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Primary cilia and kidney injury: current research status and future perspectives

机译:原发性纤毛和肾脏损伤:当前研究现状和未来展望

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摘要

Cilia, membrane-enclosed organelles protruding from the apical side of cells, can be divided into two classes: motile and primary cilia. During the past decades, motile cilia have been intensively studied. However, it was not until the 1990s that people began to realize the importance of primary cilia as cellular-specific sensors, particularly in kidney tubular epithelial cells. Furthermore, accumulating evidence indicates that primary cilia may be involved in the regulation of cell proliferation, differentiation, apoptosis, and planar cell polarity. Many signaling pathways, such as Wnt, Notch, Hedgehog, and mammalian target of rapamycin, have been located to the primary cilia. Thus primary cilia have been regarded as a hub that integrates signals from the extracellular environment. More importantly, dysfunction of this organelle may contribute to the pathogenesis of a large spectrum of human genetic diseases, named ciliopathies. The significance of primary cilia in acquired human diseases such as hypertension and diabetes has gradually drawn attention. Interestingly, recent reports disclosed that cilia length varies during kidney injury, and shortening of cilia enhances the sensitivity of epithelial cells to injury cues. This review briefly summarizes the current status of cilia research and explores the potential mechanisms of cilia-length changes during kidney injury as well as provides some thoughts to allure more insightful ideas and promotes the further study of primary cilia in the context of kidney injury.
机译:纤毛是从细胞的顶端伸出的膜状细胞器,可分为两类:活动性和原发性纤毛。在过去的几十年中,对运动性纤毛进行了深入研究。然而,直到1990年代,人们才开始意识到纤毛作为细胞特异性传感器的重要性,尤其是在肾小管上皮细胞中。此外,越来越多的证据表明原发纤毛可能参与细胞增殖,分化,凋亡和平面细胞极性的调节。许多信号传导途径,例如Wnt,Notch,Hedgehog和雷帕霉素的哺乳动物靶标,都位于原发纤毛上。因此,原发纤毛被认为是整合来自细胞外环境的信号的枢纽。更重要的是,该细胞器的功能障碍可能会导致多种人类遗传性疾病(称为纤毛病)的发病。原发纤毛在获得性人类疾病如高血压和糖尿病中的重要性已逐渐引起人们的关注。有趣的是,最近的报道揭示了纤毛长度在肾脏损伤期间会发生变化,纤毛的缩短会增强上皮细胞对损伤线索的敏感性。这篇综述简要概述了纤毛的研究现状,并探讨了肾脏损伤过程中纤毛长度变化的潜在机制,并提供了一些想法以吸引更多有见地的想法,并促进了在肾损伤背景下原发性纤毛的进一步研究。

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