短链测序技术的创新及其在临床基因组学中的应用。

IF 7.1 2区 医学 Q1 MEDICAL LABORATORY TECHNOLOGY
Katarzyna Polonis, Joseph H Blommel, Andrew E O Hughes, David Spencer, Joseph A Thompson, Molly C Schroeder
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引用次数: 0

摘要

背景:核酸大规模平行测序(MPS)是基础和应用基因组科学的一项变革性技术,它提高了效率,降低了成本,使研究的范围和影响达到了前所未有的程度。在临床环境中,这些技术和科学进步促使开发出越来越快、越来越全面、越来越频繁使用的检测方法。基因组医学从业人员已将这些工具应用于各种临床环境,包括遗传性疾病和癌症的诊断以及传染病的检测和监控。近年来,MPS 测序仪和试剂的商业市场一直由几家公司主导。随着测序需求的不断增长,最近出现了几种新的测序平台,其技术可替代或改进现有的工作流程,或允许在新的环境中采用测序工作流程。临床基因组学实验室将从独特的角度评估这些平台,重点关注技术进步如何改善患者护理:本综述介绍了由 Illumina、Element Biosciences、MGI、PacBio、Singular Genomics、Thermo Fisher Scientific 和 Ultima Genomics 提供的短读数测序平台。摘要:本综述旨在向实验室遗传学家、临床医生和研究人员介绍新兴的短读技术及其在临床基因组学中的应用。通过强调短读技术的原理和潜在贡献,我们旨在帮助实验室在考虑应用、吞吐量以及与现有实验室工作流程的整合等关键因素的基础上,选择适合其测序需求的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovations in Short-Read Sequencing Technologies and Their Applications to Clinical Genomics.

Background: Massively parallel sequencing (MPS) of nucleic acids has been a transformative technology for basic and applied genomic science, increasing efficiencies and decreasing costs to enable studies of unprecedented scope and impact. In clinical settings, these technological and scientific advances have led to the development of tests that are increasingly fast, comprehensive, and more frequently employed. Practitioners of genomic medicine have applied these tools across clinical settings, including diagnosis of inherited disorders and cancers and infectious disease detection and surveillance. In recent years, the commercial marketplace for MPS sequencers and reagents has been dominated by a few companies. The growing demand for sequencing has led to the recent emergence of several new sequencing platforms with techniques that may provide alternatives or improvements to existing workflows or allow the adoption of sequencing workflows in new settings. Clinical genomics laboratories will evaluate these platforms from a unique perspective, focusing on how technological advancements can improve patient care.

Content: This review describes short-read sequencing platforms provided by Illumina, Element Biosciences, MGI, PacBio, Singular Genomics, Thermo Fisher Scientific, and Ultima Genomics. This review discusses their innovative approaches, principles, workflows, and applications.

Summary: This review aims to inform laboratory geneticists, clinicians, and researchers about emerging short-read technologies and their applications in clinical genomics. By highlighting their principles and potential contributions, we aim to assist laboratories in selecting suitable solutions for their sequencing needs considering key factors such as applications, throughput, and integration with existing laboratory workflows.

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来源期刊
Clinical chemistry
Clinical chemistry 医学-医学实验技术
CiteScore
11.30
自引率
4.30%
发文量
212
审稿时长
1.7 months
期刊介绍: Clinical Chemistry is a peer-reviewed scientific journal that is the premier publication for the science and practice of clinical laboratory medicine. It was established in 1955 and is associated with the Association for Diagnostics & Laboratory Medicine (ADLM). The journal focuses on laboratory diagnosis and management of patients, and has expanded to include other clinical laboratory disciplines such as genomics, hematology, microbiology, and toxicology. It also publishes articles relevant to clinical specialties including cardiology, endocrinology, gastroenterology, genetics, immunology, infectious diseases, maternal-fetal medicine, neurology, nutrition, oncology, and pediatrics. In addition to original research, editorials, and reviews, Clinical Chemistry features recurring sections such as clinical case studies, perspectives, podcasts, and Q&A articles. It has the highest impact factor among journals of clinical chemistry, laboratory medicine, pathology, analytical chemistry, transfusion medicine, and clinical microbiology. The journal is indexed in databases such as MEDLINE and Web of Science.
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