Heba M Saad Eldien, Abdulrahman H Almaeen, Ahmed Abo El Fath, Ahmed E Taha, Rehab Ahmed, Hassabelrasoul Elfadil, Helal F Hetta
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引用次数: 0
摘要
COVID-19造成了广泛的发病率和死亡率,其影响延伸到多个器官系统。尽管已知严重疾病的危险因素,包括高龄和潜在的合并症,但患者的结果可能有很大差异。这种可变性使预测疾病进展和调整治疗策略的努力复杂化。虽然诊断和治疗方法仍在争论中,但RNA测序(RNAseq)已成为一种有前途的工具,可以更深入地了解COVID-19的病理生理学并指导个性化治疗。使用PubMed、Scopus、Web of Science和b谷歌Scholar进行了全面的文献综述。我们使用医学主题标题(MeSH)术语和相关关键词来识别探讨RNAseq在COVID-19诊断、预后和治疗中的作用的研究。RNAseq已被证明有助于识别与COVID-19患者疾病严重程度相关的分子生物标志物。它允许区分无症状和有症状的个体,并阐明有助于疾病进展的免疫反应机制。在危重患者中,RNAseq对于识别可能预测患者预后的关键基因、指导治疗决策和评估病毒的长期影响至关重要。此外,RNAseq有助于了解恢复后病毒RNA的持久性,为急性后后遗症(包括长期COVID)的管理提供新的见解。RNA测序通过提高诊断准确性、个性化治疗和预测治疗反应,显著改善了COVID-19的管理,特别是对危重患者的管理。它改进了患者分层,改善了结果,并有望在急性和长期COVID中进行有针对性的干预。
Unlocking the Potential of RNA Sequencing in COVID-19: Toward Accurate Diagnosis and Personalized Medicine.
COVID-19 has caused widespread morbidity and mortality, with its effects extending to multiple organ systems. Despite known risk factors for severe disease, including advanced age and underlying comorbidities, patient outcomes can vary significantly. This variability complicates efforts to predict disease progression and tailor treatment strategies. While diagnostic and therapeutic approaches are still under debate, RNA sequencing (RNAseq) has emerged as a promising tool to provide deeper insights into the pathophysiology of COVID-19 and guide personalized treatment. A comprehensive literature review was conducted using PubMed, Scopus, Web of Science, and Google Scholar. We employed Medical Subject Headings (MeSH) terms and relevant keywords to identify studies that explored the role of RNAseq in COVID-19 diagnostics, prognostics, and therapeutics. RNAseq has proven instrumental in identifying molecular biomarkers associated with disease severity in patients with COVID-19. It allows for the differentiation between asymptomatic and symptomatic individuals and sheds light on the immune response mechanisms that contribute to disease progression. In critically ill patients, RNAseq has been crucial for identifying key genes that may predict patient outcomes, guiding therapeutic decisions, and assessing the long-term effects of the virus. Additionally, RNAseq has helped in understanding the persistence of viral RNA after recovery, offering new insights into the management of post-acute sequelae, including long COVID. RNA sequencing significantly improves COVID-19 management, particularly for critically ill patients, by enhancing diagnostic accuracy, personalizing treatment, and predicting therapeutic responses. It refines patient stratification, improving outcomes, and holds promise for targeted interventions in both acute and long COVID.
DiagnosticsBiochemistry, Genetics and Molecular Biology-Clinical Biochemistry
CiteScore
4.70
自引率
8.30%
发文量
2699
审稿时长
19.64 days
期刊介绍:
Diagnostics (ISSN 2075-4418) is an international scholarly open access journal on medical diagnostics. It publishes original research articles, reviews, communications and short notes on the research and development of medical diagnostics. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodological details must be provided for research articles.