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Histopathologic changes induced by the microtubule-stabilizing agent Taxol in the rat hippocampus in vivo
Octavio Mercado-Gómez1, Patricia Ferrera, Clorinda Arias
1Departamento de Biología Celular y Fisiología, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, México.
Abstract:
Microtubules and their associated proteins play a prominent role in neuronal morphology, axonal transport, neuronal plasticity, and neuronal degeneration. It has been proposed that microtubule damage is sufficient to induce neuronal death. In this regard, the microtubule-stabilizing agent Taxol could be a useful tool to reproduce some aspects of neurodegenerative diseases associated with disturbances of the cytoskeleton and alterations in axonal transport. Although differential effects of Taxol on neuronal viability have been found in vitro, Taxol toxicity in the central nervous system remains to be addressed. We studied the effects of Taxol on neuronal morphology and viability as well as changes in microtubule-associated proteins MAP2 and tau in rat hippocampus. Our results show that Taxol induces dose-dependent neuronal death accompanied by the loss of MAP2 and the presence of dystrophic neurites. Interestingly paired helical filament (PHF)-1 immunoreactivity, which is associated with a phosphorylated epitope of tau proteins, was induced in the damaged hippocampus. Our results suggest that microtubule dynamics have a role in maintenance of neuronal morphology and survival in vivo, and that modifications in microtubule dynamics, may alter the content and neuronal distribution of MAP2 and promote alterations in the phosphorylation state of tau.
Insights
Taxol causes dose-dependent neuronal death in rat hippocampus, affecting microtubule proteins MAP2 and tau. This suggests microtubule dynamics are crucial for neuronal survival and morphology in vivo.
Area of Science:
- Neuroscience
- Cell Biology
Background:
- Microtubules and associated proteins are vital for neuronal structure, transport, plasticity, and degeneration.
- Microtubule damage may induce neuronal death, making agents like Taxol potential tools for studying neurodegenerative diseases.
Purpose of the Study:
- To investigate the effects of Taxol on neuronal morphology, viability, and microtubule-associated proteins (MAP2 and tau) in the rat hippocampus.
- To assess Taxol's toxicity within the central nervous system in vivo.
Main Methods:
- Administration of Taxol to rat hippocampus.
- Assessment of neuronal morphology and viability.
- Analysis of microtubule-associated proteins MAP2 and tau, including PHF-1 immunoreactivity.
Main Results:
- Taxol induced dose-dependent neuronal death in the hippocampus.
- Observed loss of MAP2 and presence of dystrophic neurites.
- Induced paired helical filament (PHF)-1 tau immunoreactivity in damaged areas.
Conclusions:
- Microtubule dynamics are essential for maintaining neuronal morphology and survival in vivo.
- Altered microtubule dynamics can affect MAP2 content/distribution and tau phosphorylation.
- Taxol treatment in vivo provides a model for studying neurodegeneration linked to cytoskeletal disturbances.
