Zhang_2023_Spectrochim.Acta.A.Mol.Biomol.Spectrosc_308_123708

Reference

Title : An ultrasensitive and selective near-infrared fluorescent probe for tracking carboxylesterases with large Stokes shift in living cells and mice - Zhang_2023_Spectrochim.Acta.A.Mol.Biomol.Spectrosc_308_123708
Author(s) : Zhang W , Qi C , Wang X , Fu Z , Zhang J , Zhou Y , Wang Y
Ref : Spectrochim Acta A Mol Biomol Spectrosc , 308 :123708 , 2023
Abstract :

Carboxylesterases (CEs) play great role in CEs-related diseases and drug metabolism. Selectively monitoring its activity is important to explore its role in CEs-related diseases and drug combination. Herein, a new "turn-on" near-infrared (NIR) fluorescent probe (CHY-1) was reported with large Stokes shift (145 nm) for CEs detection. Dicyanoisophorone-based derivative was chosen as NIR fluorophore and 4-bromobutyrate was the identifying group. What's more, CHY-1 exhibited ultra-sensitivity (LOD - 9.2 x 10(-5) U/mL), high selectivity against Acetylcholinesterase (AChE), Butyrylcholinesterase (BChE) and Chymotrypsin for CEs fluorescence detection under physiological pH and temperature. Furthermore, CHY-1 showed little effect on cell viability at high concentration and featured good optical imaging character for the slight change of CEs activity induced by 5-Fu (5-Fluorouridine, anti-tumor drug) and CEs inhibitor in living cells. Moreover, CHY-1 was also used to detect the activity and distribution of CEs in mice. Taken together, CHY-1 had widely applicable value in the diagnosis of CEs-related diseases and drug combination.

PubMedSearch : Zhang_2023_Spectrochim.Acta.A.Mol.Biomol.Spectrosc_308_123708
PubMedID: 38042124

Related information

Citations formats

Zhang W, Qi C, Wang X, Fu Z, Zhang J, Zhou Y, Wang Y (2023)
An ultrasensitive and selective near-infrared fluorescent probe for tracking carboxylesterases with large Stokes shift in living cells and mice
Spectrochim Acta A Mol Biomol Spectrosc 308 :123708

Zhang W, Qi C, Wang X, Fu Z, Zhang J, Zhou Y, Wang Y (2023)
Spectrochim Acta A Mol Biomol Spectrosc 308 :123708