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首页> 外文期刊>Urology >Immunohistochemical comparison of vascular and sinusoidal adherens junctions in cavernosal endothelium.
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Immunohistochemical comparison of vascular and sinusoidal adherens junctions in cavernosal endothelium.

机译:海绵体内皮中血管和正弦黏附连接的免疫组织化学比较。

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OBJECTIVES: To characterize endothelial cell-to-cell junctions in the sinusoids and microvasculature of the corpus cavernosum. METHODS: Corporal tissue was obtained from 6 potent human subjects, cut into 5-microm cryosections, and double-labeled with consecutive applications of primary and secondary antibodies. Laser scanning confocal microscopy identified subcellular localization of endothelial anchoring and adhesion molecules. Fluorescence intensity was rated as strong, weak, or absent by two observers. RESULTS: The cavernosal endothelial adherens junction was composed of vascular endothelial cadherin, alpha-catenin, plakoglobin, vinculin, and the regulatory proteins beta-catenin and ZO-1. Adherens junctions in sinusoids were elongated, redundant, and narrow versus short, dense, linear cell-to-cell contacts in small arterioles and venules. Vinculin expression along the basal interface of the endothelium and stroma was weak in the sinusoids and strong in the arterioles. Definite sinusoidal expression of CD31 and CD34 was noted. P-selectin was only expressed within the cavernosal microvessels. CONCLUSIONS: The regulatory and structural proteins extending from vascular endothelial cadherin provide immunohistochemical evidence of a role for adherens junctions in cavernosal endothelial barrier function and cellular homeostasis. The sinusoidal endothelium has a unique junctional phenotype consistent with its blood trapping function. Differential expression of functional proteins in sinusoidal and microvascular endothelium may reflect segmental variation in hemodynamic exposure to pressure, stretch, or flow.
机译:目的:表征海绵体的正弦曲线和微脉管系统中的内皮细胞间连接。方法:从6位有力的人类受试者获得体组织,将其切成5微米的冰冻切片,并通过连续应用一抗和二抗进行双重标记。激光扫描共聚焦显微镜鉴定了内皮锚定和粘附分子的亚细胞定位。两名观察员将荧光强度评定为强,弱或不存在。结果:海绵体内皮粘附连接由血管内皮钙黏着蛋白,α-catenin,plakoglobin,vincinin,调节蛋白β-catenin和ZO-1组成。与小动脉和小静脉中短而致密的线性细胞间接触相比,正弦曲线中的粘附连接是细长的,冗余的和狭窄的。沿内皮和基质基底界面的长春花蛋白表达在正弦曲线中较弱,在小动脉中较强。注意到CD31和CD34的明确正弦表达。 P-选择蛋白仅在海绵体微血管中表达。结论:从血管内皮钙粘着蛋白延伸的调节蛋白和结构蛋白提供了免疫组织化学证据,表明粘附连接在海绵体内皮屏障功能和细胞稳态中的作用。正弦血管内皮具有与其血液捕获功能一致的独特的连接表型。正弦和微血管内皮中功能蛋白的差异表达可能反映了血液动力学暴露于压力,拉伸或血流中的节段变化。

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