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发育中小鼠肺中黏附受体的表达模式:功能意义

Expression patterns of adhesion receptors in the developing mouse lung: functional implications.

作者信息

Buck C A, Edelman J M, Buck C E, Kennedy G, Baldwin H S

机构信息

Wistar Institute, Philadelphia, PA 19104, USA.

出版信息

Cell Adhes Commun. 1996 Aug;4(2):69-87. doi: 10.3109/15419069609010764.

Abstract

A detailed, immunohistological study of mouse lung development from the first appearance of primary lung buds off the laryngo tracheal groove through the formation of the mature, adult lung has been carried out using monoclonal antibodies specific for endothelial cells, smooth muscle cells, adhesion receptors and markers of mature endothelial cell function. These included mAbs specific for PECAM-1, alpha-smooth muscle actin, ICAM-1, ICAM-2, VCAM-1, alpha 4 and alpha 6 integrin subunits, thrombomodulin and factor VIII. The results document a dynamic pattern of receptor expression and indicate that the expansion of the pulmonary vascular system may take place by both angiogenic and vasculogenic processes. They further document differences in receptor expression by vascular and airway smooth muscle. ICAM-1 expression was primarily extravascular during development. The expression patterns of alpha 4 integrin and its counter receptor VCAM-1 lacked the complementarity that might be expected if they were functioning as a receptor/counter-receptor pair in lung development. Thrombomodulin expression patterns support a major role for the thrombin/ thrombomodulin system in lung development. The expression of thrombomodulin only at sites of airway branching suggests that the thrombin/thrombomodulin system could play a pivotal, regulatory role in branching morphogenesis.

摘要

利用针对内皮细胞、平滑肌细胞、黏附受体和成熟内皮细胞功能标志物的单克隆抗体,对小鼠肺从喉气管沟处首次出现初级肺芽直至成熟成年肺形成的过程进行了详细的免疫组织学研究。这些抗体包括针对PECAM - 1、α - 平滑肌肌动蛋白、ICAM - 1、ICAM - 2、VCAM - 1、α4和α6整合素亚基、血栓调节蛋白和因子VIII的单克隆抗体。结果记录了受体表达的动态模式,并表明肺血管系统的扩张可能通过血管生成和血管发生过程进行。它们进一步记录了血管和平滑肌受体表达的差异。在发育过程中,ICAM - 1的表达主要在血管外。α4整合素及其配体VCAM - 1的表达模式缺乏在肺发育中作为受体/配体对发挥作用时可能预期的互补性。血栓调节蛋白的表达模式支持凝血酶/血栓调节蛋白系统在肺发育中起主要作用。血栓调节蛋白仅在气道分支部位表达,这表明凝血酶/血栓调节蛋白系统可能在分支形态发生中起关键的调节作用。

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