研究目的
To develop a new specific G-quadruplex-probing technique using resonance light scattering (RLS)-based ratiometric recognition with cationic porphyrin derivatives for high specificity against single- and double-stranded DNAs, including long double-stranded ones, in the physiological pH range of 7.4-6.0.
研究成果
The study successfully developed the first RLS-based ratiometric probes for specific G-quadruplex recognition using cationic porphyrin derivatives, demonstrating high specificity against ssDNA and dsDNA across a physiological pH range. The probes showed superior performance in RLS mode compared to colorimetric and fluorescent modes, with applications in label-free microRNA sensing. This work expands the G-quadruplex probe family and provides a method for preparing high-charge porphyrins, offering potential for further research in nucleic acid analysis and biosensing.
研究不足
The RLS probing technique is limited to in vitro applications and may not directly translate to complex biological environments. The specificity, while high, could be affected by extreme pH conditions or high concentrations of interfering substances. The synthesis of porphyrins, though improved, may still require optimization for scalability.
1:Experimental Design and Method Selection:
The study involved synthesizing four water-soluble cationic porphyrin derivatives with large side arm substituents, including an unreported octa-cationic porphyrin, and evaluating their ability to act as RLS probes for G-quadruplex recognition. Methods included UV-vis absorption, fluorescence, and RLS spectroscopy, circular dichroism (CD) spectroscopy, and linear discriminant analysis (LDA).
2:Sample Selection and Data Sources:
DNA oligonucleotides (e.g., ssDNA, dsDNA, G-quadruplexes like KRAS, Oxy28, Hum24, C-MYC, CatG4, AS1411) and microRNAs (e.g., Let-7a) were purchased from Sangon Biotech Co. Ltd. Concentrations were determined using absorbance at 260 nm with molar extinction coefficients.
3:List of Experimental Equipment and Materials:
Equipment included SHIMADZU RF-5301PC spectrofluorimeter for RLS and fluorescence spectra, Cary 60 UV-vis spectrophotometer (Agilent Technologies) for absorption spectra, BioLogic MOS-45 spectropolarimeter for CD spectra, Mercury Vx-500 spectrometer for NMR, Varian 7.0T FT-MS mass spectrometer for FT-MS, and Bruker Autoflex III TOF/TOF 200 instrument for MALDI-TOF-MS. Materials included cationic porphyrin derivatives, DNA oligonucleotides, Tris-HCl buffer, KCl, Na2EDTA, and various chemical reagents.
4:0T FT-MS mass spectrometer for FT-MS, and Bruker Autoflex III TOF/TOF 200 instrument for MALDI-TOF-MS. Materials included cationic porphyrin derivatives, DNA oligonucleotides, Tris-HCl buffer, KCl, Na2EDTA, and various chemical reagents. Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: DNA solutions were prepared in buffer, heated, cooled, and incubated. Porphyrin was added, and spectra were recorded. For RLS, excitation and emission monochromators were scanned synchronously at Δλ = 0 nm. Titration experiments varied DNA concentration with constant porphyrin concentration. Job plot analysis varied molar fractions. MicroRNA sensing involved mixing oligonucleotides, adding target microRNA, incubating, and recording RLS spectra.
5:Data Analysis Methods:
RLS intensity ratios (e.g., I702/I652) were used for ratiometric recognition. LDA was applied using combined data from UV-vis, fluorescence, and RLS spectroscopy with Matlab programming. Statistical methods included calculating detection limits based on linear relationships.
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spectrofluorimeter
RF-5301PC
SHIMADZU
Recording RLS and fluorescence spectra
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UV-vis spectrophotometer
Cary 60
Agilent Technologies
Measuring UV-vis absorption spectra
Cary 60 UV-Vis Spectrophotometer
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MALDI-TOF mass spectrometer
Autoflex III TOF/TOF 200
Bruker
Conducting matrix-assisted laser desorption/ionization time-of-flight mass spectrometry
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spectropolarimeter
MOS-45
BioLogic
Recording circular dichroism (CD) spectra
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NMR spectrometer
Mercury Vx-500
Recording 1H-NMR and 13C-NMR spectra
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FT-MS mass spectrometer
Varian 7.0T FT-MS
Varian
Conducting Fourier transform mass spectrometry
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micro quartz cell
40 μl
Starna
Holding samples for spectroscopic measurements
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