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热适应大鼠唾液腺中水通道蛋白表达的上调。

Upregulation of aquaporin expression in the salivary glands of heat-acclimated rats.

机构信息

1] Department of Physiology, Graduate School of Medical Science, Kanazawa University [2] Department of Environmental Physiology, School of Medicine, Shimane University.

出版信息

Sci Rep. 2013;3:1763. doi: 10.1038/srep01763.

Abstract

It is known that aquaporin (AQP) 5 expression in the apical membrane of acinar cells in salivary glands is important for the secretion of saliva in rodents and humans. Although heat acclimation enhances saliva secretion in rodents, the molecular mechanism of how heat induces saliva secretion has not been determined. Here, we found that heat acclimation enhanced the expression of AQP5 and AQP1 in rat submandibular glands concomitant with the promotion of the HIF-1α pathway, leading to VEGF induction and CD31-positive angiogenesis. The apical membrane distribution of AQP5 in serous acinar cells enhanced after heat acclimation, while AQP1 expression was restricted to the endothelial cells in the submandibular glands. A network of AQPs may be involved in heat-acclimated regulation in saliva secretion. Because AQPs probably plays a crucial role in saliva secretion in humans, these findings may lead to a novel strategy for treating saliva hyposecretion.

摘要

已知水通道蛋白(AQP)5 在唾液腺腺泡细胞顶膜的表达对啮齿动物和人类的唾液分泌很重要。尽管热适应增强了啮齿动物的唾液分泌,但热如何诱导唾液分泌的分子机制尚未确定。在这里,我们发现热适应增强了大鼠颌下腺中 AQP5 和 AQP1 的表达,同时促进了 HIF-1α 通路,导致 VEGF 的诱导和 CD31 阳性血管生成。热适应后,浆液性腺泡细胞顶膜上的 AQP5 分布增强,而 AQP1 的表达局限于颌下腺的内皮细胞。AQP 的网络可能参与了热适应调节唾液分泌。因为 AQP 可能在人类的唾液分泌中起关键作用,这些发现可能为治疗唾液分泌不足提供一种新的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3820/3743064/11f723f8c526/srep01763-f1.jpg

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