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使用定制的双色受激发射损耗显微镜对分离的嗅觉感觉神经元中的纤毛微域进行超分辨率成像。

Super-resolution imaging of ciliary microdomains in isolated olfactory sensory neurons using a custom two-color stimulated emission depletion microscope.

机构信息

University of Colorado Denver Anschutz Medical Campus, Department of Bioengineering, MS 8607, 12700 East 19th Avenue, Aurora, Colorado 80045-2560, United States.

University of Colorado Denver Anschutz Medical Campus, Department of Cell and Developmental Biology, MS 8108, 12801 East 17th Avenue, Aurora, Colorado 80045-2560, United States.

出版信息

J Biomed Opt. 2016 Jun 1;21(6):66017. doi: 10.1117/1.JBO.21.6.066017.

Abstract

We performed stimulated emission depletion (STED) imaging of isolated olfactory sensory neurons (OSNs) using a custom-built microscope. The STED microscope uses a single pulsed laser to excite two separate fluorophores, Atto 590 and Atto 647N. A gated timing circuit combined with temporal interleaving of the different color excitation/STED laser pulses filters the two channel detection and greatly minimizes crosstalk. We quantified the instrument resolution to be ∼81 and ∼44  nm, for the Atto 590 and Atto 647N channels. The spatial separation between the two channels was measured to be under 10 nm, well below the resolution limit. The custom-STED microscope is incorporated onto a commercial research microscope allowing brightfield, differential interference contrast, and epifluorescence imaging on the same field of view. We performed immunolabeling of OSNs in mice to image localization of ciliary membrane proteins involved in olfactory transduction. We imaged Ca2+-permeable cyclic nucleotide gated (CNG) channel (Atto 594) and adenylyl cyclase type III (ACIII) (Atto 647N) in distinct cilia. STED imaging resolved well-separated subdiffraction limited clusters for each protein. We quantified the size of each cluster to have a mean value of 88±48  nm and 124±43  nm, for CNG and ACIII, respectively. STED imaging showed separated clusters that were not resolvable in confocal images.

摘要

我们使用定制的显微镜对分离的嗅觉感觉神经元 (OSN) 进行了受激发射耗竭 (STED) 成像。STED 显微镜使用单个脉冲激光激发两个单独的荧光团,Atto 590 和 Atto 647N。门控定时电路与不同颜色的激发/STED 激光脉冲的时间交错相结合,过滤两个通道的检测,并最大限度地减少串扰。我们将仪器分辨率量化为约 81nm 和 44nm,分别对应于 Atto 590 和 Atto 647N 通道。两个通道之间的空间分离测量值低于 10nm,远低于分辨率极限。该定制 STED 显微镜被整合到商用研究显微镜上,允许在同一视场中进行明场、微分干涉对比和荧光成像。我们对小鼠的 OSN 进行了免疫标记,以成像涉及嗅觉转导的纤毛膜蛋白的定位。我们对钙通透性环核苷酸门控 (CNG) 通道 (Atto 594) 和腺苷酸环化酶 III (ACIII) (Atto 647N) 在不同的纤毛中进行了成像。STED 成像很好地解析了每个蛋白的分离亚衍射限制簇。我们对每个簇的大小进行了量化,结果表明 CNG 和 ACIII 的平均簇大小分别为 88±48nm 和 124±43nm。STED 成像显示出在共聚焦图像中不可分辨的分离簇。

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