在神经精神疾病中考虑心脑轴控制的理由。

IF 2.7 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Mammalian Genome Pub Date : 2023-06-01 Epub Date: 2022-12-20 DOI:10.1007/s00335-022-09974-9
Lillian Garrett, Dietrich Trümbach, Nadine Spielmann, Wolfgang Wurst, Helmut Fuchs, Valerie Gailus-Durner, Martin Hrabě de Angelis, Sabine M Hölter
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引用次数: 0

摘要

神经精神疾病(NPD)是一种严重的全球性疾病,需要采用创新方法来了解病因、确定生物标志物和制定治疗策略。新出现的证据表明,心/脑轴功能失调与 NPD 病因有关,特别是通过自律神经系统(ANS)和大脑中枢自律神经网络(CAN)的相互作用。这种心/脑之间的相互关系蕴含着潜在的新型 NPD 诊断和治疗途径。然而,多学科临床方法的缺乏以及对分子基础的认识有限阻碍了研究的进展。因此,大规模临床前多系统功能数据可以为了解 CAN 和 ANS 的相互作用提供补充。我们在此概述了 NPD 中的心/脑轴,并建立了利用临床前心血管疾病风险基因集来深入了解 NPD 中心/脑轴控制的独特原理。我们采用自上而下的方法,重点研究影响心电图 ANS 功能的基因,并结合相应区域 CAN 表达数据的分层聚类和功能富集分析,揭示了 CAN 和 NPD 的已知和新的分子观点。通过 "支持向量机 "分类查询和文献验证,我们进一步确定了在 CAN 大脑结构中高度表达的前 32 个基因,它们同时改变了心率/心率变异性(HRV)和行为。我们的观察结果强调了心率变异/过度活跃行为作为多模态疾病生物标记物识别的内表型的潜力,它可指示与 NPD 相关的异常大脑执行功能。这项工作预示着大规模临床前功能基因数据在了解 CAN/ANS 控制方面的潜力,并介绍了一种利用临床前数据的逐步设计方法,以发现 NPD 中新型的心脑轴控制基因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A rationale for considering heart/brain axis control in neuropsychiatric disease.

A rationale for considering heart/brain axis control in neuropsychiatric disease.

A rationale for considering heart/brain axis control in neuropsychiatric disease.

A rationale for considering heart/brain axis control in neuropsychiatric disease.

Neuropsychiatric diseases (NPD) represent a significant global disease burden necessitating innovative approaches to pathogenic understanding, biomarker identification and therapeutic strategy. Emerging evidence implicates heart/brain axis malfunction in NPD etiology, particularly via the autonomic nervous system (ANS) and brain central autonomic network (CAN) interaction. This heart/brain inter-relationship harbors potentially novel NPD diagnosis and treatment avenues. Nevertheless, the lack of multidisciplinary clinical approaches as well as a limited appreciation of molecular underpinnings has stymied progress. Large-scale preclinical multi-systemic functional data can therefore provide supplementary insight into CAN and ANS interaction. We here present an overview of the heart/brain axis in NPD and establish a unique rationale for utilizing a preclinical cardiovascular disease risk gene set to glean insights into heart/brain axis control in NPD. With a top-down approach focusing on genes influencing electrocardiogram ANS function, we combined hierarchical clustering of corresponding regional CAN expression data and functional enrichment analysis to reveal known and novel molecular insights into CAN and NPD. Through 'support vector machine' inquiries for classification and literature validation, we further pinpointed the top 32 genes highly expressed in CAN brain structures altering both heart rate/heart rate variability (HRV) and behavior. Our observations underscore the potential of HRV/hyperactivity behavior as endophenotypes for multimodal disease biomarker identification to index aberrant executive brain functioning with relevance for NPD. This work heralds the potential of large-scale preclinical functional genetic data for understanding CAN/ANS control and introduces a stepwise design leveraging preclinical data to unearth novel heart/brain axis control genes in NPD.

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来源期刊
Mammalian Genome
Mammalian Genome 生物-生化与分子生物学
CiteScore
4.00
自引率
0.00%
发文量
33
审稿时长
6-12 weeks
期刊介绍: Mammalian Genome focuses on the experimental, theoretical and technical aspects of genetics, genomics, epigenetics and systems biology in mouse, human and other mammalian species, with an emphasis on the relationship between genotype and phenotype, elucidation of biological and disease pathways as well as experimental aspects of interventions, therapeutics, and precision medicine. The journal aims to publish high quality original papers that present novel findings in all areas of mammalian genetic research as well as review articles on areas of topical interest. The journal will also feature commentaries and editorials to inform readers of breakthrough discoveries as well as issues of research standards, policies and ethics.
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