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[中耳胆脂瘤中的血管生成]

[Angiogenesis in cholesteatoma of the middle ear].

作者信息

Bujía J, Holly A, Stammberger M, Sudhoff H

机构信息

Cátedra de ORL, Ludwig-Maximilians, Universidad de Munich.

出版信息

Acta Otorrinolaringol Esp. 1996 May-Jun;47(3):187-92.

PMID:8924281
Abstract

Middle ear cholesteatoma is characterized by the presence of a keratinizing squamous epithelium with hyperproliferative features. Such growth can only be supported by abundant blood vessels. The presence and distribution of blood vessels in cholesteatoma was studied to determine the mechanisms responsible for its origin and maintenance. Cholesteatoma (n = 30) and retroauricular skin samples (n = 30) were studied with indirect immunoperoxidase and alkaline phosphatase anti-alkaline phosphatase methods. Antibodies were used to recognize endothelial cells (von Willebrand Factor VII), vascular basal membrane components (type VI collagen), intercellular adhesion molecules (ICAM-1, 1CAM-2), human histocompatibility antigen (HLA-II) as a marker for cellular activation, angiogenetic growth factors and their receptors (TGF-alpha and VEGF), lymphocytes (CD3), and macrophages (KiM8). The cholesteatoma stroma had numerous vessels with intact basal membrane. The vessel concentration was higher in regions with abundant macrophage infiltration. Perivascular cell infiltrates were positive for antibodies against angiogenetic factors and HLA-II. Endothelial cells had increased expression of intercellular adhesion molecules and angiogenetic growth factor receptors. These results confirm the presence of increased vascularization in cholesteatoma, which may play an important role in sustaining continuous abnormal growth.

摘要

中耳胆脂瘤的特征是存在具有增殖特性的角化鳞状上皮。这种生长只能由丰富的血管来支持。研究胆脂瘤中血管的存在和分布,以确定其起源和维持的机制。采用间接免疫过氧化物酶法和碱性磷酸酶抗碱性磷酸酶法对30例胆脂瘤和30例耳后皮肤样本进行研究。使用抗体识别内皮细胞(血管性血友病因子VII)、血管基底膜成分(VI型胶原)、细胞间粘附分子(ICAM-1、ICAM-2)、作为细胞活化标志物的人类组织相容性抗原(HLA-II)、血管生成生长因子及其受体(TGF-α和VEGF)、淋巴细胞(CD3)和巨噬细胞(KiM8)。胆脂瘤基质中有许多基底膜完整的血管。巨噬细胞浸润丰富的区域血管浓度更高。血管周围细胞浸润对血管生成因子和HLA-II抗体呈阳性。内皮细胞的细胞间粘附分子和血管生成生长因子受体表达增加。这些结果证实胆脂瘤中血管化增加,这可能在维持持续异常生长中起重要作用。

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