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使用多视角反射显微镜实现具有各向同性分辨率的六维单分子成像。

Six-Dimensional Single-Molecule Imaging with Isotropic Resolution using a Multi-View Reflector Microscope.

作者信息

Zhang Oumeng, Guo Zijian, He Yuanyuan, Wu Tingting, Vahey Michael D, Lew Matthew D

机构信息

Department of Electrical and Systems Engineering.

Department of Biomedical Engineering.

出版信息

Nat Photonics. 2023 Feb;17(2):179-186. doi: 10.1038/s41566-022-01116-6. Epub 2022 Dec 5.

Abstract

Imaging both the positions and orientations of single fluorophores, termed single-molecule orientation-localisation microscopy, is a powerful tool to study biochemical processes. However, the limited photon budget associated with single-molecule fluorescence makes high-dimensional imaging with isotropic, nanoscale spatial resolution a formidable challenge. Here, we realise a radially and azimuthally polarized multi-view reflector (raMVR) microscope for the imaging of the 3D positions and 3D orientations of single molecules, with precision of 10.9 nm and 2.0° over a 1.5 μm depth range. The raMVR microscope achieves 6D super-resolution imaging of Nile red (NR) molecules transiently bound to lipid-coated spheres, accurately resolving their spherical morphology despite refractive-index mismatch. By observing the rotational dynamics of NR, raMVR images also resolve the infiltration of lipid membranes by amyloid-beta oligomers without covalent labelling. Finally, we demonstrate 6D imaging of cell membranes, where the orientations of specific fluorophores reveal heterogeneity in membrane fluidity. With its nearly isotropic 3D spatial resolution and orientation measurement precision, we expect the raMVR microscope to enable 6D imaging of molecular dynamics within biological and chemical systems with exceptional detail.

摘要

对单个荧光团的位置和方向进行成像,即单分子取向定位显微镜,是研究生化过程的有力工具。然而,与单分子荧光相关的有限光子预算使得具有各向同性、纳米级空间分辨率的高维成像成为一项艰巨挑战。在此,我们实现了一种径向和方位角偏振多视图反射器(raMVR)显微镜,用于对单分子的三维位置和三维方向进行成像,在1.5μm深度范围内精度可达10.9nm和2.0°。raMVR显微镜实现了对瞬时结合在脂质包被球体上的尼罗红(NR)分子的六维超分辨率成像,尽管存在折射率失配,仍能准确分辨其球形形态。通过观察NR的旋转动力学,raMVR图像还能在无需共价标记的情况下分辨淀粉样β寡聚体对脂质膜的渗透。最后,我们展示了细胞膜的六维成像,其中特定荧光团的方向揭示了膜流动性的异质性。凭借其近乎各向同性的三维空间分辨率和方向测量精度,我们预计raMVR显微镜能够以非凡的细节对生物和化学系统内的分子动力学进行六维成像。

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