Tubulin Imaging

Tubulin imaging is the visualization of tubulin proteins and the microtubule networks they form, providing a way to study cytoskeletal organization in neurons. Researchers use fluorescent tags, labeled antibodies, or live-cell probes to detect tubulin, while time-lapse imaging can reveal microtubule assembly, disassembly, and movement within axons and dendrites. In neuroscience, these approaches help characterize neuronal development, polarity, axonal transport, and structural responses to injury or disease. By linking microtubule organization with neuronal morphology and function, tubulin imaging supports research into neurodevelopment, neurodegeneration, and mechanisms that regulate cellular connectivity.

Tubulin Imaging - Related Videos

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JoVE EoE - Neuroimaging

Second Harmonic Generation Imaging in a Rat Model to Study Tubulin Defects

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2025

Source: Piazza, V., et al., Label-Free Non-Linear Optics for the Study of Tubulin-Dependent Defects in Central Myelin. J. Vis. Exp. (2023)This video demonstrates the procedure for imaging microtubule abnormalities in a rat brain tissue slice using a two-photon excitation microscope. It employs second harmonic generation (SHG) signals to detect tubulin defects and reduced myelin production.

Research

JoVE Journal - Biochemistry
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Optimizing Tubulin Yield from Porcine Brain Tissue

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2024

This protocol describes a technique for the high-yield isolation of tubulin from the porcine brain optimized for small-scale instrumentation. The isolation procedures are complemented by procedures for determining tubulin polymerization activity in vitro using co-sedimentation assays and transmission electron microscopy.

Label-Free Non-Linear Optics for the Study of Tubulin-Dependent Defects in Central Myelin

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2023

In this article, we present a protocol to detect microtubule-loaded oligodendrocytes in a model of tubulinopathy through a simple, innovative second harmonic generation microscopy approach.

Cell Death Associated with Abnormal Mitosis Observed by Confocal Imaging in Live Cancer Cells

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Cited by 13 •

2013

The cytotoxic activity of the phenanthridine PJ-34 in cancer cells undergoing mitosis was documented in real time by live confocal imaging. PJ-34 eradicated human breast cancer MDA-MB-231 cells harboring extra-centrosomes in mitosis. Unlike normal bi-focal mitosis, the extra-centrosomes were not clustered in the two spindle poles in the presence of PJ-34.

Purification of Tubulin with Controlled Posttranslational Modifications and Isotypes from Limited Sources by Polymerization-Depolymerization Cycles

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Cited by 6 •

2020

This protocol describes tubulin purification from small/medium-scale sources such as cultured cells or single mouse brains, using polymerization and depolymerization cycles. The purified tubulin is enriched in specific isotypes or has specific posttranslational modifications and can be used in in vitro reconstitution assays to study microtubule dynamics and interactions.

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