AI Article Synopsis

  • Fluorescence anisotropy (FA) is identified as an underutilized method for biosensor development, focusing on molecular rotation rates.
  • Researchers created a FA probe using gold nanoclusters conjugated with antibodies to effectively detect cardiac troponin I (cTnI), a key biomarker for heart attacks.
  • The method achieved a low detection limit of 0.91 ng/mL, successfully correlating an increase in FA to cTnI concentration, enabling precise quantitative measurement.

Article Abstract

Fluorescence anisotropy (FA) is a versatile and efficient platform for developing biosensors that rely on the rate of rotations of fluorescence molecular entities in biochemical systems. However, by virtue of its intricate complexity, FA is a neglected and less explored area for developing biosensors. Herein, we experimented with the possibility of developing a fluorescence anisotropic probe to detect cardiac troponin I (cTnI), the gold standard biomarker for acute myocardial infarction, target-specific monoclonal antibody-conjugated gold nanoclusters. The successful detection of cTnI antigen in clinically relevant concentration with a low detection limit of 0.91 ng mL was achieved. The specific molecular interaction between the cTnI antigen and its monoclonal antibody tagged at the surface of gold nanoclusters has restricted the free rotation of gold nanoclusters and increased the FA value. This incremental increase in FA can be correlated to the concentration of cTnI antigen in the sample, thereby achieving the quantitative linear detection of cTnI.

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Source
http://dx.doi.org/10.1039/d4ay01240bDOI Listing

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