Small Molecules for the Treatment of Long-COVID-Related Vascular Damage and Abnormal Blood Clotting: A Patent-Based Appraisal.
Francesco SamarelliGiovanni GrazianoNicola GambacortaElisabetta Anna GrapsFrancesco LeonettiNicolotti OrazioCosimo Damiano AltomarePublished in: Viruses (2024)
People affected by COVID-19 are exposed to, among others, abnormal clotting and endothelial dysfunction, which may result in deep vein thrombosis, cerebrovascular disorders, and ischemic and non-ischemic heart diseases, to mention a few. Treatments for COVID-19 include antiplatelet (e.g., aspirin, clopidogrel) and anticoagulant agents, but their impact on morbidity and mortality has not been proven. In addition, due to viremia-associated interconnected prothrombotic and proinflammatory events, anti-inflammatory drugs have also been investigated for their ability to mitigate against immune dysregulation due to the cytokine storm. By retrieving patent literature published in the last two years, small molecules patented for long-COVID-related blood clotting and hematological complications are herein examined, along with supporting evidence from preclinical and clinical studies. An overview of the main features and therapeutic potentials of small molecules is provided for the thromboxane receptor antagonist ramatroban, the pan-caspase inhibitor emricasan, and the sodium-hydrogen antiporter 1 (NHE-1) inhibitor rimeporide, as well as natural polyphenolic compounds.
Keyphrases
- coronavirus disease
- sars cov
- anti inflammatory drugs
- systematic review
- heart failure
- atrial fibrillation
- low dose
- acute coronary syndrome
- ischemia reperfusion injury
- cell death
- percutaneous coronary intervention
- risk factors
- venous thromboembolism
- mass spectrometry
- antiplatelet therapy
- mesenchymal stem cells
- high resolution
- type diabetes
- atomic force microscopy
- combination therapy
- cardiovascular events
- coronary artery disease
- drug induced
- single molecule
- replacement therapy