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Genetic testing and counselling for male infertility

机译:男性不育的基因检测和咨询

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摘要

Purpose of review: Genetic disorders can be identified in about 15% of cases of male infertility. With the widespread application of assisted reproductive technology, infertile patients are now given the possibility of having their biological children; however, a genetic risk exists for assisted reproductive technology-born offspring, implying the necessity for future parents to be appropriately informed about potential consequences. In this review, we provide current recommendations on clinical genetic testing and genetic counselling. Recent findings: New insights are presented concerning Klinefelter syndrome, X and Y chromosome-linked deletions, monogenic diseases and pharmacogenetics. Summary: As for Klinefelter patients, novel preventive measures to preserve fertility have been proposed although they are not yet applicable in the routine setting. Y-chromosome deletions have both diagnostic and prognostic values and their testing is advised to be performed according to the new European Academy of Andrology/European Molecular Genetics Quality Network guidelines. Among monogenic diseases, major advances have been obtained in the identification of novel genes of hypogonadotrophic hypogonadism. Pharmacogenetic approaches of hormonal treatment in infertile men with normal values of follicle-stimulating hormone (FSH) are promising and based on FSHR and FSHB polymorphisms. X chromosome-linked deletions are relevant for impaired spermatogenesis. In about 40% of male infertility, the cause is unknown and novel genetic factors are expected to be discovered in the near future.
机译:审查目的:遗传性疾病可以在大约15%的男性不育病例中发现。随着辅助生殖技术的广泛应用,不育患者现在有了生下孩子的可能性。然而,辅助生殖技术出生的后代存在遗传风险,这意味着有必要让未来的父母适当了解潜在的后果。在这篇综述中,我们提供了有关临床基因检测和遗传咨询的最新建议。最近的发现:提出了有关Klinefelter综合征,X和Y染色体相关的缺失,单基因疾病和药物遗传学的新见解。摘要:对于Klinefelter患者,尽管尚未在常规情况下应用,但已提出了新的预防措施以保持生育力。 Y染色体缺失具有诊断和预后价值,建议根据新的欧洲男科学院/欧洲分子遗传学质量网络指南进行检测。在单基因疾病中,在鉴定性腺机能减退性腺功能减退症的新基因方面已取得重大进展。具有正常水平的促卵泡激素(FSH)的不育男性激素治疗的药物遗传学方法是有前途的,并且基于FSHR和FSHB多态性。 X染色体连锁的缺失与精子发生受损有关。在大约40%的男性不育症中,病因未知,预计不久的将来会发现新的遗传因素。

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