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荷瘤小鼠体内凝集素灌注研究:微米级分辨率、微血管标记的大面积映射,区分肿瘤中灌注效率高和低的微区域。

Lectin intravital perfusion studies in tumor-bearing mice: micrometer-resolution, wide-area mapping of microvascular labeling, distinguishing efficiently and inefficiently perfused microregions in the tumor.

作者信息

Debbage P L, Griebel J, Ried M, Gneiting T, DeVries A, Hutzler P

机构信息

Institutes for Histology and Embryology, University of Innsbruck, Austria.

出版信息

J Histochem Cytochem. 1998 May;46(5):627-39. doi: 10.1177/002215549804600508.

Abstract

Intravital lectin perfusion was combined with computer-guided scanning digital microscopy to map the perfused elements of the vasculature in tumor-bearing mice. High-precision composite images (spatial precision 1.3 micron and optical resolution 1.5 micron) were generated to permit exact positioning, reconstruction, analysis, and mapping of entire tumor cross-sections (c. 1 cm in diameter). Collation of these mosaics with nuclear magnetic resonance maps in the same tumor plane identified sites of rapid contrast medium uptake as tumor blood vessels. Digitized imaging after intravital double labeling allowed polychromatic visualization of two different types of mismatched staining. First, simultaneous application of two lectins, each bearing a different fluorochrome, revealed organ-specific differential processing in the microvascular wall. Second, sequential application of two boluses of one lectin, bearing different fluorochromes successively, distinguished between double-labeled microvessels, representing efficiently perfused vascular segments, and single-labeled microvessels, with inefficient or intermittent perfusion. Intravital lectin perfusion images of blood vessels in the vital functional state thus highlighted biologically significant differences in vessel function and served as high-resolution adjuncts to MR imaging.

摘要

将活体凝集素灌注与计算机引导的扫描数字显微镜相结合,以绘制荷瘤小鼠脉管系统的灌注成分。生成了高精度复合图像(空间精度为1.3微米,光学分辨率为1.5微米),以便对整个肿瘤横截面(直径约1厘米)进行精确定位、重建、分析和绘图。将这些镶嵌图像与同一肿瘤平面的核磁共振图谱进行比对,确定快速摄取造影剂的部位为肿瘤血管。活体双重标记后的数字化成像允许对两种不同类型的不匹配染色进行多色可视化。首先,同时应用两种带有不同荧光染料的凝集素,揭示了微血管壁中器官特异性的差异处理。其次,依次应用两剂带有不同荧光染料的同一种凝集素,区分了代表有效灌注血管段的双标记微血管和灌注效率低或间歇性灌注的单标记微血管。因此,处于重要功能状态的血管的活体凝集素灌注图像突出了血管功能的生物学显著差异,并作为磁共振成像的高分辨率辅助手段。

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