研究目的
Investigating the synthesis and characterization of imidazopyridine-based copper(II) complexes as optical imaging probes for L-cysteine in cancer cells, with a focus on selectivity and efficiency.
研究成果
The copper(II) complex with a p-methoxy substituent (probe 2) showed selective and efficient turn-on fluorescence for L-cysteine, with low cytotoxicity and successful imaging in cancer cells. The nearly perfect trigonal plane geometry facilitates faster reduction and selectivity, making it a promising optical probe for cysteine detection in biological systems.
研究不足
The study is limited to specific copper(II) complexes and may not generalize to other metal complexes. The selectivity is high for L-cysteine but lower for other thiols like glutathione and homocysteine due to higher pKa values. The experiments were conducted in controlled laboratory conditions, and in vivo applications were not explored.
1:Experimental Design and Method Selection:
The study involved designing and synthesizing copper(II) complexes with imidazopyridine-based ligands to act as turn-on fluorescence probes for L-cysteine. Methods included synthesis, characterization using various spectroscopic techniques, and biological assays.
2:Sample Selection and Data Sources:
Ligands L1-L4 were synthesized from substituted benzaldehydes and di-pyridin-2-yl-methanone. Copper(II) complexes 1-4 were prepared by reacting Cu(SO3CF3)2 with the ligands. Biological studies used HeLa cells and macrophages.
3:List of Experimental Equipment and Materials:
Equipment included JEOL X-band spectrometer for EPR, Bruker spectrometer for NMR, Thermo Scientific Exactive Plus EMR for HR-MS, Heraeus Vario Elemental analyzer for elemental analysis, Nicolet 6700 for FT-IR, Agilent Technologies diode array 8453 for absorption spectra, Agilent Technologies Cary Eclipse for emission spectra, Biologic SP-150 Electrochemical Workstation for CV, Agilent Technologies Supernova-E CCD diffractometer for X-ray crystallography, Carl Zeiss laser scanning microscope (LSM 710) for cell imaging. Materials included various chemicals from Sigma-Aldrich and Merck.
4:Experimental Procedures and Operational Workflow:
Synthesis of ligands and complexes, characterization by NMR, HR-MS, EPR, X-ray crystallography, electronic spectra, redox studies, fluorescence studies, MTT assay for cytotoxicity, and laser scanning fluorescence microscopy for cell imaging.
5:Data Analysis Methods:
Data were analyzed using simulation software for EPR, Gaussian 09 for DFT calculations, and standard statistical methods for binding constants and detection limits.
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Spectrometer
JES-FA100
JEOL
Recording EPR spectra
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NMR Spectrometer
400 MHz
Bruker
Recording NMR spectra
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Mass Spectrometer
Exactive Plus EMR
Thermo Scientific
High-resolution mass spectrometry
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Elemental Analyzer
Vario Elemental
Heraeus
Elemental analysis
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Absorption Spectrometer
Diode array 8453
Agilent Technologies
Electronic absorption spectra
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Fluorometer
Cary Eclipse
Agilent Technologies
Emission spectra
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Diffractometer
Supernova-E CCD
Agilent Technologies
X-ray crystallography
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Laser Scanning Microscope
LSM 710
Carl Zeiss
Fluorescence microscopy for cell imaging
ZEISS LSM 990 Spectral Multiplex
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FT-IR Spectrometer
Nicolet 6700
Nicolet
Infrared spectroscopy
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Electrochemical Workstation
SP-150
Biologic
Cyclic voltammetry
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