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Sensing a Sensor: Identifying the Mechanosensory Function of Primary Cilia

机译:传感传感器:识别原发纤毛的机械感觉功能

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Over the past decade, primary cilia have emerged as the premier means by which cells sense and transduce mechanical stimuli. Primary cilia are sensory organelles that have been shown to be vitally involved in the mechanosensation of urine in the renal nephron, bile in the hepatic biliary system, digestive fluid in the pancreatic duct, dentin in dental pulp, lacunocanalicular fluid in bone and cartilage, and blood in vasculature. The prevalence of primary cilia among mammalian cell types is matched by the tremendously varied disease states caused by both structural and functional defects in cilia. In the process of delineating the mechanisms behind these disease states, calcium fluorimetry has been widely utilized as a means of quantifying ciliary function to both fluid flow and pharmacological agents. In this review, we will discuss the approaches used in associating calcium levels to cilia function.
机译:在过去的十年中,原发纤毛已经成为细胞感知和传导机械刺激的主要手段。原发性纤毛是感觉细胞器,已被证实与肾脏的尿液机械感觉,肝胆系统的胆汁,胰管中的消化液,牙髓中的牙本质,骨和软骨的泌尿系统液,血管中的血液。在纤毛细胞类型中,原发性纤毛的患病率与纤毛的结构性和功能性缺陷引起的多种疾病状态相匹配。在描述这些疾病状态背后的机制的过程中,钙荧光法已被广泛用作量化对流体流动和药理作用的睫毛功能的手段。在这篇综述中,我们将讨论将钙水平与纤毛功能联系起来的方法。

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