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Updated: Jul 24, 2026

Transgenic Rodent Assay for Quantifying Male Germ Cell Mutant Frequency
Published on: August 6, 2014
On the mutagenicity of methadone hydrochloride. Induced dominant lethal mutation and spermatocyte chromosomal
Abstract:
The mutagenicity of methadone hydrochloride was tested in male mice using the dominant lethal mutation technique and the spermatocyte test of treated mice. Male mice of C3H inbred strain received one of the following doses, 1, 2, 4 or 6 mg/kg body weight once a day for 3 consecutive days. Another group of mice served as control and received saline instead. Treated males were then mated to virgin females at 3-day intervals for a period of 45 days. Pregnant females were dissected at mid-term and the corpora lutea and intrauterine contents were recorded. The spermatocytes of treated males were examined 45-50 d after treatments with methadone and abnormal pairing configurations were scored. The methadone treatment was found to increase the rate of preimplantation deaths consistently in all post-meiotic stages with all doses used. In addition, the higher doses, 4 and 6 mg, affected spermatogonia stages. Quantitatively, the dose-response relationship cannot be demonstrated though the spectrum of effect increased with higher doses as more spermatogenesis stages became more sensitive to the treatment. In many cases the frequency of live implants showed a positive correlation with preimplantation deaths in contrast with the frequency of early deaths which showed only sporadic variation. The mutation indices based on total embryonic death indicate that methadone hydrochloride affected several stages of germ-cell maturation namely, spermatozoa (M.I. 14-35), late spermatids (M.I. 15-48), early spermatids (M.I. 14-50), late spermatocytes (M.I. 15-43) and spermatogonial stages (M.I. 12-63). Chromosome analysis at diakinesis-metaphase 1 revealed significant increase in the frequency of sex chromosome and autosome univalents with different doses of methadone. The smallest dose applied was quite effective and the data represent direct dose-response relationship. Of the multivalent configuration, the most frequent type was chain quadrivalents. The frequencies of total translocations per cell were estimated as 0.1, 0.16 and 0.2 for the 4 applied doses illustrating a dose-response relationship for the doses: 1, 2 and 4 mg, whereas with the higher dose, 6 mg, an abrupt decrease was apparent (0.05). This study calls for concern regarding the possible genetic hazards this drug may impose upon human populations.
Insights
Methadone hydrochloride increased preimplantation deaths in mice, affecting germ cell maturation across multiple stages. Higher doses also impacted spermatogonia, raising concerns about potential genetic hazards in humans.
Area of Science:
- Toxicology
- Genetics
- Reproductive Toxicology
Background:
- Methadone hydrochloride is widely used for pain management and opioid addiction treatment.
- Assessing the mutagenicity and potential genetic risks of pharmaceuticals is crucial for public health.
Purpose of the Study:
- To evaluate the mutagenic potential of methadone hydrochloride in male mice.
- To investigate the effects of methadone hydrochloride on germ cell maturation and chromosomal integrity.
Main Methods:
- Dominant lethal mutation assay and spermatocyte chromosome analysis were performed on male C3H mice.
- Mice received daily doses of methadone hydrochloride (1, 2, 4, or 6 mg/kg) for three consecutive days.
- Treated males were mated with virgin females, and reproductive parameters were assessed; spermatocytes were examined for chromosomal abnormalities.
Main Results:
- Methadone hydrochloride significantly increased preimplantation deaths across all tested doses, indicating mutagenic effects.
- Higher doses (4 and 6 mg/kg) also affected spermatogonia, and chromosomal analysis revealed increased frequencies of univalents and translocations.
- A dose-response relationship was observed for certain mutagenic endpoints, though not consistently across all stages and doses.
Conclusions:
- Methadone hydrochloride exhibits mutagenic activity in male mice, impacting various stages of germ cell development.
- The drug poses potential genetic hazards, necessitating careful consideration of its use in human populations.
- Further research is warranted to fully elucidate the long-term genetic risks associated with methadone hydrochloride exposure.
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