研究目的
To synthesize and explore the photophysical and photobiological properties of a series of heteroleptic [Ir(N^N)2(N^N)']3+ complexes with neutral diimine ligands, focusing on the impact of extended π-conjugation on triplet excited states and their application as photosensitizers for photodynamic therapy and antimicrobial activities.
研究成果
The synthesized heteroleptic Ir(III) complexes exhibit tunable photophysical properties with long-lived triplet excited states, enabling efficient ROS generation. Complexes 3 and 5 show high phototoxicity towards cancer cells and bacteria under visible light, with minimal dark toxicity, making them promising for photodynamic therapy. Future work should focus on shifting absorption to longer wavelengths for improved therapeutic applications.
研究不足
The complexes have limited absorption in the red/NIR region, reducing effectiveness with red light activation. Solubility decreases with increased π-conjugation, and synthesis yields vary. Biological studies were in vitro, and extrapolation to in vivo requires further investigation.
1:Experimental Design and Method Selection:
The study involved synthesizing heteroleptic Ir(III) complexes with various substituted phenanthroline ligands to investigate their photophysical properties and photobiological activities. Methods included synthesis, characterization (NMR, HRMS, elemental analysis), photophysical measurements (UV-vis absorption, emission, transient absorption), computational methods (DFT, TD-DFT), and in vitro biological assays (cytotoxicity, photocytotoxicity, ROS generation, bacterial survival).
2:Sample Selection and Data Sources:
Complexes 1-6 were synthesized using [Ir(phen)2OTf2]OTf as precursor and different substituted phenanthrolines. Samples were prepared in spectroscopic grade solvents for photophysical studies, and biological assays used SK-MEL-28 human melanoma cells and bacterial strains (S. aureus, S. mutans).
3:List of Experimental Equipment and Materials:
Equipment included Bruker-400 NMR spectrometer, Waters Synapt G2-Si Mass Spectrometer, Varian Cary?50 spectrophotometer, Jobin-Yvon FluoroMax-4 fluorometer/phosphorometer, Edinburgh LP920 laser flash photolysis spectrometer, Nano ZS Zetasizer, PTI Quantamaster with NIR PMT, confocal microscope. Materials included reagents and solvents from commercial sources, DCFDA dye for ROS assays, resazurin for cell viability.
4:Experimental Procedures and Operational Workflow:
Synthesis involved refluxing in 1,2-dichlorobenzene, purification by washing and centrifugation. Photophysical measurements were conducted in degassed acetonitrile. Biological assays involved cell culture, dosing with complexes, light irradiation, and fluorescence detection.
5:Data Analysis Methods:
Data were analyzed using Gaussian09 and NWChem for computational studies, with statistical analysis for biological assays (e.g., EC50 determination).
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容-
NMR Spectrometer
Bruker-400
Bruker
Recording 1H NMR spectra for characterization of synthesized complexes.
-
Photomultiplier Tube
Hamamatsu R928
Hamamatsu
Detecting emission signals.
-
Laser Flash Photolysis Spectrometer
Edinburgh LP920
Edinburgh
Measuring nanosecond transient absorption spectra and decays.
-
Nd:YAG Laser
Quantel Brilliant
Quantel
Providing excitation source for transient absorption measurements.
-
Zetasizer
Nano ZS
Malvern Instrument Ltd
Performing dynamic light scattering measurements.
-
NIR PMT
Hamamatsu R5509-42
Hamamatsu
Detecting near-infrared emission for singlet oxygen measurements.
-
Mass Spectrometer
Waters Synapt G2-Si
Waters
Performing high-resolution mass analyses.
-
Spectrophotometer
Varian Cary?50
Varian
Recording ultraviolet-visible (UV-vis) absorption spectra.
-
Fluorometer/Phosphorometer
Jobin-Yvon FluoroMax-4
Jobin-Yvon
Measuring steady-state emission spectra and emission lifetimes.
-
PTI Quantamaster
PTI
Equipped with NIR PMT for singlet oxygen quantum yield measurements.
-
Confocal Microscope
Imaging cells for confocal microscopy studies.
-
登录查看剩余9件设备及参数对照表
查看全部