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首页> 外文期刊>american journal of clinical and experimental urology >Modeling development of genitourinary birth defects to understand disruption due to changes in gene dosage
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Modeling development of genitourinary birth defects to understand disruption due to changes in gene dosage

机译:对泌尿生殖系统出生缺陷的发展进行建模,以了解由于基因剂量变化导致的破坏

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摘要

Genitourinary development is a delicately orchestrated process that begins in the embryo. Once complete, the genitourinary system is a collection of functionally disparate organs spread throughout the abdominal and pelvic regions. These distinct organs are interconnected through an elaborate duct system which aggregates the organs' products to a common exit point. The complicated nature of the genitourinary system makes it highly susceptible to developmental disruptions that produce anomalies. In fact, genitourinary anomalies are among the most common class of human birth defects. Aside from congenital anomalies of the kidney and urinary tract (CAKUT), for males, these birth defects can also occur in the penis (hypospadias) and testis (cryptorchism), which impact male fertility and male mental health. As genetic technology has advanced, it has become clear that a subset of cases of genitourinary birth defects are due to gene variation causing dosage changes in critical regulatory genes. Here we first review the parallels between human and mouse genitourinary development. We then demonstrate how translational research leverages mouse models of human gene variation cases to advance mechanistic understanding of causation in genitourinary birth defects. We close with a view to the future highlighting upcoming technologies that will provide a deeper understanding of gene variation affecting regulation of genitourinary development, which should ultimately advance treatment options for patients.
机译:泌尿生殖系统发育是一个精心策划的过程,始于胚胎。一旦完成,泌尿生殖系统就是分布在腹部和盆腔区域的功能不同的器官的集合。这些不同的器官通过一个复杂的管道系统相互连接,该系统将器官的产物聚集到一个共同的出口点。泌尿生殖系统的复杂性使其极易受到发育中断的影响,从而产生异常。事实上,泌尿生殖系统异常是人类出生缺陷中最常见的一类。除了先天性肾脏和泌尿道异常(CAKUT)外,对于男性来说,这些出生缺陷也可能发生在阴茎(尿道下裂)和睾丸(隐睾症)中,这会影响男性的生育能力和男性心理健康。随着基因技术的进步,很明显,泌尿生殖系统出生缺陷病例的子集是由于基因变异导致关键调节基因的剂量变化。在这里,我们首先回顾了人类和小鼠泌尿生殖系统发育之间的相似之处。然后,我们展示了转化研究如何利用人类基因变异病例的小鼠模型来推进对泌尿生殖系统出生缺陷因果关系的机制理解。最后,我们着眼于未来,重点介绍了即将到来的技术,这些技术将更深入地了解影响泌尿生殖系统发育调节的基因变异,最终将推动患者的治疗选择。

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