An electrochemiluminescence biosensor for the detection of soybean agglutinin based on carboxylated graphitic carbon nitride as luminophore.

Anal Bioanal Chem

Key Laboratory of Luminescence and Real-Time Analytical Chemistry (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, Chongqing, 400715, China.

Published: September 2019

AI Article Synopsis

  • Soybean agglutinin (SBA) is a glycoprotein linked to toxicity and tumor analysis, prompting the need for sensitive detection methods.
  • A novel biosensor was developed using electrochemiluminescence (ECL) with carboxylated carbon nitride and D-galactosamine for the selective detection of SBA on a modified glassy carbon electrode.
  • This biosensor demonstrated high sensitivity with a linear detection range of 1.0 ng/mL to 10 µg/mL and a detection limit of 0.33 ng/mL, offering a straightforward method for SBA detection.

Article Abstract

As an important glycoprotein of the lectin family, soybean agglutinin (SBA) is an anti-nutritional factor with considerable toxic and side effects and plays a significant role in tumor analysis. In order to achieve the sensitive detection of SBA, a sandwich-structured electrochemiluminescence (ECL) biosensor was constructed using carboxylated carbon nitride (C-g-CN) as luminophore and D-galactosamine (galM) as a recognition element. A glassy carbon electrode (GCE) was modified with Au nanoparticles (Au NPs) for capturing the galM via Au-N bond, and further capturing the target SBA by specific recognition between galM and SBA. In the presence of SBA, the composite C-g-CN-galM was immobilized onto the electrode. With the increase in the concentration of SBA, the ECL signal from C-g-CN increased, thus achieving a signal-on detection of SBA. The linear range of the biosensor was 1.0 ng/mL~10 μg/mL and detection limit for SBA was as low as 0.33 ng/mL. In this construction strategy, C-g-CN not only acted as an excellent signal probe, but also as an immobilization matrix to easily achieve a high loading of the small molecule recognition element galM. This strategy provides a simple alternative SBA detection platform. Graphical abstract.

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Source
http://dx.doi.org/10.1007/s00216-019-01986-wDOI Listing

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