Molecular engineering of a fluorescent probe for highly efficient detection of human serum albumin in biological fluid

被引:0
作者
Chinnappan, Raja [1 ,2 ]
Mir, Tanveer Ahmad [1 ,2 ]
Easwaramoorthi, Shanmugam [3 ]
Sunil, Gopika [4 ]
Feba, Ancy [4 ]
Kanagasabai, Balamurugan [4 ]
Wani, Shadil Ibrahim [5 ]
Sandouka, Maram N. [6 ]
Alzhrani, Alaa [1 ,2 ,7 ]
Devanesan, Sandhanasamy [8 ]
AlSalhi, Mohamad S. [8 ]
Mani, Naresh Kumar [9 ]
Al-Kattan, Wael [1 ]
Yaqinuddin, Ahmed [1 ]
Assiri, Abdullah M. [1 ,2 ]
Broering, Dieter C. [1 ,2 ]
机构
[1] College of Medicine, Alfaisal University, Riyadh
[2] Tissue/Organ Bioengineering & BioMEMS Laboratory, Organ Transplant Centre of 10 Excellence (TR&I-Dpt), King Faisal Specialist Hospital and Research Centre, 11211, Riyadh
[3] Inorganic & Physical Chemistry Lab, CSIR-Central Leather Research Institute, Sardar Patel Road, Adyar, Chennai
[4] Advanced Material Lab, CSIR-Central Leather Research Institute, Sardar Patel Road, Adyar, Chennai
[5] Division of Biomedical System Engineering, Graduate School of Science and Engineering for Education, University of Toyama, 3190 Gofuku, Toyama
[6] Department of Chemistry, University of Quebec at Montreal, Montreal, H3C3P8, QC
[7] Department of Medical Laboratory Technology, Faculty of Applied Medical Sciences, King Abdulaziz University, Jeddah
[8] Department of Physics and Astronomy, College of Science, King Saud University, P. O. Box 8 2455, Riyadh
[9] Microfluidics, Sensors and Diagnostics (μSenD) Laboratory, Centre for Microfluidics, Biomarkers, Photoceutics and Sensors (μBioPS), Department of Biotechnology, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal
来源
Sensors International | 2025年 / 6卷
关键词
Clinically relevant detection; Electrostatic interaction; Fluorescent sensing probe; Human serum albumin; Liver diseases;
D O I
10.1016/j.sintl.2024.100304
中图分类号
学科分类号
摘要
Human serum albumin (HSA) is synthesized by the liver, accounting for 60 % of total plasma protein in vertebrates' blood. It is the most predominant extracellular plasma protein that acts as a repository and transporter of exogenous and endogenous substances in the blood of healthy humans. Decreased albumin concentration in the human body or its abnormal levels indicate the occurrence of hepatic, renal, and digestive-related diseases. Therefore, accurate quantification of HSA is of great significance in diagnostic testing and routine clinical analysis of albumin-linked diseases. Herein, a class of triphenylamine rhodanine-3-acetic acid (mRA)-a bifunctional fluorescent molecule with twisted intramolecular charge transfer (TICT)-induced emission characteristics is synthesized and employed as a novel sensing probe for the fluorescent detection of human albumin. mRA can be selectively lighted up through site-specific interactions with serum albumin-binding moieties and show enhanced photophysical or biological response efficacy. Understanding the interaction of mRA with HSA at the molecular level was carried out using docking methodology to explore the site-specific interaction phenomenon. The resulting fluorescence strategy produced a dose-dependent signal response enhancement upon interaction with HSA in the concentration range of 0.01–400 μg/ml. The sensor probe exhibits a low detection limit of 10 ng/mL and is found to be a feasible, low-cost, and effective approach for HSA analysis in complex biological fluids for early detection and diagnosis of albumin-related diseases. © 2024 The Authors
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