Literature DB >> 28029547

Improving sensitivity and specificity of capturing and detecting targeted cancer cells with anti-biofouling polymer coated magnetic iron oxide nanoparticles.

Run Lin1, Yuancheng Li2, Tobey MacDonald3, Hui Wu2, James Provenzale4, Xingui Peng5, Jing Huang2, Liya Wang2, Andrew Y Wang6, Jianyong Yang7, Hui Mao8.   

Abstract

Detecting circulating tumor cells (CTCs) with high sensitivity and specificity is critical to management of metastatic cancers. Although immuno-magnetic technology for in vitro detection of CTCs has shown promising potential for clinical applications, the biofouling effect, i.e., non-specific adhesion of biomolecules and non-cancerous cells in complex biological samples to the surface of a device/probe, can reduce the sensitivity and specificity of cell detection. Reported herein is the application of anti-biofouling polyethylene glycol-block-allyl glycidyl ether copolymer (PEG-b-AGE) coated iron oxide nanoparticles (IONPs) to improve the separation of targeted tumor cells from aqueous phase in an external magnetic field. PEG-b-AGE coated IONPs conjugated with transferrin (Tf) exhibited significant anti-biofouling properties against non-specific protein adsorption and off-target cell uptake, thus substantially enhancing the ability to target and separate transferrin receptor (TfR) over-expressed D556 medulloblastoma cells. Tf conjugated PEG-b-AGE coated IONPs exhibited a high capture rate of targeted tumor cells (D556 medulloblastoma cell) in cell media (58.7±6.4%) when separating 100 targeted tumor cells from 1×105 non-targeted cells and 41 targeted tumor cells from 100 D556 medulloblastoma cells spiked into 1mL blood. It is demonstrated that developed nanoparticle has higher efficiency in capturing targeted cells than widely used micron-sized particles (i.e., Dynabeads®).
Copyright © 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Anti-biofouling; Cell separation; Circulating tumor cells; Magnetic nanoparticles; Targeting

Mesh:

Substances:

Year:  2016        PMID: 28029547      PMCID: PMC5253252          DOI: 10.1016/j.colsurfb.2016.10.026

Source DB:  PubMed          Journal:  Colloids Surf B Biointerfaces        ISSN: 0927-7765            Impact factor:   5.268


  50 in total

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1.  Targeted Delivery of DNA Topoisomerase Inhibitor SN38 to Intracranial Tumors of Glioblastoma Using Sub-5 Ultrafine Iron Oxide Nanoparticles.

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2.  Impact of Anti-Biofouling Surface Coatings on the Properties of Nanomaterials and Their Biomedical Applications.

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3.  Improving Sensitivity and Specificity of Amyloid-β Peptides and Tau Protein Detection with Antibiofouling Magnetic Nanoparticles for Liquid Biopsy of Alzheimer's Disease.

Authors:  Yuancheng Li; Esther Lim; Travis Fields; Hui Wu; Yaolin Xu; Y Andrew Wang; Hui Mao
Journal:  ACS Biomater Sci Eng       Date:  2019-06-10

Review 4.  Impact of nanoparticles on neuron biology: current research trends.

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Review 8.  Magnetic Nanoparticles: From Design and Synthesis to Real World Applications.

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9.  Highly Specific Binding on Antifouling Zwitterionic Polymer-Coated Microbeads as Measured by Flow Cytometry.

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10.  One-Step Facile Synthesis of Highly Magnetic and Surface Functionalized Iron Oxide Nanorods for Biomarker-Targeted Applications.

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