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Updated: Aug 18, 2026

Automated, High-Throughput Detection of Bacterial Adherence to Host Cells
Published on: September 17, 2021
Visualizing adhesion-induced agglutination of Escherichia coli with mannosylated nanoparticles
Liangwei Qu1, Pengju G Luo, Shelby Taylor
1Department of Chemistry, Clemson University, Clemson, South Carolina 29634, USA.
Abstract:
Polymeric nanoparticles covalently functionalized with derivatized D-mannose molecules were synthesized and characterized. These nanoparticles have an average size of approximately 160 nm in diameter, thus bearing a large number of surface-tethered mannose moieties for multivalent interactions with adhesins on bacterial cells. Specifically, the mannosylated nanoparticles bind strongly with Escherichia coli, allowing the convenient visualization of adhesion interactions under a conventional electron microscope. Since a single nanoparticle is capable of binding more than one cell, the adhesion interactions result in significant nanoparticle-mediated cell agglutination according to electron microscopy imaging. Potential applications of the mannosylated nanoparticles in the inhibition of enteropathogenic infections are discussed.
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