首页> 外文期刊>American Journal of Physiology >The receptor for advanced glycation end-products supports lung tissue biomechanics.
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The receptor for advanced glycation end-products supports lung tissue biomechanics.

机译:晚期糖基化终产物的受体支持肺组织的生物力学。

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摘要

The receptor for advanced glycation end-products (RAGE) and its soluble forms are predominantly expressed in lung but its physiological importance in this organ is not yet fully understood. Since RAGE acts as a cell adhesion molecule, we postulated its physiological importance in the respiratory mechanics. Respiratory function in a buffer-perfused isolated lung system and biochemical parameters of the lung were studied in young, adult, and old RAGE knockout (RAGE-KO) mice and wild-type (WT) mice. Lungs from RAGE-KO mice showed a significant increase in the dynamic lung compliance and a decrease in the maximal expiratory air flow independent of age-related changes. We also determined lower mRNA and protein levels of elastin in lung tissue of RAGE-KO mice. RAGE deficiency did not influence the collagen protein level, lung capillary permeability, and inflammatory parameters (TNF-alpha, high-mobility group box protein 1) in lung. Overexpressing RAGE as well as soluble RAGE in lung fibroblasts or cocultured lung epithelial cells increased the mRNA expression of elastin. Moreover, immuno-precipitation studies indicated a trans interaction of RAGE in lung epithelial cells. Our findings suggest the physiological importance of RAGE and its soluble forms in supporting the respiratory mechanics in which RAGE trans interactions and the influence on elastin expression might play an important role.
机译:晚期糖基化终产物(RAGE)的受体及其可溶形式主要在肺中表达,但尚未充分了解其在该器官中的生理重要性。由于RAGE充当细胞粘附分子,因此我们推测其在呼吸力学中的生理重要性。在年轻,成年和年老的RAGE基因敲除(RAGE-KO)小鼠和野生型(WT)小鼠中研究了缓冲液灌注的隔离肺系统中的呼吸功能和肺的生化参数。 RAGE-KO小鼠的肺表现出动态的肺顺应性显着增加,并且最大的呼气气流减少,与年龄相关的变化无关。我们还确定了RAGE-KO小鼠肺组织中弹性蛋白的mRNA和蛋白水平较低。 RAGE缺乏症不会影响胶原蛋白水平,肺毛细血管通透性和肺部炎症参数(TNF-α,高迁移率族盒蛋白1)。肺成纤维细胞或共培养的肺上皮细胞中过表达的RAGE以及可溶性RAGE增加了弹性蛋白的mRNA表达。此外,免疫沉淀研究表明RAGE在肺上皮细胞中具有反式相互作用。我们的发现表明,RAGE及其可溶形式在支持呼吸力学中的生理重要性,其中RAGE反式相互作用和对弹性蛋白表达的影响可能起重要作用。

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