骨桥蛋白
钙化
病理
新生内膜
细胞外基质
血管
病变
内皮
Von Kossa染色
血管平滑肌
化学
细胞生物学
再狭窄
生物
医学
生物化学
免疫学
内科学
平滑肌
支架
酶
碱性磷酸酶
作者
Edward R. O’Brien,Michael R. Garvin,Douglas K. Stewart,Tomoaki Hinohara,John B. Simpson,Stephen M. Schwartz,Cecilia M. Giachelli
出处
期刊:Arteriosclerosis and thrombosis
[Ovid Technologies (Wolters Kluwer)]
日期:1994-10-01
卷期号:14 (10): 1648-1656
被引量:317
标识
DOI:10.1161/01.atv.14.10.1648
摘要
How an atherosclerotic plaque evolves from minimal diffuse intimal hyperplasia to a critical lesion is not well understood. Cellular proliferation is a relatively infrequent and modest event in both primary and restenotic coronary atherectomy specimens, leading us to believe that other processes, such as the formation of extracellular matrix, cell migration, neovascularization, and calcification might be more important for lesion formation. The investigation of proteins that are overexpressed in plaque compared with the normal vessel wall may provide clues that will help determine which of these processes are key to lesion pathogenesis. One such molecule, osteopontin (OPN), is an arginine-glycine-aspartate-containing acidic phosphoprotein recently shown to be a novel component of human atherosclerotic plaques and selectively expressed in the rat neointima following balloon angioplasty. Using in situ hybridization and immunohistochemical methods, we demonstrate that in addition to macrophages, smooth muscle and endothelial cells synthesize OPN mRNA and protein in human coronary atherosclerotic plaque specimens obtained by directional atherectomy. In contrast, OPN mRNA and protein were not detected in nondiseased vessel walls. Furthermore, extracellular OPN protein collocalized with sites of early calcification in the plaque that were identified with a sensitive modification of the von Kossa staining technique. These findings, combined with studies showing that OPN has adhesive, chemotactic, and calcium-binding properties, suggest that OPN may contribute to cellular accumulations and dystrophic calcification in atherosclerotic plaques.
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