5-fluorouracil-induced histopathological changes in the central nervous system of rat fetuses
Y Yamaguchi1, A Aoki, Y Fukunaga
1Division of Pathology, BOZO Research Center Inc., Shizuoka, Japan. yamaguchi-yuko@bozo.co.jp
Abstract:
5-Fluorouracil (5-FU), a thymidylate synthesis inhibitor, has been well known to induce developmental anomalies in the craniofacial tissues and limb buds. Recently it was reported that microencephaly was also induced in rat neonates after 5-Fu-treatement in late phase of pregnancy (Kumar et al., 2006). In this study, pregnant rats were treated with 5-Fu (15, 30 or 50 mg/kg) on day 13 of gestation, and their fetuses were examined for histopathological changes, especially in the fetal central nervous system (CNS) at 12, 24 and 48 hours after treatment (HAT). At 12 HAT, an enhancement of pyknosis of neuronal progenitor cells and subsequent loss of dead cells were detected in the CNS in a dose-dependent manner. The severity of such histopathological changes in the CNS was most prominent in the telencephalon (middle and dorsal layers of the ventricular zone) and spinal cord (dorsal area). Pyknotic cells decreased towards 48 HAT in the brain while they increased towards 48 HAT in the spinal cord. Almost all of the nuclei of pyknotic cells were positively stained by TUNEL method and showed characteristics of apoptotic cells under electron microscopy. Therefore, these pyknotic cells were considered to be apoptotic ones. Enhanced apoptosis and reduced mitosis in neuronal progenitor cells in the telencephalon seem to be responsible for the later induction of microencephaly reported by Kumar et al. (2006).
Insights
5-Fluorouracil (5-FU) exposure during pregnancy causes apoptosis in fetal rat central nervous system progenitor cells. This cell death, particularly in the telencephalon, may lead to microcephaly observed in offspring.
Area of Science:
- Developmental toxicology
- Neuroscience
- Teratology
Background:
- 5-Fluorouracil (5-FU) is a chemotherapy agent known to cause developmental anomalies.
- Previous studies linked 5-FU to craniofacial and limb malformations.
- Recent research indicated 5-FU can induce microcephaly in rat neonates.
Purpose of the Study:
- To investigate the histopathological effects of 5-FU on the fetal central nervous system (CNS).
- To determine the dose-dependent and time-course effects of 5-FU on fetal CNS development.
- To elucidate the cellular mechanisms underlying 5-FU-induced developmental anomalies.
Main Methods:
- Pregnant rats were administered varying doses of 5-FU on day 13 of gestation.
- Fetal CNS tissues were examined for histopathological changes at 12, 24, and 48 hours post-treatment.
- TUNEL staining and electron microscopy were employed to identify apoptotic cells.
Main Results:
- 5-FU induced dose-dependent pyknosis and cell loss in the fetal CNS.
- Apoptosis was most pronounced in the telencephalon and spinal cord.
- Apoptotic cells were confirmed via TUNEL staining and electron microscopy.
- While brain apoptosis decreased over time, spinal cord apoptosis increased.
Conclusions:
- 5-FU exposure triggers apoptosis in fetal CNS progenitor cells.
- Enhanced apoptosis in the telencephalon is a likely cause of 5-FU-induced microcephaly.
- These findings highlight the teratogenic potential of 5-FU on the developing nervous system.
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