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活细胞外基质中弹性纤维降解的免疫细胞化学研究。

Immunocytochemical study of the degradation of elastic fibers in a living extracellular matrix.

作者信息

Morris S M, Stone P J

机构信息

Biochemistry Department, Boston University School of Medicine, Massachusetts, USA.

出版信息

J Histochem Cytochem. 1995 Nov;43(11):1145-53. doi: 10.1177/43.11.7560897.

Abstract

We used ultrastructural and immunocytochemical technique to follow the movement of human neutrophil elastase (HNE) and porcine pancreatic elastase (PPE) through a living extracellular matrix produced by cultured smooth muscle cells and to compare the effect of the two elastases on elastic fibers in situ. Although both enzymes solubilize elastin purified from these cultures at similar rates, PPE solubilized 11.5 times more elastin from the intact cultures than did HNE. The difference in the rate of elastin solubilization from the cultures parallels the degree of elastic fiber degradation and the emphysema-inducing potency of the two elastases when they are instilled into animal lungs. Immunohistochemical studies employing antibodies to HNE and PPE revealed that PPE penetrates the smooth muscle cell cultures more readily than does HNE. Because the amount of elastin in these cultures increases with increasing distance from the free surface, the lesser amounts of elastin solubilized by HNE may be partly due to poor penetration of HNE into the living extracellular matrix, resulting in limited access to elastin substrate. Ultrastructural and immunocytochemical studies indicated, however, that even when HNE does have access to elastin substrate, it is less efficient than PPE at penetrating and degrading individual elastic fibers.

摘要

我们运用超微结构和免疫细胞化学技术,追踪人中性粒细胞弹性蛋白酶(HNE)和猪胰弹性蛋白酶(PPE)在培养的平滑肌细胞产生的活细胞外基质中的移动情况,并比较这两种弹性蛋白酶对原位弹性纤维的影响。尽管两种酶以相似的速率溶解从这些培养物中纯化的弹性蛋白,但与HNE相比,PPE从完整培养物中溶解的弹性蛋白多11.5倍。从培养物中溶解弹性蛋白的速率差异与弹性纤维降解程度以及将这两种弹性蛋白酶注入动物肺部时的致肺气肿能力平行。使用针对HNE和PPE的抗体进行的免疫组织化学研究表明,PPE比HNE更容易穿透平滑肌细胞培养物。由于这些培养物中弹性蛋白的量随着距自由表面距离的增加而增加,HNE溶解的弹性蛋白量较少可能部分是由于HNE对活细胞外基质的穿透性较差,导致其接触弹性蛋白底物的机会有限。然而,超微结构和免疫细胞化学研究表明,即使HNE能够接触弹性蛋白底物,在穿透和降解单个弹性纤维方面,它也不如PPE有效。

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