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利用微流控芯片中的透明质酸修饰的磁性珠高效捕获和分离癌细胞。

Efficient Capture and Separation of Cancer Cells Using Hyaluronic Acid-Modified Magnetic Beads in a Microfluidic Chip.

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Shanghai Engineering Research Center of Nano-biomaterials and Regenerative Medicine, College of Biological Science and Medical Engineering, Donghua University, Shanghai 201620, China.

Department of Biomedical Engineering, College of Engineering, Shantou University, Shantou 515063, China.

出版信息

Langmuir. 2022 Sep 13;38(36):11080-11086. doi: 10.1021/acs.langmuir.2c01740. Epub 2022 Aug 30.

Abstract

The efficient isolation and specific discrimination of circulating tumor cells (CTCs) is expected to provide valuable information for understanding tumor metastasis and play an important role in the treatment of cancer patients. In this study, we developed a novel and rapid method for efficient capture and specific identification of cancer cells using hyaluronic acid (HA)-modified SiO-coated magnetic beads in a microfluidic chip. First, polyacrylamide-surfaced SiO-coated magnetic beads (SiO@MBs) were covalently conjugated with HA, and the created HA-modified SiO@MBs (HA-SiO@MBs) display binding specificity to HeLa cells (a human cervical carcinoma cell line) overexpressing CD44 receptors. After incubating the HA-SiO@MBs with cancer cells for 1 h, the mixture of MBs and cells was drawn into a designed microfluidic channel with two inlets and outlets. Through the formation of lamellar flow, cells specifically bound with the HA-SiO@MBs can be separated under an external magnetic field with a capture efficiency of up to 92.0%. The developed method is simple, fast, and promising for CTC separation and cancer diagnostics applications.

摘要

高效分离和特异性鉴别循环肿瘤细胞(CTCs)有望为了解肿瘤转移提供有价值的信息,并在癌症患者的治疗中发挥重要作用。在本研究中,我们开发了一种使用基于透明质酸(HA)修饰的 SiO 涂层磁珠在微流控芯片中高效捕获和特异性鉴定癌细胞的新方法。首先,将聚酰胺表面的 SiO 涂层磁珠(SiO@MBs)与 HA 共价结合,所制备的 HA 修饰的 SiO@MBs(HA-SiO@MBs)对过度表达 CD44 受体的 HeLa 细胞(人宫颈癌细胞系)具有结合特异性。将 HA-SiO@MBs 与癌细胞孵育 1 小时后,将 MBs 和细胞的混合物吸入带有两个入口和出口的设计微流控通道中。通过形成层流,在外部磁场下可以特异性地分离与 HA-SiO@MBs 结合的细胞,捕获效率高达 92.0%。所开发的方法简单、快速,有望用于 CTC 分离和癌症诊断应用。

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