Genomic sequencing technologies for rare disease in mainstream healthcare: the current state of implementation.

IF 4.6 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Michael P Mackley, Pankaj B Agrawal, Sara S Ali, Alison D Archibald, Belinda Dawson-McClaren, Holly Ellard, Lucinda Freeman, Yuanyuan Gu, Kushani Jayasinghe, Shan Jiang, Edwin P Kirk, Celine Lewis, Alison McEwen, Amy Nisselle, Catherine Quinlan, Bronwyn Terrill, Erin Tutty, Alisdair McNeill
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引用次数: 0

Abstract

Genomic sequencing technologies, which include both exome and genome sequencing, as well as panels or targeted analyses using genome-wide approaches, are being implemented across healthcare. Implementation, however, varies greatly by application and jurisdiction, with a diversity of approaches being employed around the world. This review aims to summarise the current state of implementation of genomic testing in mainstream healthcare for the detection of rare disease throughout the lifespan. Through a discussion of evidence gathered to date, highlighting exemplar studies, the following applications of genomic testing will be covered: (1) routine diagnostic genomic testing in the clinic; (2) rapid diagnostic genomic testing in the intensive care unit; (3) genomic newborn screening; and, (4) reproductive genetic carrier screening. Mainstream implementation necessarily extends beyond the clinical genetics service, where genomic testing has historically been offered. Given that the involvement of non-genetics clinicians in the delivery of these technologies has important implications for models of care and education, related areas of growing evidence are also discussed: (5) genetic counsellors working outside clinical genetics services; and, (6) workforce development considerations for mainstream genomics. The diversity of approaches and examples illustrates that integration of genomic technologies into mainstream healthcare is complex and requires significant health system transformation. Efforts to evaluate services, guided by implementation science, will be essential to ensure lessons are shared across jurisdictions and benefit is delivered to patients and the system at-large.

主流医疗保健中的罕见病基因组测序技术:目前的实施状况。
基因组测序技术,包括外显子组和基因组测序,以及使用全基因组方法的小组或目标分析,正在整个医疗保健领域实施。但是,执行情况因适用范围和管辖权的不同而有很大差异,世界各地采用的方法多种多样。本综述旨在总结基因组检测在整个生命周期中用于检测罕见疾病的主流医疗保健中的实施现状。通过对迄今为止收集到的证据的讨论,突出了范例研究,基因组检测的以下应用将被涵盖:(1)临床常规诊断基因组检测;(2)重症监护病房快速诊断基因组检测;(3)新生儿基因组筛查;(4)生殖遗传载体筛选。主流的实施必须超越临床遗传学服务,在那里基因组检测历来是提供的。鉴于非遗传学临床医生参与这些技术的提供对护理和教育模式具有重要意义,本文还讨论了相关领域日益增长的证据:(5)在临床遗传学服务之外工作的遗传咨询师;(6)主流基因组学的劳动力发展考虑。方法和实例的多样性表明,将基因组技术整合到主流医疗保健中是复杂的,需要对卫生系统进行重大改造。在实施科学的指导下,评估服务的努力对于确保各司法管辖区分享经验教训并使患者和整个系统受益至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European Journal of Human Genetics
European Journal of Human Genetics 生物-生化与分子生物学
CiteScore
9.90
自引率
5.80%
发文量
216
审稿时长
2 months
期刊介绍: The European Journal of Human Genetics is the official journal of the European Society of Human Genetics, publishing high-quality, original research papers, short reports and reviews in the rapidly expanding field of human genetics and genomics. It covers molecular, clinical and cytogenetics, interfacing between advanced biomedical research and the clinician, and bridging the great diversity of facilities, resources and viewpoints in the genetics community. Key areas include: -Monogenic and multifactorial disorders -Development and malformation -Hereditary cancer -Medical Genomics -Gene mapping and functional studies -Genotype-phenotype correlations -Genetic variation and genome diversity -Statistical and computational genetics -Bioinformatics -Advances in diagnostics -Therapy and prevention -Animal models -Genetic services -Community genetics
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