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用荧光显微镜测量麦胚凝集素的结合。

Measurement of wheat germ agglutinin binding with a fluorescence microscope.

机构信息

Department of Biological Sciences, Kent State University, Kent, Ohio 44242, USA.

出版信息

Cytometry A. 2009 Oct;75(10):874-81. doi: 10.1002/cyto.a.20787.

Abstract

Signal intensity in fluorescence microscopy is often measured relative to arbitrary standards. We propose a calibration method based on a solution of the same fluorophore, whose binding to cells needs to be quantified. The method utilizes the low sensitivity of intensity to the object distance in wide-field imaging of uniform materials. Liquid layers of slowly varying depth were prepared by immersing a spherical lens into a drop of a fluorophore placed on a slide. Flatfield-corrected images of the contact and surrounding areas showed linear dependence of the gray level on the depth of fluorescent liquid. This allowed conversion of the measured intensity into the number of molecules per unit area. The method was applied to different cell types stained by WGA-Alexa 488 and WGA-TRITC. Consistent results were obtained by comparing microscopy with flow cytometry, comparing imaging through different objectives and comparing different WGA conjugates. Reproducibility of calibration was within 97% when low magnification was used. Fluorescence of free and bound WGA was found to be different, however, and therefore precise measurement of the number of cell-bound molecules was problematic in this particular system. We conclude that the method achieves reliable measurement of cellular staining in the units of soluble fluorophore. For probes whose fluorescent properties are unaffected by binding, quantification of staining in true molecular units should be possible.

摘要

荧光显微镜中的信号强度通常相对于任意标准进行测量。我们提出了一种基于同一种荧光染料溶液的校准方法,该溶液的结合需要定量。该方法利用了在均匀材料的宽场成像中强度对物体距离的低敏感性。通过将球形透镜浸入放置在载玻片上的荧光染料液滴中,制备具有缓慢变化深度的液体层。接触区和周围区域的平场校正图像显示灰度级与荧光液体的深度呈线性关系。这允许将测量的强度转换为单位面积的分子数。该方法应用于通过 WGA-Alexa 488 和 WGA-TRITC 染色的不同细胞类型。通过比较显微镜与流式细胞术、通过不同物镜进行成像以及比较不同的 WGA 缀合物,获得了一致的结果。当使用低放大倍数时,校准的可重复性在 97%以内。然而,发现游离和结合的 WGA 的荧光不同,因此在该特定系统中精确测量细胞结合分子的数量存在问题。我们得出的结论是,该方法可以可靠地测量以可溶性荧光染料为单位的细胞染色。对于荧光性质不受结合影响的探针,应该可以在真实的分子单位中对染色进行定量。

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