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Published April 9, 2020 | Version v1

Addressable Nanoantennas with Cleared Hotspots for Single-Molecule Detection on a Portable Smartphone Microscope

Description

The advent of highly sensitive photodetectors and the development of photostabilization strategies made detecting the fluorescence of single molecules a routine task in many labs around the world. However, to this day, this process requires cost-intensive optical instruments due to the truly nanoscopic signal of a single emitter. Simplifying single-molecule detection would enable many exciting applications, e.g. in point-of-care diagnostic settings, where costly equipment would be prohibitive. Here, we introduce addressable NanoAntennas with Cleared HOtSpots (NACHOS) that are scaffolded by DNA origami nanostructures and can be specifically tailored for the incorporation of bioassays. Single emitters placed in the NACHOS emit up to 461-fold (average of 89±7-fold) brighter enabling their detection with a customary smartphone camera and an 8-US-dollar objective lens. To prove the applicability of our system, we built a portable, battery-powered smartphone microscope and successfully carried out an exemplary single-molecule detection assay for DNA specific to antibiotic-resistant Klebsiella pneumonia „on the road “. Here we demonstrate the raw data on which our findings based on.

Files

Files (2.0 GB)

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md5:445a555502626401d40a7e67ea120893
1.8 GB Download
md5:4db8e1608d47ed4db78d49d2f29feb1c
205.2 MB Download
md5:8488986ae1e25c1f95d6749ea340b02a
6.4 MB Download

Additional details

Funding

European Commission
ChipScope - Overcoming the Limits of Diffraction with Superresolution Lighting on a Chip 737089