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基于物理特性的循环肿瘤细胞富集

Circulating tumor cell enrichment based on physical properties.

作者信息

Harouaka Ramdane A, Nisic Merisa, Zheng Si-Yang

机构信息

1Micro & Nano Integrated Biosystem (MINIBio) Laboratory, Department of Bioengineering and Materials Research Institute, Pennsylvania State University, University Park, PA, USA.

出版信息

J Lab Autom. 2013 Dec;18(6):455-68. doi: 10.1177/2211068213494391. Epub 2013 Jul 5.

Abstract

The metastatic dissemination and spread of malignant circulating tumor cells (CTCs) accounts for more than 90% of cancer-related deaths. CTCs detach from a primary tumor, travel through the circulatory system, and then invade and proliferate in distant organs. The detection of CTCs from blood has been established for prognostic monitoring and is predictive of patient outcome. Analysis of CTCs could enable the means for early detection and screening in cancer, as well as provide diagnostic access to tumor tissues in a minimally invasive way. The fundamental challenge with analyzing CTCs is the fact that they occur at extremely low concentrations in blood, on the order of one out of a billion cells. Various technologies have been proposed to isolate CTCs for enrichment. Here we focus on antigen-independent approaches that are not limited by specific capture antibodies. Intrinsic physical properties of CTCs, including cell size, deformability, and electrical properties, are reviewed, and technologies developed to exploit them for enrichment from blood are summarized. Physical enrichment technologies are of particular interest as they have the potential to increase yield and enable the analysis of rare CTC phenotypes that may not be otherwise obtained.

摘要

恶性循环肿瘤细胞(CTC)的转移扩散导致了超过90%的癌症相关死亡。CTC从原发肿瘤脱离,通过循环系统传播,然后在远处器官侵袭和增殖。从血液中检测CTC已用于预后监测,并可预测患者预后。对CTC的分析能够实现癌症的早期检测和筛查手段,还能以微创方式获取肿瘤组织进行诊断。分析CTC的根本挑战在于它们在血液中的浓度极低,大约为十亿分之一。人们已经提出了各种技术来分离CTC以进行富集。在此,我们重点关注不受特定捕获抗体限制的非抗原依赖方法。本文综述了CTC的内在物理特性,包括细胞大小、可变形性和电学特性,并总结了为从血液中利用这些特性进行富集而开发的技术。物理富集技术尤其令人关注,因为它们有可能提高产量,并能够分析否则可能无法获得的罕见CTC表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1af8/3830628/18c326b2fa9a/nihms492584f1.jpg

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