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1.
J Cardiol ; 79(4): 468-475, 2022 04.
Article in English | MEDLINE | ID: mdl-35074257

ABSTRACT

Arrhythmias in COVID-19 patients are associated with hypoxia, myocardial ischemia, cytokines, inflammation, electrolyte abnormalities, pro-arrhythmic or QT-prolonging medications, and underlying heart conditions such as severe congestive heart failure, inherited arrhythmia syndromes, or congenital heart conditions. In the pediatric population, multisystem inflammatory syndrome can lead to cardiac injury and arrhythmias. In addition, arrhythmias and cardiac arrests are most prevalent in the critically ill intensive care unit COVID-19 patient population. This review presents an overview of the association between COVID-19 and arrhythmias by detailing possible pathophysiological mechanisms, existing knowledge of pro-arrhythmic factors, and results from studies in adult and pediatric COVID-19 populations, and the clinical implications.


Subject(s)
Arrhythmias, Cardiac , COVID-19 , Heart Arrest , Adult , Arrhythmias, Cardiac/virology , COVID-19/complications , Child , Heart Arrest/virology , Humans , SARS-CoV-2 , Systemic Inflammatory Response Syndrome
2.
Free Radic Res ; 53(9-10): 1019-1034, 2019 Oct.
Article in English | MEDLINE | ID: mdl-31530194

ABSTRACT

Bromotyrosine is a stable by-product of eosinophil peroxidase activity, a result of eosinophil activation during an inflammatory immune response. The elevated presence of bromotyrosine in tissue, blood, and urine in medical conditions involving eosinophil activation has highlighted the potential role of bromotyrosine as a medical biomarker. This is highly beneficial in a paediatric setting as a urinary noninvasive biomarker. However, bromotyrosine and its derivatives may exert biological effects, such as protective effects in the brain and pathogenic effects in the thyroid. Understanding these pathways may yield therapeutic advancements in medicine. In this review, we summarize the existing evidence present in literature relating to bromotyrosine formation and metabolism, identify the biological actions of bromotyrosine and evaluate the feasibility of bromotyrosine as a medical biomarker.


Subject(s)
Tyrosine/analogs & derivatives , Humans
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