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Updated: Jul 12, 2026

Analysis of Gene Function and Visualization of Cilia-Generated Fluid Flow in Kupffer's Vesicle
Published on: March 31, 2013
Removal of the MDCK cell primary cilium abolishes flow sensing
1Water and Salt Research Center, IEKF, University of Aarhus, Brendstrupgaardsvej, DK8200 Aarhus N, Denmark. helle.praetorius@iekf.au.dk
Abstract:
The hypothesis that cell primary cilium is solely responsible for the flow-induced Ca2+ response in MDCK cells was tested by removal of the cilia from mature, responsive cells. Incubation of the cells with 4 mM chloral hydrate for 68 hours resulted in the complete loss of the primary cilia and in disorganization of microtubules, as visualized by immunofluorescence. When intracellular Ca2+ concentration was measured with Fluo-4, the elevation that normally accompanies an increase in fluid flow was abolished after 20 hours exposure to chloral hydrate. At this time, the primary cilia still remained attached to the cells but had become twisted and flexible. Twenty-four hours after return of the deciliated cells to normal medium, intracellular microtubule organization appeared normal, but primary cilia had not yet been expressed. The cells failed to increase intracellular Ca2+ in response to fluid flow until after they had been in normal medium for 120 hours, at which time the primary cilia were 3-4 microm long. Chloral hydrate did not impair the Ca2+ mobilization machinery, as the Ca2+ response to mechanical contact and the spread to neighboring cells was unaffected by the drug. We conclude that the primary cilium is the only sensor for the flow-induced Ca2+ response in MDCK cells and estimate that a single mechanically sensitive channel in the cilium could provide the requisite Ca2+ influx.
Insights
The primary cilium acts as the sole sensor for fluid flow-induced calcium (Ca2+) responses in MDCK cells. Removing cilia abolishes this response, which is restored only after cilia regrowth.
Area of Science:
- Cell Biology
- Biophysics
Background:
- The primary cilium is an organelle involved in cellular signaling.
- Its role in mechanosensation, particularly fluid flow-induced calcium (Ca2+) responses, is under investigation.
Purpose of the Study:
- To test the hypothesis that the primary cilium is solely responsible for the flow-induced Ca2+ response in Madin-Darby canine kidney (MDCK) cells.
Main Methods:
- MDCK cells were treated with chloral hydrate to induce deciliation.
- Immunofluorescence was used to visualize primary cilia and microtubules.
- Intracellular Ca2+ concentration was measured using Fluo-4 under varying fluid flow conditions.
Main Results:
- Chloral hydrate treatment led to complete loss of primary cilia and microtubule disorganization.
- The flow-induced Ca2+ elevation was abolished in deciliated cells.
- The Ca2+ response to mechanical contact remained unaffected, indicating the mobilization machinery was intact.
- Restoration of the flow-induced Ca2+ response correlated with primary cilia regrowth.
Conclusions:
- The primary cilium is the exclusive sensor for flow-induced Ca2+ responses in MDCK cells.
- A single mechanosensitive channel in the primary cilium may mediate the Ca2+ influx.
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