释放多组学的力量:揭示周围神经病变的分子景观。

IF 4.4 2区 医学 Q1 CLINICAL NEUROLOGY
Julie Choi, Zitian Tang, Wendy Dong, Jenna Ulibarri, Elvisa Mehinovic, Simone Thomas, Ahmet Höke, Sheng Chih Jin
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引用次数: 0

摘要

在美国,周围神经病变(PNs)影响了超过2000万人,表现为广泛的感觉、运动和自主神经症状。虽然各种疾病,如糖尿病、代谢紊乱、创伤、自身免疫性疾病和化疗引起的神经毒性与PN有关,但大约三分之一的PN病例仍然是特发性的,这表明我们对这些疾病的理解存在重大差距。多年来,相当多的努力集中在揭示PN背后的复杂分子途径,以推进诊断和治疗。传统的方法,如连锁分析、荧光原位杂交、聚合酶链反应和Sanger测序,确定了与PN相关的初始遗传变异。然而,下一代测序(NGS)的建立和应用以及最近的长读/单细胞测序已经彻底改变了这一领域,加速了新的致病变异的发现,并挑战了先前关于致病性的假设。本文回顾了基因组技术在PN研究中的发展,强调了NGS在揭示遗传复杂性方面的关键作用。我们提供对已建立的基因组方法的综合分析,如全基因组关联研究,靶向基因面板测序,全外显子组/基因组测序,以及新兴的多组学技术,包括RNA测序和蛋白质组学。整合这些方法有望全面了解PN病理生理学,潜在地揭示新的生物标志物和治疗靶点。此外,我们讨论了基因组和多组学整合的临床意义,强调了它们在提高PN诊断准确性、预后评估和个性化治疗策略方面的潜力。提出了将这些技术标准化用于临床使用的挑战和问题,强调需要制定强有力的指导方针,以最大限度地发挥其临床效用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unleashing the Power of Multiomics: Unraveling the Molecular Landscape of Peripheral Neuropathy

Unleashing the Power of Multiomics: Unraveling the Molecular Landscape of Peripheral Neuropathy

Peripheral neuropathies (PNs) affect over 20 million individuals in the United States, manifesting as a wide range of sensory, motor, and autonomic nerve symptoms. While various conditions such as diabetes, metabolic disorders, trauma, autoimmune disease, and chemotherapy-induced neurotoxicity have been linked to PN, approximately one-third of PN cases remain idiopathic, underscoring a critical gap in our understanding of these disorders. Over the years, considerable efforts have focused on unraveling the complex molecular pathways underlying PN to advance diagnosis and treatment. Traditional methods such as linkage analysis, fluorescence in situ hybridization, polymerase chain reaction, and Sanger sequencing identified initial genetic variants associated with PN. However, the establishment and application of next-generation sequencing (NGS) and, more recently, long-read/single-cell sequencing have revolutionized the field, accelerating the discovery of novel disease-causing variants and challenging previous assumptions about pathogenicity. This review traces the evolution of genomic technologies in PN research, emphasizing the pivotal role of NGS in uncovering genetic complexities. We provide a comprehensive analysis of established genomic approaches such as genome-wide association studies, targeted gene panel sequencing, and whole-exome/genome sequencing, alongside emerging multiomic technologies including RNA sequencing and proteomics. Integrating these approaches promises holistic insights into PN pathophysiology, potentially revealing new biomarkers and therapeutic targets. Furthermore, we discuss the clinical implications of genomic and multiomic integration, highlighting their potential to enhance diagnostic accuracy, prognostic assessment, and personalized treatment strategies for PN. Challenges and questions in standardizing these technologies for clinical use are raised, underscoring the need for robust guidelines to maximize their clinical utility.

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来源期刊
Annals of Clinical and Translational Neurology
Annals of Clinical and Translational Neurology Medicine-Neurology (clinical)
CiteScore
9.10
自引率
1.90%
发文量
218
审稿时长
8 weeks
期刊介绍: Annals of Clinical and Translational Neurology is a peer-reviewed journal for rapid dissemination of high-quality research related to all areas of neurology. The journal publishes original research and scholarly reviews focused on the mechanisms and treatments of diseases of the nervous system; high-impact topics in neurologic education; and other topics of interest to the clinical neuroscience community.
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