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New clinical molecular diagnostic methods for congenital and inherited heart disease

机译:先天性和遗传性心脏病的新临床分子诊断方法

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摘要

Importance of the field: For patients with congenital and inherited heart disorders, causative mutations are often not identified owing to limitations of current screening techniques. Identifying the mutation is of major importance for genetic counseling of patients and families, facilitating the diagnosis in people at risk and directing clinical management. Next-generation sequencing (NGS) provides unprecedented opportunities to maximize mutation yields and improve clinical management, genetic counseling and monitoring of patients.Areas covered in this review: Recent NGS applications are reviewed, focusing on methods relevant for molecular diagnostics in cardiogenetics. Requirements for reliable implementation in clinical practice and challenges that clinicians, bioinfomaticians and molecular diagnosticians must deal with in analyzing resulting data are discussed.What the reader will gain: Readers will be introduced to recent developments, techniques and applications in NGS. They will learn about possibilities of using it in clinical diagnostics. They will become acquainted with difficulties and challenges in interpreting the data and considerations around communicating these issues to patients and the community. Take home message: Although several obstacles are still to be overcome and there is much still to learn, NGS will revolutionize clinical molecular diagnostics of inherited and congenital cardiac diseases, maximizing mutation yields and leading to optimized diagnostic and clinical care.
机译:领域的重要性:对于先天性和遗传性心脏病的患者,由于当前筛查技术的局限性,常常无法确定病因突变。鉴定突变对于患者和家属的遗传咨询,促进对处于危险中的人的诊断以及指导临床管理至关重要。下一代测序(NGS)提供了前所未有的机会来最大化突变产量并改善临床管理,遗传咨询和患者监测。讨论了临床实践中可靠实施的要求以及临床医生,生物信息学家和分子诊断医生在分析结果数据时必须应对的挑战。他们将学习在临床诊断中使用它的可能性。他们将在解释有关将这些问题传达给患者和社区的数据和注意事项时熟悉困难和挑战。传达的信息:尽管仍有许多障碍需要克服,还有很多事情要学习,但NGS将会彻底改变遗传性和先天性心脏病的临床分子诊断方法,最大程度地提高突变率并优化诊断和临床护理。

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