As a kind of bioactive sulfur species, biothiols (Cys, Hcy, and GSH) play an irreplaceable role in regulating the redox balance of life processes. Because of their similar chemical structures and properties, a sulfydryl group, and an amino group, it is an important challenge to distinguish two or more of them at the same time. Herein, a fluorescent sensor () based on the coumarin structure was developed to discriminate Cys/Hcy and GSH simultaneously. The sensor has no fluorescence due to the d-PET effect but displays strong fluorescence after its reaction with biothiols. There are two potential reaction sites (nitrophenyl sulfide group and aldehyde group) in the structure of , resulting in different fluorescent signal changes after reacting with biothiols (green for Cys and Hcy and red for GSH). Under double-wavelength excitation, the sensor shows low background fluorescence, high selectivity, and low detection limits toward biothiols. Moreover, the sensor can be used to discriminate different biothiols (Cys/Hcy and GSH) in cells and zebra fish by different fluorescence signals with low toxicity and might provide a promising tool for studying the roles of different biothiols in various physiological and pathological processes.
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http://dx.doi.org/10.1021/acs.analchem.0c04100 | DOI Listing |
J Mater Chem B
January 2025
Department of General Surgery, The Second Xiangya Hospital, Central South University, Changsha, China.
Sulfur-containing small molecules, mainly including cysteine (Cys), homocysteine (Hcy), glutathione (GSH), and hydrogen sulfide (HS), are crucial biomarkers, and their levels in different body locations (living cells, tissues, blood, urine, saliva, ) are inconsistent and constantly changing. Therefore, it is highly meaningful and challenging to synchronously and accurately detect them in complex multi-component samples without mutual interference. In this work, we propose a steric hindrance-regulated probe, NBD-2FDCI, with single excitation dual emissions to achieve self-adaptive detection of four analytes.
View Article and Find Full Text PDFAnal Chem
January 2025
College of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan 410083, China.
Discerning and quantifying the critical biothiols cysteine (Cys), homocysteine (Hcy), and glutathione (GSH) are vital for understanding their synergistic roles in biological systems. In this study, we synthesized a series of phenylethynylcoumarin fluorescent probes with varied structures to investigate the mechanisms underlying biothiol detection. We found that different substituents (-OCH, -H, -CN) at the -position of the phenylacetylene, combined with an aldehyde group at the 3-position of the coumarin, significantly affected the probes' reactivity and produced distinct response patterns toward biothiols.
View Article and Find Full Text PDFJ Chromatogr B Analyt Technol Biomed Life Sci
January 2025
The Affiliated Lianyungang Hospital of Xuzhou Medical University/Department of Pharmacy, Lianyungang First People's Hospital, Jiangsu, Lianyungang 222006, PR China. Electronic address:
The study introduces a robust analytical method based on UPLC-MS/MS for quantifying thiol amino acids, including cysteine (Cys), cysteinylglycine (CG), homocysteine (Hcy), and glutathione (GSH), in their total and total free forms within human plasma. An optimized blank matrix was employed for accurate quantification of endogenous compounds. The method exhibited excellent linearity, precision, accuracy, recovery, and stability, making it highly suitable for plasma analysis.
View Article and Find Full Text PDFAnal Methods
January 2025
Bio-organic Laboratory, Department of Chemistry, University of Delhi, Delhi 110007, India.
Here, we present the development of a pyranopyrazole-based chemosensor (P1) that serves as a reliable colorimetric chemosensor for the identification of biothiols, namely glutathione (GSH), homocysteine (Hcy), and cysteine (Cys). We extensively studied the interaction of P1 with several amino acids (Cys, Ala, His, Ile, Leu, Lys, Ser, Trp, Val, Pro, Phe, Arg) and other biothiols (Hcy and GSH) using colorimetric methods and UV-visible spectroscopy. The results indicated that P1 endures a visible color change in the presence of biothiols, rendering it a practical tool for detection.
View Article and Find Full Text PDFFood Chem
February 2025
Institute for Advanced Study, Shenzhen University, Shenzhen 518060, PR China. Electronic address:
Sulfur-containing representative HSO/SO, HS, and biothiols (Cys, Hcy, and GSH) present in food items and biological organisms have raised substantial global concerns about food safety due to their reactivity and potential health implications. Adhering to international health standards is essential for these compounds; in particular, plenty of challenges exist in ensuring product quality in the beverage industry. Many fluorescent probes are being employed in various spectroscopic techniques and have developed rapidly to selectively detect sulfur-related species in food products and bio-sensing for cell imaging.
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