Electrospun degradable Zn-Mn oxide hierarchical nanofibers for specific capture and efficient release of circulating tumor cells

被引:6
作者
Xu, Longguang [1 ]
Li, Rui [1 ]
Wang, Zixiang [1 ]
Cui, Heng [1 ]
Li, Wei [1 ]
Yu, Mingxia [2 ]
Guo, Shi-Shang [1 ]
Zhao, Xing-Zhong [1 ]
机构
[1] Wuhan Univ, Sch Phys & Technol, Minist Educ, Key Lab Artificial Micro & Nanostruct, Wuhan 430072, Hubei, Peoples R China
[2] Wuhan Univ, Zhongnan Hosp, Dept Clin Lab, Wuhan 430071, Hubei, Peoples R China
基金
中国国家自然科学基金;
关键词
early cancer diagnosis; circulating tumor cells; hierarchical inorganic nanofibers; transition-metal oxides; affinity isolation and analysis; liquid biopsy; ELECTROCHEMICAL RELEASE; ENHANCED ISOLATION; CELLULOSE-ACETATE; FIBERS; NANO; PURIFICATION; TECHNOLOGIES; MICROCHIP; DIAGNOSIS; ASSAY;
D O I
10.1088/1361-6528/abb48b
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Constructing biological affinity devices is considered as an effective strategy for isolating circulating tumor cells (CTCs), and electrospun nanofibers (ESNFs) have recently received attention. However, the current research focuses on polymer fibers, and fabricating stimuli-responsive inorganic nanofibers for cancer diagnosis and analysis is still challenging. In this work, Zn-Mn oxide nanofibers (ZnMnNFs) are used to capture and purify cancer cells after modification with specific antibodies. Then, the hierarchical nanofibers are degraded by reductive weak acid to release the captured cells efficiently without residues. Fusion of Zn and Mn, two transition metals, enhances the surface activity of oxides so that ZnMnNFs are easier to be degraded and modified. By using MCF-7 cancer cells, the cell capture efficiency of ZnMnNFs is up to 88.2%. Furthermore, by using citric acid, it is discovered that, by comparison with Mn oxide nanofibers, the cell release efficiency of ZnMnNFs is improved to 95.1% from 15.4%. In addition, the viability of released cells exceeds 90%. Lastly, the robustness of ZnMnNFs substrates is tested in peripheral blood from breast cancer patients (BCP) and colorectal cancer patients (CCP). Combined with fluorescence labeling, CTCs are confirmed to be isolated from all the clinical samples. This is the first trial of using ternary inorganic ESNFs for cancer cell capture. It is anticipated that the degradable ESNFs will provide biocompatible theranostic platforms and overcome the current limitations of cell release for high-precision gene analysis.
引用
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页数:9
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共 58 条
[11]   Gelatin Nanoparticle-Coated Silicon Beads for Density-Selective Capture and Release of Heterogeneous Circulating Tumor Cells with High Purity [J].
Huang, Qinqin ;
Wang, Fu-Bing ;
Yuan, Chun-Hui ;
He, Zhaobo ;
Rao, Lang ;
Cai, Bo ;
Chen, Bolei ;
Jiang, Susu ;
Li, Zhiqiang ;
Chen, Jincao ;
Liu, Wei ;
Guo, Feng ;
Ao, Zheng ;
Chen, Shi ;
Zhao, Xing-Zhong .
THERANOSTICS, 2018, 8 (06) :1624-1635
[12]   Efficient Purification and Release of Circulating Tumor Cells by Synergistic Effect of Biomarker and SiO2@Gel-Microbead-Based Size Difference Amplification [J].
Huang, Qinqin ;
Cai, Bo ;
Chen, Bolei ;
Rao, Lang ;
He, Zhaobo ;
He, Rongxiang ;
Guo, Feng ;
Zhao, Libo ;
Kondamareddy, Kiran Kumar ;
Liu, Wei ;
Guo, Shishang ;
Zhao, Xing-Zhong .
ADVANCED HEALTHCARE MATERIALS, 2016, 5 (13) :1554-1559
[13]   Materials and microfluidics: enabling the efficient isolation and analysis of circulating tumour cells [J].
Jackson, Joshua M. ;
Witek, Malgorzata A. ;
Kamande, Joyce W. ;
Soper, Steven A. .
CHEMICAL SOCIETY REVIEWS, 2017, 46 (14) :4245-4280
[14]   An in vitro 3D model using collagen coated gelatin nanofibers for studying breast cancer metastasis [J].
Janani, G. ;
Pillai, Mamatha M. ;
Selvakumar, R. ;
Bhattacharyya, Amitava ;
Sabarinath, C. .
BIOFABRICATION, 2017, 9 (01)
[15]   HER2 expression identifies dynamic functional states within circulating breast cancer cells [J].
Jordan, Nicole Vincent ;
Bardia, Aditya ;
Wittner, Ben S. ;
Benes, Cyril ;
Ligorio, Matteo ;
Zheng, Yu ;
Yu, Min ;
Sundaresan, Tilak K. ;
Licausi, Joseph A. ;
Desai, Rushil ;
O'Keefe, Ryan M. ;
Ebright, Richard Y. ;
Boukhali, Myriam ;
Sil, Srinjoy ;
Onozato, Maristela L. ;
Iafrate, Anthony J. ;
Kapur, Ravi ;
Sgroi, Dennis ;
Ting, David T. ;
Toner, Mehmet ;
Ramaswamy, Sridhar ;
Haas, Wilhelm ;
Maheswaran, Shyamala ;
Haber, Daniel A. .
NATURE, 2016, 537 (7618) :102-106
[16]   Programming Thermoresponsiveness of Nano Velcro Substrates Enables Effective Purification of Circulating Tumor Cells in Lung Cancer Patients [J].
Ke, Zunfu ;
Lin, Millicent ;
Chen, Jie-Fu ;
Choi, Jin-Sil ;
Zhang, Yang ;
Fong, Anna ;
Liang, An-Jou ;
Chen, Shang-Fu ;
Li, Qingyu ;
Fang, Wenfeng ;
Zhang, Pingshan ;
Garcia, Mitch A. ;
Lee, Tom ;
Song, Min ;
Lin, Hsing-An ;
Zhao, Haichao ;
Luo, Shyh-Chyang ;
Hou, Shuang ;
Yu, Hsiao-hua ;
Tseng, Hsian-Rong .
ACS NANO, 2015, 9 (01) :62-70
[17]   Antibacterial and antioxidant assessment of cellulose acetate/polycaprolactone nanofibrous mats impregnated with propolis [J].
Khoshnevisan, Kamyar ;
Maleki, Hassan ;
Samadian, Hadi ;
Doostan, Maryam ;
Khorramizadeh, Mohammad Reza .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2019, 140 :1260-1268
[18]   Binary-blend fibber-based capture assay of circulating tumor cells for clinical diagnosis of colorectal cancer [J].
Lee, Ai-Wei ;
Lin, Fu-Xiang ;
Wei, Po-Li ;
Guo Jian-Wei ;
Chen, Jem-Kun .
JOURNAL OF NANOBIOTECHNOLOGY, 2018, 16
[19]   Efficient Capture and High Activity Release of Circulating Tumor Cells by Using TiO2 Nanorod Arrays Coated with Soluble MnO2 Nanoparticles [J].
Li, R. ;
Chen, F. F. ;
Liu, H. Q. ;
Wang, Z. X. ;
Zhang, Z. T. ;
Wang, Y. ;
Cui, H. ;
Liu, W. ;
Zhao, X. Z. ;
Sun, Z. J. ;
Guo, S. S. .
ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (19) :16327-16334
[20]   TiO2 nanopillar arrays coated with gelatin film for efficient capture and undamaged release of circulating tumor cells [J].
Li, Wei ;
Li, Rui ;
Huang, Ben ;
Wang, Zixiang ;
Sun, Yue ;
Wei, Xiaoyun ;
Heng, Cui ;
Liu, Wei ;
Yu, Mingxia ;
Guo, Shi-Shang ;
Zhao, Xing-Zhong .
NANOTECHNOLOGY, 2019, 30 (33)