Highly Sensitive and Label-free Digital Detection of Whole Cell E. coli with Interferometric Reflectance Imaging
Negin Zaraee, Fulya Ekiz kanik, Abdul Muyeed Bhuiya, Emily S. Gong,, Matthew T. Geib, Nese Lortlar \"Unl\"u, Ayca Yalcin Ozkumur, Julia R. Dupuis,, M. Selim \"Unl\"u

TL;DR
This paper presents a highly sensitive, label-free interferometric reflectance imaging biosensor capable of detecting individual E. coli bacteria with unprecedented sensitivity, suitable for real-world clinical and environmental samples.
Contribution
The study introduces a novel interferometric reflectance imaging platform that achieves single-bacterium detection with a detection limit of 2.2 CFU/ml without sample preparation.
Findings
Achieved detection limit of 2.2 CFU/ml for E. coli.
Validated specificity against non-target bacteria.
Effective detection in complex samples like tap water.
Abstract
Bacterial infectious diseases are a major threat to human health. Timely and sensitive pathogenic bacteria detection is crucial in identifying the bacterial contaminations and preventing the spread of infectious diseases. Due to limitations of conventional bacteria detection techniques there have been concerted research efforts towards development of new biosensors. Biosensors offering label free, whole bacteria detection are highly desirable over those relying on label based or pathogenic molecular components detection. The major advantage is eliminating the additional time and cost required for labeling or extracting the desired bacterial components. Here, we demonstrate rapid, sensitive and label free E. coli detection utilizing interferometric reflectance imaging enhancement allowing for visualizing individual pathogens captured on the surface. Enabled by our ability to count…
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