从实验室到婴儿--男性不育症的药物开发。

IF 2.8 Q2 REPRODUCTIVE BIOLOGY Reproduction & fertility Pub Date : 2024-09-01 DOI:10.1530/RAF-24-0022
Shen Chuen Khaw, Sarah Martins da Silva
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引用次数: 0

摘要

据估计,全球有 5000 多万对夫妇患有不孕症,其中男性因素占了一半,但除了体外受精(IVF)或卵胞浆内单精子注射(ICSI)外,目前还没有针对男性的有效治疗方案。本综述探讨了用于治疗男性不育症的无证和经验疗法,包括激素疗法、磷酸二酯酶抑制剂和抗氧化剂。一般来说,这些化合物对精子功能有不同程度的改善,但对生育能力的益处却不太明显。男性不育症患者迫切需要有效的治疗方案,但我们对精子功能的了解有限,这限制了精确治疗目标的确定。传统的药物发现途径也因其大量的资源和时间需求而声名狼藉,往往需要数十年的时间,并需要大量的资金投入。遗憾的是,大量潜在疗法在进入市场之前就已失败。此外,在男性不育症的药物开发过程中,依赖哺乳动物模型是不可能的,因为动物和人类之间存在很大的差异。我们回顾了最近取得的突破,并重点介绍了旨在提高男性不育症药物研发效果和效率的新方法。高通量筛选、组合化学和既有药物的再利用具有巨大潜力。这些策略有望加快药物开发的步伐,抑制对资源的大量需求,就药物再利用而言,还能减少对全面药代动力学和药效学研究的需求。随着这些创新方法的采用,通过科学进步解决男性不育问题的可行性似乎越来越大。
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From Bench to Babies - Drug Development for Male Subfertility.

Infertility is estimated to affect more than 50 million couples around the world, with male factor accounting for half of these cases, yet there is a notable absence of effective treatment options for men, other than in-vitro fertilisation (IVF) or intracytoplasmic sperm injection (ICSI). This review considers unlicensed and empirical treatments used for male subfertility, including hormonal therapy, phosphodiesterase inhibitors, and antioxidants. Compounds generally demonstrate variable improvements in sperm function but benefits for fertility are less clear. There is a pressing need for effective treatment options for subfertile men, however, our knowledge of sperm function is limited, restricting the identification of precise treatment targets. The traditional drug discovery pathway is also notorious for its extensive resource and time requirements, often extending over decades and demanding significant financial investment. Unfortunately, a substantial number of potential therapies fail before reaching the marketplace. Furthermore, reliance on mammalian models is not possible in the drug development process for male subfertility, due to significant variability between animals and man. We review recent breakthroughs and highlight novel methods aimed at improving the effectiveness and efficiency of drug discovery for male subfertility. High-throughput screening, combinatorial chemistry, and the repurposing of established medications have great potential. These strategies offer the promise of accelerating the pace of drug development, curbing the extensive demand for resources, and, in the case of drug repurposing, diminish the demand for comprehensive pharmacokinetic and pharmacodynamic studies. As these innovative approaches are adopted, the feasibility of addressing male subfertility through scientific advancements appears to be increasingly attainable.

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