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Effects of anticancer drug docetaxel on the structure and function of the rabbit olfactory mucosa
Boniface M Kavoi1, Johanna Plendl2, Andrew N Makanya3
1Department of Veterinary Anatomy and Physiology, Faculty of Veterinary Medicine, University of Nairobi, Riverside Drive, P.O. Box 30197-00100, Nairobi, Kenya.
Abstract:
Docetaxel (DCT) is an anticancer drug which acts by disrupting microtubule dynamics in the highly mitotic cancer cells. Thus, this drug has a potential to affect function and organization of tissues exhibiting high cellular turnover. We investigated, in the rabbit, the effects of a single human equivalent dose (6.26 mg/kg, i.v.) of DCT on the olfactory mucosa (OM) through light and electron microscopy, morphometry, Ki-67 immunostaining, TUNEL assay and the buried food test for olfactory sensitivity. On post-exposure days (PED) 5 and 10, there was disarrangement of the normal cell layering in the olfactory epithelium (OE), apoptotic death of cells of the OE, Bowman's glands and axon bundles, and the presence (including on PED 3) of blood vessels in the bundle cores. A decrease in bundle diameters, olfactory cell densities and cilia numbers, which was most significant on PED 10 (49.3%, 63.4% and 50%, respectively), was also evident. Surprisingly by PED 15, the OM regained normal morphology. Furthermore, olfactory sensitivity decreased progressively until PED 10 when olfaction was markedly impaired, and with recovery from the impairment by PED 15. These observations show that DCT transiently alters the structure and function of the OM suggesting a high regenerative potential for this tissue.
Insights
Docetaxel (DCT) temporarily damages the olfactory mucosa (OM) in rabbits, impairing smell. However, the OM shows remarkable regeneration, with normal structure and function restored by 15 days post-exposure.
Area of Science:
- Toxicology
- Neuroscience
- Cell Biology
Background:
- Docetaxel (DCT) is a chemotherapy agent disrupting microtubule dynamics.
- High cellular turnover tissues may be susceptible to DCT's effects.
Purpose of the Study:
- To investigate the effects of Docetaxel on rabbit olfactory mucosa (OM) structure and function.
- To assess the regenerative capacity of the OM following DCT exposure.
Main Methods:
- Single human equivalent dose of DCT administered to rabbits.
- Evaluated OM using light and electron microscopy, morphometry, and Ki-67/TUNEL assays.
- Assessed olfactory sensitivity using the buried food test.
Main Results:
- DCT caused disarrangement of olfactory epithelium, cell apoptosis, and vascular changes.
- Significant reductions in olfactory bundle diameter, cell density, and cilia observed by post-exposure day 10.
- Olfactory sensitivity progressively decreased, with marked impairment by day 10.
Conclusions:
- Docetaxel transiently alters olfactory mucosa structure and impairs olfactory function.
- The olfactory mucosa demonstrates significant regenerative potential, recovering by post-exposure day 15.
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