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一种从共聚焦 3D 图像评估人体骨骼肌毛细血管的新方法。

A novel method for evaluation of capillarity in human skeletal muscles from confocal 3D images.

机构信息

Department of Biomathematics, Institute of Physiology, Academy of Sciences of the Czech Republic, v.v.i., Prague, Czech Republic.

出版信息

Microvasc Res. 2011 Mar;81(2):231-8. doi: 10.1016/j.mvr.2010.11.012. Epub 2010 Dec 9.

Abstract

A well developed capillary bed is essential for proper function of skeletal muscles. We present for the first time a triple immunofluorescent method suitable for staining capillaries and muscle fibre outlines in thick sections of human skeletal muscle, applying antibodies against collagen IV (in red) and F8 (in green) as well as Ulex europaeus lectin, visualized in green fluorescence. Further, we present possibilities for quantitative evaluation of the capillary network which implies the length of capillaries per unit volume of muscle tissue (Lcap/Vmuscle) and the length of capillaries supplying individual muscle fibres per unit fibre length (Lcap/Lfib), per surface area (Lcap/Sfib) and per volume (Lcap/Vfib) as well as the course of capillaries in the muscle. The latter can be described by the tortuosity, orientation and mean capillary length. To get reasonable results we met the following requirements: i) high quality thick tissue sections, from which 3D image data were acquired; ii) immunofluorescent methods suitable for confocal microscopy; iii) penetration of the fluorescent dyes throughout the tissue section; iv) proper 3D image analysis methods for performing reliable measurements and v) control over relevant tissue deformations. The developed methodology is illustrated by results obtained from autopsy or biopsy samples of three human muscles, i.e. vastus lateralis, multifidus and masseter muscle that exhibit differences in genetic background, innervation, tasks and functional activity.

摘要

发育良好的毛细血管床对于骨骼肌的正常功能至关重要。我们首次提出了一种三重免疫荧光方法,适用于在人体骨骼肌的厚切片中染色毛细血管和肌纤维轮廓,应用针对胶原蛋白 IV(红色)和 F8(绿色)的抗体以及美洲商陆凝集素(绿色荧光)。此外,我们还提出了定量评估毛细血管网络的可能性,这意味着单位肌肉组织体积的毛细血管长度(Lcap/Vmuscle)和每条肌纤维供应的毛细血管长度(Lcap/Lfib)、单位纤维长度的毛细血管长度(Lcap/Sfib)和单位体积的毛细血管长度(Lcap/Vfib)以及毛细血管在肌肉中的走向。后者可以通过毛细血管的曲折度、方向和平均毛细血管长度来描述。为了获得合理的结果,我们满足了以下要求:i)高质量的厚组织切片,从中获取 3D 图像数据;ii)适用于共聚焦显微镜的免疫荧光方法;iii)荧光染料贯穿整个组织切片的渗透;iv)用于进行可靠测量的适当 3D 图像分析方法;v)控制相关组织变形。所开发的方法学通过取自三个人体肌肉(股外侧肌、多裂肌和咬肌)的尸检或活检样本的结果来说明,这些肌肉在遗传背景、神经支配、任务和功能活动方面存在差异。

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