Thermophoretic isolation of circulating tumor cells, numerical simulation and design of a microfluidic chip

被引:0
作者
Sasan Asiaei
Vahid Darvishi
Mohammad Hossein Davari
Delaram Zohrevandi
Hesam Moghadasi
机构
[1] Iran University of Science and Technology,Sensors and Integrated Bio
来源
Journal of Thermal Analysis and Calorimetry | 2019年 / 137卷
关键词
Thermophoresis; Circulating tumor cell; Microfluidics; Separation; Discrete heat sources;
D O I
暂无
中图分类号
学科分类号
摘要
In this work, we design a novel microfluidic chip to analyze and simulate the thermophoretic isolation of circulating tumor cells. For the first time, separation of circulating tumor cells from same size peripheral blood cells is examined by thermophoresis. Moreover, a discrete heat source was used to attenuate the separation efficiency, instead of a continuous heat source. Physical properties, such as thermal conductivity, gravity and hydrodynamic forces, were used in numerical design of a microfluidic chip to preferably move white blood cells toward colder walls, due to thermophoresis. To examine the separation process, or differentiated upward migration of cells between the fluid layers, the creeping flow and continuity equations are simultaneously solved along with the constituent forces by FEM modeling. Results show that upon applying a minimum temperature difference of 1 °C, white blood cells are effectively separated from tumor cells, in a 4.5-mm-long microchannel. Maintaining an oscillating/symmetrical temperature gradient in the longitudinal direction minimizes the required separation length of the channel. Moreover, for samples with relatively wide range of size distributions, thermophoresis can robustly separate the analytes, even for the same diameter analytes where the difference in buoyancy or gravity forces is infinitesimal or not present. Such small temperature difference in walls does not denature cells, the overall design is relatively cheap to apply and requires simple fabrication, and the separation is implemented label-free.
引用
收藏
页码:831 / 839
页数:8
相关论文
共 50 条
[41]   High-Throughput Microfluidic Labyrinth for the Label-free Isolation of Circulating Tumor Cells [J].
Lin, Eric ;
Rivera-Baez, Lianette ;
Fouladdel, Shamileh ;
Yoon, Hyeun Joong ;
Guthrie, Stephanie ;
Wieger, Jacob ;
Deol, Yadwinder ;
Keller, Evan ;
Sahai, Vaibhav ;
Simeone, Diane M. ;
Burness, Monika L. ;
Azizi, Ebrahim ;
Wicha, Max S. ;
Nagrath, Sunitha .
CELL SYSTEMS, 2017, 5 (03) :295-+
[42]   Label-free isolation of circulating tumor cells in microfluidic devices: Current research and perspectives [J].
Cima, Igor ;
Yee, Chay Wen ;
Iliescu, Florina S. ;
Phyo, Wai Min ;
Lim, Kiat Hon ;
Iliescu, Ciprian ;
Tan, Min Han .
BIOMICROFLUIDICS, 2013, 7 (01)
[43]   Enrichment of circulating tumor cells in tumor-bearing mouse blood by a deterministic lateral displacement microfluidic device [J].
Okano, Hiromasa ;
Konishi, Tomoki ;
Suzuki, Toshihiro ;
Suzuki, Takahiro ;
Ariyasu, Shinya ;
Aoki, Shin ;
Abe, Ryo ;
Hayase, Masanori .
BIOMEDICAL MICRODEVICES, 2015, 17 (03) :1-11
[44]   Analytical Validation of a Spiral Microfluidic Chip with Hydrofoil-Shaped Pillars for the Enrichment of Circulating Tumor Cells [J].
Sen-Dogan, Begum ;
Demir, Mehmet Alper ;
Sahin, Buket ;
Yildirim, Ender ;
Karayalcin, Gizem ;
Sahin, Sebnem ;
Mutlu, Ege ;
Toral, Taylan Berkin ;
Ozgur, Ebru ;
Zorlu, Ozge ;
Kulah, Haluk .
BIOSENSORS-BASEL, 2023, 13 (10)
[45]   Highly efficient capture and harvest of circulating tumor cells on a microfluidic chip integrated with herringbone and micropost arrays [J].
Xue, Peng ;
Wu, Yafeng ;
Guo, Jinhong ;
Kang, Yuejun .
BIOMEDICAL MICRODEVICES, 2015, 17 (02)
[46]   Integrated microfluidic single-cell immunoblotting chip enables high-throughput isolation, enrichment and direct protein analysis of circulating tumor cells [J].
Abdulla, Aynur ;
Zhang, Ting ;
Li, Shanhe ;
Guo, Wenke ;
Warden, Antony R. ;
Xin, Yufang ;
Maboyi, Nokuzola ;
Lou, Jiatao ;
Xie, Haiyang ;
Ding, Xianting .
MICROSYSTEMS & NANOENGINEERING, 2022, 8 (01)
[47]   Isolation, Detection, and Antigen-Based Profiling of Circulating Tumor Cells Using a Size-Dictated Immunocapture Chip [J].
Ahmed, Metages Gashaw ;
Abate, Mahlet Fasil ;
Song, Yanling ;
Zhu, Zhi ;
Yan, Feng ;
Xu, Yao ;
Wang, Xiaomin ;
Li, Qingbiao ;
Yang, Chaoyong .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2017, 56 (36) :10681-10685
[48]   Advances in Isolating Circulating Tumor Cells With Microfluidic Chips [J].
Lu Xiao-Qing ;
Li Lei ;
Chen Hong-Mei ;
Chen Peng ;
Liu Jing .
PROGRESS IN BIOCHEMISTRY AND BIOPHYSICS, 2015, 42 (04) :301-312
[49]   Integration of Hierarchical Micro-/Nanostructures in a Microfluidic Chip for Efficient and Selective Isolation of Rare Tumor Cells [J].
Wang, Shunqiang ;
Cho, Younghyun ;
Cheng, Xuanhong ;
Yang, Shu ;
Liu, Yi ;
Liu, Yaling .
MICROMACHINES, 2019, 10 (10)
[50]   Isolation and retrieval of circulating tumor cells using centrifugal forces [J].
Hou, Han Wei ;
Warkiani, Majid Ebrahimi ;
Khoo, Bee Luan ;
Li, Zi Rui ;
Soo, Ross A. ;
Tan, Daniel Shao-Weng ;
Lim, Wan-Teck ;
Han, Jongyoon ;
Bhagat, Ali Asgar S. ;
Lim, Chwee Teck .
SCIENTIFIC REPORTS, 2013, 3