Cilia Flagella

Cilia and flagella are membrane-bound, microtubule-based extensions that enable many cells to move or transport material, making them central to cellular organization and biology. Their internal axoneme typically contains a 9+2 arrangement of microtubules, where dynein motor proteins use ATP to generate sliding between adjacent microtubule doublets; structural constraints convert this sliding into bending. Cilia usually beat in coordinated patterns to move fluid across cell surfaces, while flagella often propel cells through liquid. Studying these organelles clarifies cell motility, sensory signaling, development, and the biological consequences of defects in their structure or function.

Cilia Flagella - Related Videos

Research

JoVE Journal - Developmental Biology

Using Primary Neurosphere Cultures to Study Primary Cilia

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Cited by 3 •

2017

The primary cilium is fundamentally important in neural progenitor cell proliferation, neuronal differentiation, and adult neuronal function. Here, we describe a method to study ciliogenesis and the trafficking of signaling proteins to cilia in neural stem/progenitor cells and differentiated neurons using primary neurosphere cultures.

Education

JoVE Core - Microbiology

Flagella and Motility in Bacteria

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2025

Flagella are specialized, thread-like structures that extend from a bacteria's cell envelope. They play a crucial role in motility and chemotaxis. Their structural organization and functioning exemplify sophisticated biological engineering, enabling bacterial survival and adaptability in diverse environments.Structure of the FlagellumA bacterial flagellum consists of three key components: the filament, the hook, and basal body. The filament, a long, helical structure composed of repeating...

Ex vivo Method for High Resolution Imaging of Cilia Motility in Rodent Airway Epithelia

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Cited by 49 •

2013

An easy and reliable technique for visualizing and quantifying airway cilia motility and cilia generated flow using mouse trachea is described. This technique can be modified to determine how a wide range of factors influence cilia motility, including pharmacological agents, genetic factors, environmental exposures, and/or mechanical factors such as mucus load.

Whole Mount Labeling of Cilia in the Main Olfactory System of Mice

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Cited by 13 •

2014

Cilia of olfactory sensory neurons contain proteins of the signal transduction cascade, but a detailed spatial analysis of their distribution is difficult in cryosections. We describe here an optimized approach for whole mount labeling and en face visualization of ciliary proteins.

Simple Detection of Primary Cilia by Immunofluorescence

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Cited by 5 •

2020

Primary cilia are extracellular structures associated with the centriole. Primary cilia detection by immunofluorescent staining is a relatively simple procedure that results in extremely high-quality images. In this protocol, fibroblasts expressing primary cilia were fixed, immunostained, and imaged in a fluorescent or confocal microscope.

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