Cytokine Storm-Induced Thyroid Dysfunction in COVID-19: Insights into Pathogenesis and Therapeutic Approaches.

IF 4.7 2区 医学 Q1 CHEMISTRY, MEDICINAL
Drug Design, Development and Therapy Pub Date : 2024-09-20 eCollection Date: 2024-01-01 DOI:10.2147/DDDT.S475005
Ali Attiq, Sheryar Afzal, Habibah A Wahab, Waqas Ahmad, Mahmoud Kandeel, Yassir A Almofti, Ahmed O Alameen, Yuan Seng Wu
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引用次数: 0

Abstract

Angiotensin-converting enzyme 2 receptors (ACE2R) are requisite to enter the host cells for severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2). ACE2R is constitutive and functions as a type I transmembrane metallo-carboxypeptidase in the renin-angiotensin system (RAS). On thyroid follicular cells, ACE2R allows SARS-CoV-2 to invade the thyroid gland, impose cytopathic effects and produce endocrine abnormalities, including stiff back, neck pain, muscle ache, lethargy, and enlarged, inflamed thyroid gland in COVID-19 patients. Further damage is perpetuated by the sudden bursts of pro-inflammatory cytokines, which is suggestive of a life-threatening syndrome known as a "cytokine storm". IL-1β, IL-6, IFN-γ, and TNF-α are identified as the key orchestrators of the cytokine storm. These inflammatory mediators upregulate transcriptional turnover of nuclear factor-kappa B (NF-κB), Janus kinase/signal transducer and activator of transcription (JAK/STAT), and mitogen-activated protein kinase (MAPK), paving the pathway for cytokine storm-induced thyroid dysfunctions including euthyroid sick syndrome, autoimmune thyroid diseases, and thyrotoxicosis in COVID-19 patients. Targeted therapies with corticosteroids (dexamethasone), JAK inhibitor (baricitinib), nucleotide analogue (remdesivir) and N-acetyl-cysteine have demonstrated effectiveness in terms of attenuating the severity and frequency of cytokine storm-induced thyroid dysfunctions, morbidity and mortality in severe COVID-19 patients. Here, we review the pathogenesis of cytokine storms and the mechanisms and pathways that establish the connection between thyroid disorder and COVID-19. Moreover, cross-talk interactions of signalling pathways and therapeutic strategies to address COVID-19-associated thyroid diseases are also discussed herein.

细胞因子风暴诱发 COVID-19 甲状腺功能障碍:对发病机制和治疗方法的见解。
血管紧张素转换酶 2 受体(ACE2R)是严重急性呼吸系统综合征冠状病毒-2(SARS-CoV-2)进入宿主细胞的必要条件。ACE2R 是组成型的,在肾素-血管紧张素系统(RAS)中发挥 I 型跨膜金属羧肽酶的功能。在甲状腺滤泡细胞上,ACE2R允许SARS-CoV-2侵入甲状腺,产生细胞病理效应并导致内分泌异常,包括COVID-19患者背部僵硬、颈部疼痛、肌肉酸痛、嗜睡以及甲状腺肿大和发炎。促炎细胞因子的突然爆发会造成进一步的损害,这就是所谓的 "细胞因子风暴 "危及生命综合症。IL-1β、IL-6、IFN-γ 和 TNF-α 被认为是细胞因子风暴的主要协调者。这些炎症介质会上调核因子-kappa B(NF-κB)、Janus 激酶/信号转导和转录激活因子(JAK/STAT)以及丝裂原活化蛋白激酶(MAPK)的转录转换,从而为细胞因子风暴诱发的甲状腺功能障碍铺平道路,这些甲状腺功能障碍包括甲状腺功能亢进综合征、自身免疫性甲状腺疾病以及 COVID-19 患者的甲状腺毒症。皮质类固醇(地塞米松)、JAK抑制剂(巴利替尼)、核苷酸类似物(雷米替韦)和N-乙酰半胱氨酸等靶向疗法在减轻细胞因子风暴诱发的甲状腺功能障碍的严重程度和频率、降低严重COVID-19患者的发病率和死亡率方面已显示出疗效。在此,我们回顾了细胞因子风暴的发病机制以及甲状腺功能紊乱与COVID-19之间的关联机制和途径。此外,本文还讨论了信号通路的交叉相互作用以及应对 COVID-19 相关甲状腺疾病的治疗策略。
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
Drug Design, Development and Therapy
Drug Design, Development and Therapy CHEMISTRY, MEDICINAL-PHARMACOLOGY & PHARMACY
CiteScore
9.00
自引率
0.00%
发文量
382
审稿时长
>12 weeks
期刊介绍: Drug Design, Development and Therapy is an international, peer-reviewed, open access journal that spans the spectrum of drug design, discovery and development through to clinical applications. The journal is characterized by the rapid reporting of high-quality original research, reviews, expert opinions, commentary and clinical studies in all therapeutic areas. Specific topics covered by the journal include: Drug target identification and validation Phenotypic screening and target deconvolution Biochemical analyses of drug targets and their pathways New methods or relevant applications in molecular/drug design and computer-aided drug discovery* Design, synthesis, and biological evaluation of novel biologically active compounds (including diagnostics or chemical probes) Structural or molecular biological studies elucidating molecular recognition processes Fragment-based drug discovery Pharmaceutical/red biotechnology Isolation, structural characterization, (bio)synthesis, bioengineering and pharmacological evaluation of natural products** Distribution, pharmacokinetics and metabolic transformations of drugs or biologically active compounds in drug development Drug delivery and formulation (design and characterization of dosage forms, release mechanisms and in vivo testing) Preclinical development studies Translational animal models Mechanisms of action and signalling pathways Toxicology Gene therapy, cell therapy and immunotherapy Personalized medicine and pharmacogenomics Clinical drug evaluation Patient safety and sustained use of medicines.
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