论文标题
共聚焦干涉中红外光热显微镜对单个病毒的振动光谱检测
Vibrational Spectroscopic Detection of Single Virus by a Confocal Interferometric Mid-Infrared Photothermal Microscope
论文作者
论文摘要
我们报告了共聚焦干涉率中海光热(MIP)显微镜及其应用于将生物纳米颗粒无标记为单个病毒水平的无标记检测。我们应用干涉散射原理来检测病毒颗粒中红外吸收引起的弱光热效应。我们用两种病毒验证了这种方法,即囊泡口腔炎病毒(VSV)和痘病毒。通过MIP显微镜产生的单个病毒光谱在同一组中显示出很高的一致性,其主要峰由酰胺I和酰胺II振动贡献。 VSV和Poxvirus之间这两个峰的比率显着差异,突出了使用MIP显微镜进行病毒颗粒的无标记分化的潜力。这种全光学成像方法为以无标记的方式为生物纳米颗粒的光谱检测开辟了一种新方法,并可能有助于预测和控制新兴病毒菌株的暴发。
We report a confocal interferometric mid-infrared photothermal (MIP) microscope and its application to label-free detection of biological nanoparticles down to single virus level. We apply the interferometric scattering principle to detect the weak photothermal effect induced by infrared absorption in a viral particle. We validated this method with two kinds of viruses, namely the vesicular stomatitis virus (VSV) and poxvirus. The single virus spectra generated by MIP microscopy show high consistency in the same group, with dominant peaks contributed by the amide I and amide II vibrations. The ratio of these two peaks are significantly different between VSV and poxvirus, highlighting the potential of using MIP microscopy for label-free differentiation of viral particles. This all-optical chemical imaging method opens a new way for spectroscopic detection of biological nanoparticles in a label-free manner and may facilitate in predicting and controlling outbreaks of emerging virus strains.