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血管内皮生长因子和成纤维细胞生长因子在中耳炎血管生成中的作用。

The role of vascular endothelial growth factors and fibroblast growth factors in angiogenesis during otitis media.

作者信息

Husseman Jacob, Palacios Sean D, Rivkin Alexander Z, Oehl Heinz, Ryan Allen F

机构信息

Department of Surgery/Otolaryngology, University of California, San Diego, USA.

出版信息

Audiol Neurootol. 2012;17(3):148-54. doi: 10.1159/000333805. Epub 2011 Nov 19.

Abstract

The middle ear response to otitis media includes transformation and hyperplasia of the mucosal epithelium and subepithelial connective tissue. Significant neovascularization is also noted, which occurs both to support the hypertrophied mucosa and to mediate the increased trafficking of leukocytes. We investigated the role of two known potent angiogenic growth factor families, the fibroblast growth factors (FGFs) and vascular endothelial growth factors (VEGFs), in middle ear mucosal angiogenesis. DNA microarrays were used to evaluate the expression of FGFs and VEGFs, as well as their receptors and unique signaling proteins, in the middle ears of mice undergoing a complete course of acute bacterial otitis media. In addition, a member of each family was introduced to the middle ear submucosal compartment of the normal middle ears of guinea pigs, by a continuous-release osmotic minipump system over 1 week. During the course of bacterial otitis media, a significant regulation of a number of genes important for angiogenesis was identified. Histologic evaluation of middle ear mucosa following micropump infusion of both FGF1 and VEGF-A showed significant angiogenesis at the site of infusion in comparison to control saline infusion. These results support a role for FGFs and VEGFs in the neovascularization of the middle ear mucosa during otitis media, and offer a potential avenue for therapeutic intervention.

摘要

中耳对中耳炎的反应包括黏膜上皮和上皮下结缔组织的转化与增生。还观察到显著的新生血管形成,其发生既是为了支持肥大的黏膜,也是为了介导白细胞运输的增加。我们研究了两种已知的强效血管生成生长因子家族,即成纤维细胞生长因子(FGFs)和血管内皮生长因子(VEGFs),在中耳黏膜血管生成中的作用。DNA微阵列用于评估经历完整急性细菌性中耳炎病程的小鼠中耳中FGFs和VEGFs及其受体和独特信号蛋白的表达。此外,通过持续释放渗透微型泵系统在1周内将每个家族的一个成员引入豚鼠正常中耳的黏膜下层。在细菌性中耳炎病程中,确定了许多对血管生成重要的基因的显著调控。与对照盐水注入相比,在微型泵注入FGF1和VEGF-A后对中耳黏膜进行组织学评估显示,注入部位有显著的血管生成。这些结果支持FGFs和VEGFs在中耳炎期间中耳黏膜新生血管形成中的作用,并为治疗干预提供了一条潜在途径。

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