2019SmallRequires access

Photobleaching: Improving the Sensitivity of Fluorescence‐Based Immunoassays by Photobleaching the Autofluorescence of Magnetic Beads (Small 3/2019)

Shira Roth, Orr Hadass, Meir Cohen, Jasenka Verbarg, Jennifer Wilsey, Amos Danielli

Open publisher page 5 citations

Abstract

In fluorescence-based assays, the autofluorescence of capture surfaces produces strong background noise. In article number 1803751, Amos Danielli and co-workers use photobleaching as a method to reduce the autofluorescence of magnetic beads, a commonly used capture surface. The technique yields a 3-fold improvement in the limit of detection and signal-to-noise ratio of a fluorescence-based immunoassay.

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What this paper is about

In fluorescence-based assays, the autofluorescence of capture surfaces produces strong background noise. In article number 1803751, Amos Danielli and co-workers use photobleaching as a method to reduce the autofluorescence of magnetic beads, a commonly used capture surface. The technique yields a 3-fold improvement in the limit of detection and signal-to-noise ratio of a fluorescence-based immunoassay.

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Available abstract

In fluorescence-based assays, the autofluorescence of capture surfaces produces strong background noise. In article number 1803751, Amos Danielli and co-workers use photobleaching as a method to reduce the autofluorescence of magnetic beads, a commonly used capture surface. The technique yields a 3-fold improvement in the limit of detection and signal-to-noise ratio of a fluorescence-based immunoassay.

Key concepts: Autofluorescence, Photobleaching, Fluorescence, Detection limit, Materials science, Fluorescence recovery after photobleaching, Fluorescence-lifetime imaging microscopy, Chemistry

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Photobleaching: Improving the Sensitivity of Fluorescence‐Based Immunoassays by Photobleaching the Autofluorescence of Magnetic Beads (Small 3/2019) — Research Paper | ScholarLens