Plasmonic nanoantennas provide unique opportunities for precise control of light–matter coupling in surface-enhanced infrared absorption(SEIRA)spectroscopy,but most of the resonant systems realized so far suffer from...Plasmonic nanoantennas provide unique opportunities for precise control of light–matter coupling in surface-enhanced infrared absorption(SEIRA)spectroscopy,but most of the resonant systems realized so far suffer from the obstacles of low sensitivity,narrow bandwidth,and asymmetric Fano resonance perturbations.Here,we demonstrated an overcoupled resonator with a high plasmon-molecule coupling coefficient(μ)(OC-Hμresonator)by precisely controlling the radiation loss channel,the resonator-oscillator coupling channel,and the frequency detuning channel.We observed a strong dependence of the sensing performance on the coupling state,and demonstrated that OC-Hμresonator has excellent sensing properties of ultra-sensitive(7.25%nm^(−1)),ultra-broadband(3–10μm),and immune asymmetric Fano lineshapes.These characteristics represent a breakthrough in SEIRA technology and lay the foundation for specific recognition of biomolecules,trace detection,and protein secondary structure analysis using a single array(array size is 100×100μm^(2)).In addition,with the assistance of machine learning,mixture classification,concentration prediction and spectral reconstruction were achieved with the highest accuracy of 100%.Finally,we demonstrated the potential of OC-Hμresonator for SARS-CoV-2 detection.These findings will promote the wider application of SEIRA technology,while providing new ideas for other enhanced spectroscopy technologies,quantum photonics and studying light–matter interactions.展开更多
Objective:To explore the possible mechanism of Huoxue Yiqi recipe promoting angiogenesis by targeting VEGF with miR-484.Methods:The model of miR-484 overexpressed in HUVEC was prepared and intervened with Huoxue Yiqi ...Objective:To explore the possible mechanism of Huoxue Yiqi recipe promoting angiogenesis by targeting VEGF with miR-484.Methods:The model of miR-484 overexpressed in HUVEC was prepared and intervened with Huoxue Yiqi Recipe Freeze-dried powder.The effects of Huoxue Yiqi Recipe on proliferation,migration and tubular forming ability of HUVEC were separatly detected by CCK-8 method,cell scratch test and Matrigel three-dimensional forming test in vitro.The effect of Huoxue Yiqi Recipe on VEGFA mRNA expression was detected by real-time fluorescence quantitative PCR.Results:Compared with the control group,the proliferation and migration area of cells in miR-484 overexpression model group decreased,the length,number of branches and nodes involved in tube formation decreased,the tube formation ability decreased significantly,and the expression level of VEGFA mRNA decreased,with statistical significance.Compared with the model group,the cell proliferation ability,migration area,length,number of branches and nodes involved in tube formation,tube formation ability and expression level of VEGFA mRNA in the Huoxue Yiqi Prescription group were up-regulated,and the difference was statistically significant(P<0.05).Conclusion:MiR-484 inhibits the expression of VEGFA and the proliferation,migration and formation of HUVEC,and Huoxue Yiqi recipe has a certain negative regulation effect on this process,which may be a new target of Huoxue Yiqi recipe to promote angiogenesis.展开更多
基金supported by A*STAR under the“Nanosystems at the Edge”program(Grant No.A18A4b0055)Ministry of Education(MOE)under the research grant of R-263-000-F18-112/A-0009520-01-00+1 种基金National Research Foundation Singapore grant CRP28-2022-0038the Reimagine Re-search Scheme(RRSC)Project(Grant A-0009037-02-00&A0009037-03-00)at National University of Singapore.
文摘Plasmonic nanoantennas provide unique opportunities for precise control of light–matter coupling in surface-enhanced infrared absorption(SEIRA)spectroscopy,but most of the resonant systems realized so far suffer from the obstacles of low sensitivity,narrow bandwidth,and asymmetric Fano resonance perturbations.Here,we demonstrated an overcoupled resonator with a high plasmon-molecule coupling coefficient(μ)(OC-Hμresonator)by precisely controlling the radiation loss channel,the resonator-oscillator coupling channel,and the frequency detuning channel.We observed a strong dependence of the sensing performance on the coupling state,and demonstrated that OC-Hμresonator has excellent sensing properties of ultra-sensitive(7.25%nm^(−1)),ultra-broadband(3–10μm),and immune asymmetric Fano lineshapes.These characteristics represent a breakthrough in SEIRA technology and lay the foundation for specific recognition of biomolecules,trace detection,and protein secondary structure analysis using a single array(array size is 100×100μm^(2)).In addition,with the assistance of machine learning,mixture classification,concentration prediction and spectral reconstruction were achieved with the highest accuracy of 100%.Finally,we demonstrated the potential of OC-Hμresonator for SARS-CoV-2 detection.These findings will promote the wider application of SEIRA technology,while providing new ideas for other enhanced spectroscopy technologies,quantum photonics and studying light–matter interactions.
基金National Natural Science Foundation Project(No.81973780)。
文摘Objective:To explore the possible mechanism of Huoxue Yiqi recipe promoting angiogenesis by targeting VEGF with miR-484.Methods:The model of miR-484 overexpressed in HUVEC was prepared and intervened with Huoxue Yiqi Recipe Freeze-dried powder.The effects of Huoxue Yiqi Recipe on proliferation,migration and tubular forming ability of HUVEC were separatly detected by CCK-8 method,cell scratch test and Matrigel three-dimensional forming test in vitro.The effect of Huoxue Yiqi Recipe on VEGFA mRNA expression was detected by real-time fluorescence quantitative PCR.Results:Compared with the control group,the proliferation and migration area of cells in miR-484 overexpression model group decreased,the length,number of branches and nodes involved in tube formation decreased,the tube formation ability decreased significantly,and the expression level of VEGFA mRNA decreased,with statistical significance.Compared with the model group,the cell proliferation ability,migration area,length,number of branches and nodes involved in tube formation,tube formation ability and expression level of VEGFA mRNA in the Huoxue Yiqi Prescription group were up-regulated,and the difference was statistically significant(P<0.05).Conclusion:MiR-484 inhibits the expression of VEGFA and the proliferation,migration and formation of HUVEC,and Huoxue Yiqi recipe has a certain negative regulation effect on this process,which may be a new target of Huoxue Yiqi recipe to promote angiogenesis.