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Synthesis of Diboronic Acid-Based Fluorescent Probes for the Sensitive Detection of Glucose in Aqueous Media and Biological Matrices. | LitMetric

Synthesis of Diboronic Acid-Based Fluorescent Probes for the Sensitive Detection of Glucose in Aqueous Media and Biological Matrices.

ACS Sens

State Key Laboratory of Medicinal Chemical Biology, College of Pharmacy and KLMDASR of Tianjin, Nankai University, Tongyan Road, Haihe Education Park, Tianjin 300350, China.

Published: April 2021

AI Article Synopsis

  • Reliable glucose detection is crucial for clinical diagnosis and research, and fluorescent probes like anthracene-based diboronic acid (P-DBA) offer an efficient method for this.
  • The study modifies P-DBA by adding different substituents, with the cyano-substituted probe (CN-DBA) showing the best glucose-binding capacity and improved solubility in water.
  • CN-DBA proved effective for detecting glucose in biological samples such as cell lysates and plasma, demonstrating high sensitivity and precision, making it a promising tool for glucose assays.

Article Abstract

Reliable and accurate glucose detection in biological samples is of great importance in clinical diagnosis and medical research. Chemical probes are advantageous in simple operation and flexible design, especially for the development of fluorescent probes. Anthracene-based diboronic acid (P-DBA) has shown potential in glucose probing because of its high sensitivity. However, poor solubility limits its applications in aqueous media. In this work, we systemically modify P-DBA by introducing fluoro (F-), chloro (Cl-), methoxyl (MeO-), or cyano (CN-) substituents. Among these probes, the cyano-substituted probe (CN-DBA) displays the highest glucose-binding constant (6489.5 M, 33% MeOH). More importantly, it shows good water solubility in the aqueous solution (0.5% MeOH), with ultrasensitive recognition with glucose (LOD = 1.51 μM) and robust sensing from pH 6.0 to 9.0. Based on these features, the CN-DBA is finally applied to detect glucose in cell lysates and plasma, with satisfactory recovery and precision. These results demonstrate that CN-DBA could serve as an accurate, sensitive fluorescent probe for glucose assays in biological samples.

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Source
http://dx.doi.org/10.1021/acssensors.0c02217DOI Listing

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