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一种抗生精但无致突变性的茚并吡啶衍生物在小鼠和鼠伤寒沙门氏菌中的作用

Actions of an antispermatogenic, but non-mutagenic, indenopyridine derivative in mice and Salmonella typhimurium.

作者信息

Matter B E, Jaeger I, Suter W, Tsuchimoto T, Deyssenroth H

出版信息

Mutat Res. 1979 Feb;66(2):113-27. doi: 10.1016/0165-1218(79)90055-7.

Abstract

This paper describes a new antispermatogenic agent. Following single oral administration to mice, the indenopyridine derivative (4aRS,5SR,9bRS)-2-ethyl-1,3,4,4a,5,9b-hexahydro-7-methyl-5-p-tolyl-2H-indeno(1,2-c)pyridine hydrochloride, code No. 20-438, produced long-lasting inhibition of the spermatogenic process at dose levels of 10 mg/kg (1/40 of the lowest lethal dose) and higher. Testes weights were significantly reduced from days 2--217 after treatment, and no clear-cut evidence of a recovery was found during this time. The fertility of treated males was normal during the initial 2 weeks after treatment, followed by partial or total sterility in weeks 3--6, and incomplete recovery in weeks 7--29 after treatment. The antifertility effects were caused by maturation depletion of the germ cells, leading to oligospermia. The following rank of decreasing "susceptibility" of the germ cells was observed: Spermatocytes greater than early spermatids, intermediate spermatogonia greater than stem cells. Sperm and late spermatids were not affected. Despite the characteristic specific germ-cell pattern of antifertility effects, 20-438 showed neither indications of pre- and post-implantational dominant lethality, nor mutagenic potentiality as measured by cytogenetic analysis of spermatocytes or spermatogonia, the sperm abnormality assay, the micronucleus test, and the Salmonella assay. These data suggest that the action of 20-438, leading to oligospermia, does not involve genetic toxic effects.

摘要

本文描述了一种新型抗生精剂。对小鼠单次口服给予茚并吡啶衍生物(4aRS,5SR,9bRS)-2-乙基-1,3,4,4a,5,9b-六氢-7-甲基-5-对甲苯基-2H-茚并[1,2-c]吡啶盐酸盐,编号20-438,在10mg/kg(最低致死剂量的1/40)及更高剂量水平时,可对生精过程产生持久抑制作用。治疗后第2至217天,睾丸重量显著减轻,在此期间未发现明显的恢复迹象。治疗后最初2周内,受试雄性的生育力正常,随后在第3至6周出现部分或完全不育,治疗后第7至29周恢复不完全。抗生育作用是由生殖细胞成熟耗竭导致少精子症引起的。观察到生殖细胞“敏感性”降低的顺序如下:精母细胞大于早期精子细胞,中间型精原细胞大于干细胞。精子和晚期精子细胞未受影响。尽管20-438具有抗生育作用的特征性特定生殖细胞模式,但通过精母细胞或精原细胞的细胞遗传学分析、精子异常试验、微核试验和沙门氏菌试验测定,20-438既未显示植入前和植入后显性致死的迹象,也没有诱变潜力。这些数据表明,20-438导致少精子症的作用不涉及遗传毒性作用。

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