques, facilitating research in this field and providing alternatives for researchers in their study of magnetic isolation. Researchers intend to promote effective CTC isolation and analysis as well as active development of next-generation cancer treatment. The first part of this review summarizes the primary principles based on positive and negative magnetophoretic isolation and describes the metrics for isolation performance. The second part presents a detailed overview of the factors that affect the performance of CTC magnetic isolation, including the magnetic field sources, functionalized magnetic nanoparticles, magnetic fluids, and magnetically driven microfluidic systems.

摘要

循环肿瘤细胞 (CTCs) 在癌症转移中起重要作用,并在癌症分离和检测中显示出潜在的预后意义。过去十年中,微流控技术取得了重大进展,从而推动了几种微流控系统的发展。微流控系统为基础细胞生物学研究提供了受控的微环境,从而促进了微流控 CTC 分离的快速发展。由于磁铁具有远距离提供力的固有能力,基于磁泳机制的 CTC 分离技术已成为常规方法。本历史综述旨在介绍两种磁分离原理和最新技术,促进该领域的研究,并为研究人员在磁分离研究中提供替代方法。研究人员旨在促进有效的 CTC 分离和分析,以及下一代癌症治疗的积极发展。本文综述的第一部分总结了基于正、负磁泳分离的主要原理,并描述了分离性能的度量标准。第二部分详细介绍了影响 CTC 磁分离性能的因素,包括磁场源、功能化磁性纳米粒子、磁性流体和磁驱动微流控系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e3e/7300401/5b191fba30ef/CAM4-9-4207-g001.jpg

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