Adilović Muhamed, Hromić-Jahjefendić Altijana, Mahmutović Lejla, Šutković Jasmin, Rubio-Casillas Alberto, Redwan Elrashdy M, Uversky Vladimir N
Department of Genetics and Bioengineering, Faculty of Engineering and Natural Sciences, International University of Sarajevo, Sarajevo, Bosnia and Herzegovina.
Autlan Regional Hospital, Health Secretariat, Autlan, Mexico.
J Cell Biochem. 2025 Jan;126(1):e30683. doi: 10.1002/jcb.30683. Epub 2024 Dec 5.
The complex link between COVID-19 and immunometabolic diseases demonstrates the important interaction between metabolic dysfunction and immunological response during viral infections. Severe COVID-19, defined by a hyperinflammatory state, is greatly impacted by underlying chronic illnesses aggravating the cytokine storm caused by increased levels of Pro-inflammatory cytokines. Metabolic reprogramming, including increased glycolysis and altered mitochondrial function, promotes viral replication and stimulates inflammatory cytokine production, contributing to illness severity. Mitochondrial metabolism abnormalities, strongly linked to various systemic illnesses, worsen metabolic dysfunction during and after the pandemic, increasing cardiovascular consequences. Long COVID-19, defined by chronic inflammation and immune dysregulation, poses continuous problems, highlighting the need for comprehensive therapy solutions that address both immunological and metabolic aspects. Understanding these relationships shows promise for effectively managing COVID-19 and its long-term repercussions, which is the focus of this review paper.
2019冠状病毒病(COVID-19)与免疫代谢疾病之间的复杂联系表明,病毒感染期间代谢功能障碍与免疫反应之间存在重要相互作用。以高炎症状态为特征的重症COVID-19,受到潜在慢性疾病的极大影响,这些慢性疾病会加剧由促炎细胞因子水平升高引起的细胞因子风暴。代谢重编程,包括糖酵解增加和线粒体功能改变,促进病毒复制并刺激炎性细胞因子产生,导致病情严重程度增加。线粒体代谢异常与各种全身性疾病密切相关,在疫情期间及之后会加剧代谢功能障碍,增加心血管疾病后果。长新冠以慢性炎症和免疫失调为特征,带来持续问题,凸显了需要有综合治疗方案来解决免疫和代谢两方面问题。了解这些关系有望有效管理COVID-19及其长期影响,这也是本综述文章的重点。