Literature DB >> 30221311

A simple pyramid-shaped microchamber towards highly efficient isolation of circulating tumor cells from breast cancer patients.

Feng Liu1, Shuibing Wang1, Zhigang Lu1, Yumei Sun1, Chaogang Yang2, Qiongwei Zhou1, Shaoli Hong1, Shengxiang Wang1, Bin Xiong2, Kan Liu3,4, Nangang Zhang5.   

Abstract

Isolation and detection of circulating tumor cells (CTCs) has showed a great clinical impact for tumor diagnosis and treatment monitoring. Despite significant progresses of the existing technologies, feasible and cost-effective CTC isolation techniques are more desirable. In this study, a novel method was developed for highly efficient isolation of CTCs from breast cancer patients based on biophysical properties using a pyramid-shaped microchamber. Through optimization tests, the outlet height of 6 μm and the flow rate of 200 μL/min were chosen as the optimal conditions. The capture efficiencies of more than 85% were achieved for cancer cell lines (SKBR3, BGC823, PC3, and H1975) spiked in DMEM and healthy blood samples without clogging issue. In clinic assay, the platform identified CTCs in 13 of 20 breast cancer patients (65%) with an average of 4.25 ± 4.96 CTCs/2 mL, whereas only one cell was recognized as CTC in 1 of 15 healthy blood samples. The statistical analyses results demonstrated that both CTC positive rate and CTC counts were positive correlated with TNM stage (p < 0.001; p = 0.02, respectively). This microfluidic platform successfully demonstrated the clinical feasibility of CTC isolation and would hold great potential of clinical application in predicting and monitoring the prognosis of cancer patients.

Entities:  

Keywords:  Breast cancer; Cell isolation; Circulating tumor cells (CTCs); Microfluidic chip; Pyramid-shaped microchamber

Mesh:

Year:  2018        PMID: 30221311     DOI: 10.1007/s10544-018-0326-0

Source DB:  PubMed          Journal:  Biomed Microdevices        ISSN: 1387-2176            Impact factor:   2.838


  2 in total

Review 1.  Recent Advances in Microfluidic Platform for Physical and Immunological Detection and Capture of Circulating Tumor Cells.

Authors:  Mahesh Padmalaya Bhat; Venkatachalam Thendral; Uluvangada Thammaiah Uthappa; Kyeong-Hwan Lee; Madhuprasad Kigga; Tariq Altalhi; Mahaveer D Kurkuri; Krishna Kant
Journal:  Biosensors (Basel)       Date:  2022-04-07

2.  Simultaneous and automated detection of influenza A virus hemagglutinin H7 and H9 based on magnetism and size mediated microfluidic chip.

Authors:  Shuibing Wang; Zhao Ai; Zefen Zhang; Man Tang; Nangang Zhang; Feng Liu; Gujing Han; Shao-Li Hong; Kan Liu
Journal:  Sens Actuators B Chem       Date:  2020-01-08       Impact factor: 7.460

  2 in total

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