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首页> 外文期刊>European journal of endocrinology >GENETICS IN ENDOCRINOLOGY: Approaches to molecular genetic diagnosis in the management of differences/disorders of sex development (DSD): position paper of EU COST Action BM 1303 ‘DSDnet’
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GENETICS IN ENDOCRINOLOGY: Approaches to molecular genetic diagnosis in the management of differences/disorders of sex development (DSD): position paper of EU COST Action BM 1303 ‘DSDnet’

机译:内分泌遗传学:性发育差异/疾病管理中的分子遗传学诊断方法:EU COST Action BM 1303“ DSDnet”的立场文件

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The differential diagnosis of differences or disorders of sex development (DSD) belongs to the most complex fields in medicine. It requires a multidisciplinary team conducting a synoptic and complementary approach consisting of thorough clinical, hormonal and genetic workups. This position paper of EU COST (European Cooperation in Science and Technology) Action BM1303 ‘DSDnet’ was written by leading experts in the field and focuses on current best practice in genetic diagnosis in DSD patients. Ascertainment of the karyotpye defines one of the three major diagnostic DSD subclasses and is therefore the mandatory initial step. Subsequently, further analyses comprise molecular studies of monogenic DSD causes or analysis of copy number variations (CNV) or both. Panels of candidate genes provide rapid and reliable results. Whole exome and genome sequencing (WES and WGS) represent valuable methodological developments that are currently in the transition from basic science to clinical routine service in the field of DSD. However, in addition to covering known DSD candidate genes, WES and WGS help to identify novel genetic causes for DSD. Diagnostic interpretation must be performed with utmost caution and needs careful scientific validation in each DSD case.
机译:性别发展的差异或障碍的鉴别诊断属于医学领域中最复杂的领域。它需要一支跨学科的团队来进行概要和互补的方法,包括全面的临床,激素和基因检查。欧盟COST(欧洲科学技术合作)行动BM1303“ DSDnet”的立场文件是由该领域的领先专家撰写的,着重介绍了DSD患者基因诊断的最新最佳实践。核果的确定定义了三个主要的诊断DSD子类之一,因此是强制性的初始步骤。随后,进一步的分析包括对单基因DSD原因的分子研究或拷贝数变异(CNV)的分析,或两者兼而有之。候选基因组可提供快速而可靠的结果。整个外显子组和基因组测序(WES和WGS)代表了有价值的方法学发展,目前正从DSD领域的基础科学过渡到临床常规服务。但是,除了涵盖已知的DSD候选基因外,WES和WGS还有助于确定DSD的新遗传原因。诊断解释必须非常谨慎,并且在每个DSD病例中都需要进行认真的科学验证。

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