Inflammatory Gene Panel Guiding the Study of Genetics in Inflammatory Bowel Disease

IF 4.1 3区 医学 Q1 GENETICS & HEREDITY Molecular Diagnosis & Therapy Pub Date : 2024-04-18 DOI:10.1007/s40291-024-00709-x
Ryan Xin
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Abstract

Inflammatory bowel disease (IBD) is a complex disease that develops through a sequence of molecular events that are still poorly defined. This process is driven by a multitude of context-dependent genes that play different roles based on their environment. The complexity and multi-faceted nature of these genes make it difficult to study the genetic basis of IBD. The goal of this article is to review the key genes in the pathophysiology of IBD and highlight new technology that can be used in further research. This paper examines Nanostring RNA probe technology, which uses tissue analyzed without the use of enzymes, transcription, or amplification. Nanostring offers several panels of genes to test, including an inflammation panel of 234 genes. This article analyzes this panel and reviews the literature for each gene’s effect in IBD for use as a framework to review the pathophysiology of the disease. The panel was narrowed to 26 genes with significant evidence of mechanistic potential in IBD, which were then categorized into specific areas of pathogenesis. These include gut barrier breakdown, inappropriate recognition of commensal bacteria, immune cell activation, proinflammatory cytokine release, and subsequent impairment of the anti-inflammatory response. The eventual goal of this paper is the creation of a customized panel of IBD genes that can be used to better understand the genetic mechanism of IBD and aid in the development of future therapies in IBD.

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指导炎症性肠病遗传学研究的炎症基因小组
炎症性肠病(IBD)是一种复杂的疾病,它是通过一连串尚不十分明确的分子事件发展而来的。这一过程是由许多依赖于环境的基因驱动的,这些基因根据其所处的环境发挥着不同的作用。这些基因的复杂性和多面性使研究 IBD 的遗传基础变得十分困难。本文旨在回顾 IBD 病理生理学中的关键基因,并重点介绍可用于进一步研究的新技术。本文探讨了 Nanostring RNA 探针技术,该技术使用组织分析,无需使用酶、转录或扩增。Nanostring 提供多个基因检测面板,包括一个由 234 个基因组成的炎症面板。这篇文章分析了这组基因,并回顾了每种基因对 IBD 影响的文献,以此作为回顾疾病病理生理学的框架。该研究小组筛选出了 26 个在 IBD 中具有重要机制潜力的基因,然后将其归类为特定的发病机制领域。这些领域包括肠道屏障破坏、共生细菌识别不当、免疫细胞激活、促炎细胞因子释放以及随后的抗炎反应受损。本文的最终目标是创建一个定制的 IBD 基因面板,用于更好地了解 IBD 的遗传机制,并帮助开发未来的 IBD 治疗方法。
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
CiteScore
7.80
自引率
2.50%
发文量
53
审稿时长
>12 weeks
期刊介绍: Molecular Diagnosis & Therapy welcomes current opinion articles on emerging or contentious issues, comprehensive narrative reviews, systematic reviews (as outlined by the PRISMA statement), original research articles (including short communications) and letters to the editor. All manuscripts are subject to peer review by international experts.
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