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大分子跨动脉壁透壁浓度分布的可视化与定量分析。

Visualization and quantification of transmural concentration profiles of macromolecules across the arterial wall.

作者信息

Penn M S, Koelle M R, Schwartz S M, Chisolm G M

机构信息

Department of Vascular Cell Biology and Atherosclerosis Research, Cleveland Clinic Foundation, Ohio 44195.

出版信息

Circ Res. 1990 Jul;67(1):11-22. doi: 10.1161/01.res.67.1.11.

Abstract

Transport parameters that describe a macromolecule entering the arterial wall from plasma can be obtained from concentration profiles of the labeled macromolecule entering the tissue. A new technique has been developed for measuring such concentration profiles, which offers spatial resolution superior to methods that measure profiles of radiolabeled macromolecules by serially sectioning tissue in planes parallel to the endothelium. In addition, this new method preserves cellular organization and tissue structure and permits measurement of concentration profiles underlying focal endothelial injuries or vascular lesions. The technique quantifies the concentration of a protein by measuring associated peroxidase activity. Although the present study was performed using horseradish peroxidase (HRP), the same principles can be applied to other macromolecules linked to HRP or microperoxidase. The colored reaction product of HRP was detected in transverse aortic sections using an image processing system. In the present study, profiles obtained by this new method were validated by comparison with HRP concentration profiles in rat aortas obtained by a serial slicing technique using radiolabeled HRP. We used the technique to measure high-resolution HRP concentration profiles in the intima and media of normal animals. These concentration profiles suggest that the internal elastic lamina acts as a major barrier to transport of macromolecules across the wall of the normal rat aorta. The new method should allow concentration profiles for macromolecules to be quantified in tissue surrounding vessels in the microcirculation, within the thickened intima of large vessels, and across coronary artery walls.

摘要

描述大分子从血浆进入动脉壁的转运参数可从进入组织的标记大分子的浓度分布中获得。现已开发出一种用于测量此类浓度分布的新技术,该技术的空间分辨率优于通过在平行于内皮的平面上对组织进行连续切片来测量放射性标记大分子分布的方法。此外,这种新方法能保留细胞组织和组织结构,并允许测量局灶性内皮损伤或血管病变下方的浓度分布。该技术通过测量相关的过氧化物酶活性来量化蛋白质的浓度。尽管本研究使用辣根过氧化物酶(HRP)进行,但相同的原理可应用于与HRP或微过氧化物酶相连的其他大分子。使用图像处理系统在主动脉横切片中检测HRP的显色反应产物。在本研究中,通过将这种新方法获得的分布与使用放射性标记的HRP通过连续切片技术在大鼠主动脉中获得的HRP浓度分布进行比较,验证了该新方法。我们使用该技术测量正常动物内膜和中膜中的高分辨率HRP浓度分布。这些浓度分布表明,内弹性膜是大分子跨正常大鼠主动脉壁转运的主要屏障。这种新方法应能对微循环中血管周围组织、大血管增厚内膜内以及冠状动脉壁上的大分子浓度分布进行量化。

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