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The regulatory mechanism of Hsp90alpha secretion from endothelial cells and its role in angiogenesis during wound healing.

机译:伤口愈合过程中内皮细胞Hsp90alpha分泌的调节机制及其在血管生成中的作用。

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Heat shock protein 90alpha (Hsp90alpha) is a ubiquitously expressed molecular chaperone, which is essential for the maintenance of eukaryote homeostasis. Hsp90alpha can also be secreted extracellularly and is associated with several physiological and pathological processes including wound healing, cancer, infectious diseases and diabetes. Angiogenesis, defined as the sprouting of new blood vessels from pre-existing capillaries via endothelial cell proliferation and migration, commonly occurs in and contributes to the above mentioned processes. However, the secretion of Hsp90alpha from endothelial cells and also its function in angiogenesis are still unclear. Here we investigated the role of extracellular Hsp90alpha in angiogenesis using dermal endothelial cells in vitro and a wound healing model in vivo. We find that the secretion of Hsp90alpha but not Hsp90beta is increased in activated endothelial cells with the induction of angiogenic factors and matrix proteins. Secreted Hsp90alpha localizes on the leading edge of endothelial cells and promotes their angiogenic activities, whereas Hsp90alpha neutralizing antibodies reverse the effect. Furthermore, using a mouse skin wound healing model in vivo, we demonstrate that extracellular Hsp90alpha localizes on blood vessels in granulation tissues of wounded skin and promotes angiogenesis during wound healing. Taken together, our study reveals that Hsp90alpha can be secreted by activated endothelial cells and is a positive regulator of angiogenesis, suggesting the potential application of Hsp90alpha as a stimulator for wound repair.
机译:热休克蛋白90alpha(Hsp90alpha)是一种普遍表达的分子伴侣,对于维持真核生物体内稳态至关重要。 Hsp90alpha也可以在细胞外分泌,并与多种生理和病理过程相关,包括伤口愈合,癌症,传染病和糖尿病。血管生成被定义为通过血管内皮细胞的增殖和迁移从先前存在的毛细血管中萌发的新血管,通常发生在上述过程中并对其做出贡献。然而,尚不清楚内皮细胞中Hsp90α的分泌及其在血管生成中的功能。在这里,我们调查了细胞外Hsp90alpha在体外使用真皮内皮细胞和体内伤口愈合模型在血管生成中的作用。我们发现激活血管内皮细胞中的Hsp90alpha而不是Hsp90beta的分泌随着血管生成因子和基质蛋白的诱导而增加。分泌的Hsp90alpha位于内皮细胞的前缘并促进其血管生成活性,而Hsp90alpha中和抗体则逆转该作用。此外,在体内使用小鼠皮肤伤口愈合模型,我们证明细胞外Hsp90alpha位于伤口皮肤肉芽组织中的血管上,并在伤口愈合过程中促进血管生成。综上所述,我们的研究表明,Hsp90alpha可以由活化的内皮细胞分泌,并且是血管生成的正向调节剂,表明Hsp90alpha作为伤口修复刺激剂的潜在应用。

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