研究目的
Investigating the role of lipophilicity in enhancing the anticancer efficacy and selectivity of gold(I)-NHC complexes through structural modifications.
研究成果
Pharmacomodulation by replacing aliphatic with aromatic linkers increased lipophilicity and enhanced cytotoxicity of gold(I)-NHC complexes against cancer cells, with GI50 values below 500 nM. Complex 11 showed high selectivity and efficacy across multiple cancer types, involving TrxR inhibition and ROS-dependent cell death. Future work should focus on improving selectivity and conducting in vivo studies.
研究不足
The study is limited to in vitro experiments; in vivo efficacy and toxicity not assessed. Increased lipophilicity improved cytotoxicity but reduced selectivity in some cases, indicating need for further optimization. Only one complex (11) was selected for detailed mechanistic studies, limiting broad conclusions.
1:Experimental Design and Method Selection:
Synthesis of four new mononuclear cationic gold(I) complexes with nitrogen-functionalized N-heterocyclic carbenes (NHCs) by replacing aliphatic linkers with aromatic ones to increase lipophilicity. Characterization using spectroscopic methods (NMR, HRMS, elemental analysis) and X-ray crystallography.
2:Sample Selection and Data Sources:
Cancer cell lines (PC-3 prostate, T24 bladder, A549 lung, U-2 OS osteosarcoma, MCF-7 breast, HepG2 liver) and non-cancerous cell lines (MC3T3 osteoblasts, NIH3T3 fibroblasts) were used for in vitro cytotoxicity assays.
3:List of Experimental Equipment and Materials:
Bruker AV400 spectrometer for NMR, Thermo Finnigan MAT 95 XL spectrometer for HRMS, microplate reader (Promega E7031) for MTT assay, ICP-AES (Thermo Scientific iCAP 6300 DUO) for gold quantification, and various chemicals from commercial suppliers.
4:Experimental Procedures and Operational Workflow:
Synthesis of proligands and complexes via transmetalation pathway; cytotoxicity assessed using MTT assay after 72h treatment; clonogenic assays for colony formation; cellular uptake measured by ICP-AES; TrxR inhibition and ROS generation assays performed.
5:Data Analysis Methods:
GI50 values calculated from dose-response curves using nonlinear regression (Prism 5 software); statistical analysis with means ± SEM from three independent experiments.
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Bruker AV400 spectrometer
AV400
Bruker
Recording 1H and 13C NMR spectra for characterization of compounds.
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Thermo Scientific iCAP 6300 DUO spectrometer
iCAP 6300 DUO
Thermo Scientific
Performing inductively coupled plasma atomic emission spectroscopy (ICP-AES) for gold quantification in cellular uptake studies.
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Thermo Finnigan MAT 95 XL spectrometer
MAT 95 XL
Thermo Finnigan
Performing high-resolution mass spectrometry (HRMS) using electrospray ionization (ESI).
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Promega microplate reader
E7031
Promega
Measuring absorbance for MTT assay to assess cell viability.
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Ag2O
Commercial supplier
Used as a mild base for deprotonation in synthesis of silver precursor complexes.
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Au(SMe2)Cl
Commercial supplier
Gold source for transmetalation in synthesis of gold(I) complexes.
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MTT reagent
Sigma-Aldrich
Used in colorimetric assay to determine cell viability and cytotoxicity.
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DCFH-DA
Sigma-Aldrich
Fluorogenic dye for measuring intracellular reactive oxygen species (ROS) levels.
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DTNB
Sigma-Aldrich
Substrate for assessing thioredoxin reductase (TrxR) inhibition.
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