COVID-19探索者-一个集成的、全患者的COVID-19疾病知识模型

Frontiers in molecular medicine Pub Date : 2022-12-22 eCollection Date: 2022-01-01 DOI:10.3389/fmmed.2022.1035215
Stephan Brock, Theodoros G Soldatos, David B Jackson, Francesca Diella, Klaus Hornischer, Anne Schäfer, Simon P Hoerstrup, Maximilian Y Emmert
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引用次数: 0

摘要

自2020年初以来,COVID-19大流行使世界陷入瘫痪,在28个月内造成5亿多感染和600多万人死亡。关于该疾病的知识在很大程度上仍然是脱节的,特别是在考虑驱动临床表现和症状多样性的分子机制时。尽管最近有了疫苗,但仍然迫切需要为严重疾病的病例开发有效的治疗方法,特别是面对新的病毒变体。COVID-19作为一种影响全身独立组织和器官的复杂和多方面的全身性疾病的出现,加剧了形势的复杂性。因此,有效治疗策略的发展是基于对潜在疾病机制及其与观察到的临床表型多样性的潜在致病联系的综合理解。为了满足这一需求,我们利用计算技术(Dataome平台)对最重要的COVID-19临床表型建立了综合临床-分子视图。我们的研究结果提供了第一个完整的COVID-19症状学全患者模型,该模型将SARS-CoV-2的分子生命周期与微囊泡介导的细胞间通讯、接触激活和钾likrein-kinin系统联系起来。该模型不仅解释了COVID-19的临床多效性,还为药物开发/再利用和关键风险因素的识别提供了循证驱动的框架。相关知识以开源COVID-19 Explorer (https://covid19.molecularhealth.com)的形式提供,使全球社区能够探索和分析系统性COVID-19的关键分子特征及其对研究重点和治疗策略的相关影响。我们的工作表明,知识建模解决方案可能在加快全球应对未来突发卫生事件方面发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The COVID-19 explorer-An integrated, whole patient knowledge model of COVID-19 disease.

Since early 2020 the COVID-19 pandemic has paralyzed the world, resulting in more than half a billion infections and over 6 million deaths within a 28-month period. Knowledge about the disease remains largely disjointed, especially when considering the molecular mechanisms driving the diversity of clinical manifestations and symptoms. Despite the recent availability of vaccines, there remains an urgent need to develop effective treatments for cases of severe disease, especially in the face of novel virus variants. The complexity of the situation is exacerbated by the emergence of COVID-19 as a complex and multifaceted systemic disease affecting independent tissues and organs throughout the body. The development of effective treatment strategies is therefore predicated on an integrated understanding of the underlying disease mechanisms and their potentially causative link to the diversity of observed clinical phenotypes. To address this need, we utilized a computational technology (the Dataome platform) to build an integrated clinico-molecular view on the most important COVID-19 clinical phenotypes. Our results provide the first integrated, whole-patient model of COVID-19 symptomatology that connects the molecular lifecycle of SARS-CoV-2 with microvesicle-mediated intercellular communication and the contact activation and kallikrein-kinin systems. The model not only explains the clinical pleiotropy of COVID-19, but also provides an evidence-driven framework for drug development/repurposing and the identification of critical risk factors. The associated knowledge is provided in the form of the open source COVID-19 Explorer (https://covid19.molecularhealth.com), enabling the global community to explore and analyze the key molecular features of systemic COVID-19 and associated implications for research priorities and therapeutic strategies. Our work suggests that knowledge modeling solutions may offer important utility in expediting the global response to future health emergencies.

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