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Coronary Implications of COVID-19 | Medical Principles and Practice | Karger Publishers
Coronary Implications of COVID-19 | Medical Principles and Practice | Karger Publishers
“Patients with SARS-CoV-2 infection carry an increased risk of cardiovascular disease encompassing various implications, including acute myocardial injury or infarction, myocarditis, heart failure, and arrhythmias. A growing volume of evidence correlates SARS-CoV-2 infection with myocardial injury, exposing patients to higher mortality risk. SARS-CoV-2 attacks the coronary arterial bed with various mechanisms including thrombosis/rupture of preexisting atherosclerotic plaque, de novo coronary thrombosis, endotheliitis, microvascular dysfunction, vasculitis, vasospasm, and ectasia/aneurysm formation.”
Patients with SARS-CoV-2 infection carry an increased risk of cardiovascular disease encompassing various implications, including acute myocardial injury or infarction, myocarditis, heart failure, and arrhythmias. A growing volume of evidence correlates SARS-CoV-2 infection with myocardial injury, exposing patients to higher mortality risk. SARS-CoV-2 attacks the coronary arterial bed with various mechanisms including thrombosis/rupture of preexisting atherosclerotic plaque, de novo coronary thrombosis, endotheliitis, microvascular dysfunction, vasculitis, vasospasm, and ectasia/aneurysm formation.
·karger.com·
Coronary Implications of COVID-19 | Medical Principles and Practice | Karger Publishers
928 - In Vitro Modeling of the Effects of Impaired HDL on Atherogenesis in Long COVID Syndrome
928 - In Vitro Modeling of the Effects of Impaired HDL on Atherogenesis in Long COVID Syndrome

Study finds that HDL from Long COVID patients promotes key steps in early atherosclerosis.

Monocytes migrate more and take up more lipids, suggesting dysfunctional HDL may contribute to heart disease risk in Long COVID.

·croiconference.org·
928 - In Vitro Modeling of the Effects of Impaired HDL on Atherogenesis in Long COVID Syndrome