» Articles » PMID: 38992001

Harnessing Virus Flexibility to Selectively Capture and Profile Rare Circulating Target Cells for Precise Cancer Subtyping

Overview
Journal Nat Commun
Specialty Biology
Date 2024 Jul 11
PMID 38992001
Authors
Affiliations
Soon will be listed here.
Abstract

The effective isolation of rare target cells, such as circulating tumor cells, from whole blood is still challenging due to the lack of a capturing surface with strong target-binding affinity and non-target-cell resistance. Here we present a solution leveraging the flexibility of bacterial virus (phage) nanofibers with their sidewalls displaying target circulating tumor cell-specific aptamers and their ends tethered to magnetic beads. Such flexible phages, with low stiffness and Young's modulus, can twist and adapt to recognize the cell receptors, energetically enhancing target cell capturing and entropically discouraging non-target cells (white blood cells) adsorption. The magnetic beads with flexible phages can isolate and count target cells with significant increase in cell affinity and reduction in non-target cell absorption compared to magnetic beads having rigid phages. This differentiates breast cancer patients and healthy donors, with impressive area under the curve (0.991) at the optimal detection threshold (>4 target cells mL). Immunostaining of captured circulating tumor cells precisely determines breast cancer subtypes with a diagnostic accuracy of 91.07%. Our study reveals the power of viral mechanical attributes in designing surfaces with superior target binding and non-target anti-fouling.

References
1.
Luo D, Cui S, Liu Y, Shi C, Song Q, Qin X . Biocompatibility of Magnetic Resonance Imaging Nanoprobes Improved by Transformable Gadolinium Oxide Nanocoils. J Am Chem Soc. 2018; 140(43):14211-14216. DOI: 10.1021/jacs.8b08118. View

2.
Li C, Lu D, Deng J, Zhang X, Yang P . Amyloid-Like Rapid Surface Modification for Antifouling and In-Depth Remineralization of Dentine Tubules to Treat Dental Hypersensitivity. Adv Mater. 2019; 31(46):e1903973. DOI: 10.1002/adma.201903973. View

3.
Zeng Y, Yue H, Cao B, Li Y, Yang M, Mao C . Target-Triggered Formation of Artificial Enzymes on Filamentous Phage for Ultrasensitive Direct Detection of Circulating miRNA Biomarkers in Clinical Samples. Angew Chem Int Ed Engl. 2022; 61(45):e202210121. DOI: 10.1002/anie.202210121. View

4.
Zhou N, Li Y, Loveland C, Wilson M, Cao B, Qiu P . Hierarchical Ordered Assembly of Genetically Modifiable Viruses into Nanoridge-in-Microridge Structures. Adv Mater. 2019; 31(52):e1905577. PMC: 7055689. DOI: 10.1002/adma.201905577. View

5.
Alexeev A, Uspal W, Balazs A . Harnessing janus nanoparticles to create controllable pores in membranes. ACS Nano. 2009; 2(6):1117-22. DOI: 10.1021/nn8000998. View