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发现一种源自氯尼达明的可逆性男性避孕药。

Discovering a Reversible Male Contraceptive Agent Derived from Lonidamine.

作者信息

Gong Shengnan, Zhu Shiyao, Zhou Peng, Cheng C Yan, Li Wenqing, Yao Weiwei, Sun Fei

机构信息

Institute of Reproductive Medicine, School of Medicine, Nantong University, Nantong, Jiangsu 226019, P. R. China.

出版信息

ACS Omega. 2023 May 12;8(20):18245-18254. doi: 10.1021/acsomega.3c01840. eCollection 2023 May 23.

Abstract

There is a huge demand for safe and effective non-hormonal male contraceptives to prevent unintended pregnancy, but research on male contraceptive drugs lacks far behind the pills for women. Lonidamine and its analog adjudin are two of the best studied potential male contraceptives. However, the acute toxicity of lonidamine and the subchronic toxicity of adjudin had impeded their development for male contraception. Here, we designed and synthesized a whole new series of molecules derived from lonidamine according to a structure ligand-based design strategy and obtained a new effective and reversible contraceptive agent (BHD), and their efficacy was demonstrated in male mice and rats. Results showed that BHD had a 100% contraceptive effect on male mice after 2 weeks following a single oral dose of BHD at 100 mg/kg body weight (b.w.) or 500 mg/kg b.w. treatments. The fertility of mice was reduced to 90 and 50% after 6 weeks with a single oral dose of BHD-100 and BHD-500 mg/kg b.w. treatments, respectively. We also revealed that BHD induced the apoptosis of spermatogenic cells rapidly and disrupted the blood-testis barrier effectively. It appears to be a new potential male contraceptive candidate for future development.

摘要

对于安全有效的非激素男性避孕药以预防意外怀孕有着巨大需求,但男性避孕药的研究远远落后于女性避孕药。氯尼达明及其类似物阿地金是研究得较为深入的两种潜在男性避孕药。然而,氯尼达明的急性毒性和阿地金的亚慢性毒性阻碍了它们作为男性避孕药的开发。在此,我们根据基于结构配体的设计策略设计并合成了一系列全新的源自氯尼达明的分子,获得了一种新的有效且可逆的避孕剂(BHD),并在雄性小鼠和大鼠中证明了其功效。结果表明,在以100毫克/千克体重(b.w.)或500毫克/千克b.w.的剂量单次口服BHD两周后,BHD对雄性小鼠有100%的避孕效果。在以100毫克/千克b.w.和500毫克/千克b.w.的剂量单次口服BHD六周后,小鼠的生育力分别降至90%和50%。我们还发现,BHD能迅速诱导生精细胞凋亡并有效破坏血睾屏障。它似乎是未来开发的一种新的潜在男性避孕候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8306/10210193/fe87f3cb5c7c/ao3c01840_0002.jpg

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