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Testicular toxicity of nitrofurazone causing germ cell apoptosis in rats
T Shoda1, K Yasuhara, M Moriyasu
1Section of Safety, Research Laboratories, Torii Pharmaceutical Co Ltd, Chiba, Japan.
Abstract:
In order to clarify the mechanism underlying testicular toxicity of nitrofurazone (NF), two experiments were performed. In experiment 1, sequential histopathological examination of testes after a single oral administration of 100 or 300 mg/kg NF to male rats demonstrated that degeneration of pachytene spermatocytes with an eosinophilic, shrunken appearance in stages VII-VIII and vacuolation of Sertoli cells were first observed 12 h after treatment. By 24 h, degeneration of pachytene spermatocytes in stages VII-XII and diplotene spermatocytes were observed. On post-treatment day 4, neither spermatocytes nor spermatids located inside the pachytene spermatocytes in stage VII were seen anywhere. Generation of seminiferous epithelium progressed with recovery to almost normal morphology after 12 weeks, although some morphological changes were still present. No lesions were apparent in spermatogonia, preleptotene spermatocytes, leptotene spermatocytes, zygotene spermatocytes or Leydig cells. Degenerate pachytene spermatocytes and some round spermatids seen after 24 h showed positive TdT-mediated dUTP-biotin nick end labeling (TUNEL). In addition, DNA laddering patterns were detected with agarose gel electrophoresis, and increased electron density of nuclei and cytoplasm of degenerating spermatocytes with nuclear chromatin focal aggregations were observed by electron microscopy, indicating that cell death was attributable to apoptosis. In experiment 2, sequential serum sex-related hormone levels were assayed after a single oral administration of 300 mg/kg NF to male rats and revealed a significant increase of testosterone and a decrease of progesterone at 6 h, and decreases of luteinizing hormone at 12 h and testosterone at 24 h. Prolactin tended to decrease from 12 h after treatment and the decrease was significant at 48 h. No significant changes were observed in levels of follicle-stimulating hormone or estradiol. The probability that NF damages germ cells by causing a hormonal imbalance is extremely low, since no pattern of hormonal imbalance that could be regarded as the cause of the testicular degeneration was observed until 12 h after NF treatment when pachytene spermatocytes began to degenerate. The present experiments suggest that NF damages Sertoli cells and pachytene spermatocytes in stages VII-XII directly.
Insights
Nitrofurazone (NF) causes testicular toxicity by directly damaging Sertoli cells and pachytene spermatocytes. This damage, observed as apoptosis, occurs independently of hormonal imbalances, with recovery noted after 12 weeks.
Area of Science:
- Toxicology
- Reproductive Biology
- Histopathology
Background:
- Nitrofurazone (NF) is an antibiotic with known toxic effects on male reproductive organs.
- The precise mechanism of NF-induced testicular toxicity remains incompletely understood.
- Understanding the cellular targets and pathways of NF toxicity is crucial for risk assessment.
Purpose of the Study:
- To elucidate the mechanism underlying nitrofurazone's testicular toxicity in male rats.
- To identify the specific testicular cell types affected by NF exposure.
- To determine if hormonal imbalance contributes to NF-induced testicular damage.
Main Methods:
- Experiment 1: Histopathological examination of rat testes at various time points after single oral NF administration (100 or 300 mg/kg).
- Apoptosis detection using TdT-mediated dUTP-biotin nick end labeling (TUNEL) assay and DNA laddering.
- Experiment 2: Sequential analysis of serum sex hormone levels (testosterone, progesterone, luteinizing hormone, prolactin, FSH, estradiol) post-NF treatment.
Main Results:
- NF treatment led to degeneration of pachytene spermatocytes and vacuolation of Sertoli cells within 12-24 hours.
- Apoptosis was confirmed in degenerating germ cells via TUNEL assay and DNA laddering.
- Hormonal changes (testosterone, progesterone, LH, prolactin) were observed but did not correlate temporally with initial germ cell damage, suggesting they are not the primary cause.
Conclusions:
- Nitrofurazone directly damages Sertoli cells and pachytene spermatocytes, inducing apoptosis.
- The testicular toxicity of NF is not primarily driven by hormonal imbalance.
- Seminiferous epithelium shows potential for recovery over 12 weeks, though some residual changes persist.