ReviewPharmacological research2020
Novel anti-thrombotic mechanisms mediated by Mas receptor as result of balanced activities between the kallikrein/kinin and the renin-angiotensin systems.
Review in Pharmacological research, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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Who cites it
13 citing papers in PubMed, 23 citations in OpenAlex.
- Autoimmune Features of Post-COVID-19 Vaccination Syndrome and Their Impacts on the Renin-Angiotensin System.Vaccines · 2026Review
- Atherosclerosis-induced arterial erectile dysfunction: pathogenesis, diagnosis, and therapeutic strategies.Translational andrology and urology · 2025Review
- Recent advances of mechanosensitive genes in vascular endothelial cells for the formation and treatment of atherosclerosis.Genes & diseases · 2024Review
- Drug-target identification in COVID-19 disease mechanisms using computational systems biology approaches.Frontiers in immunology · 2023Article
- Crosstalk between the renin-angiotensin, complement and kallikrein-kinin systems in inflammation.Nature reviews. Immunology · 2022Review
- Novel Plasma Kallikrein Inhibitors for Treating Hereditary Angioedema, Diabetic Macular Edema, and Diabetic Retinopathy.ACS medicinal chemistry letters · 2022Article
- Coagulation and complement: Key innate defense participants in a seamless web.Frontiers in immunology · 2022Review
- Novel Heteroaromatic Carboxamide Derivatives as Plasma Kallikrein Inhibitors for Treating Diabetic Complications, Ocular Diseases and Edema-Associated Diseases.ACS medicinal chemistry letters · 2021Article
- Novel Heteroaromatic Carboxamides as Plasma Kallikrein Inhibitors for Treating Diabetic Complications, Ocular Diseases, and Edema-Associated Diseases.ACS medicinal chemistry letters · 2021Article
- Developing new drugs that activate the protective arm of the renin-angiotensin system as a potential treatment for respiratory failure in COVID-19 patients.Drug discovery today · 2021Review
- Mortality in Patients with COVID-19 on Renin Angiotensin System Inhibitor Long-Term Treatment: An Observational Study Showing that Things Are Not Always as They Seem.Advances in therapy · 2021Observational
- COVID-19: imbalance of multiple systems during infection and importance of therapeutic choice and dosing of cardiac and anti-coagulant therapies.Molecular biology reports · 2021Review
- Circulating Exosomes Are Strongly Involved in SARS-CoV-2 Infection.Frontiers in molecular biosciences · 2021Article
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Authors and funding
2 authors at 2 institutions in 2 countries.
Funding
Abstract
The risk of thrombosis, a globally growing challenge and a major cause of death, is influenced by various factors in the intravascular coagulation, vessel wall, and cellular systems. Among the contributors to thrombosis, the contact activation system and the kallikrein/kinin system, two overlapping plasma proteolytic systems that are often considered as synonymous, regulate thrombosis from different aspects. On one hand, components of the contact activation system such as factor XII initiates activation of the coagulation proteins promoting thrombus formation on artificial surfaces through factor XI- and possibly prekallikrein-mediated intrinsic coagulation. On the other hand, physiological activation of plasma prekallikrein in the kallikrein/kinin system on endothelial cells liberates bradykinin from associated high-molecular-weight kininogen to stimulate the constitutive bradykinin B2 receptor to generate nitric oxide and prostacyclin to induce vasodilation and counterbalance angiotensin II signaling from the renin-angiotensin system which stimulates vasoconstriction. In addition to vascular tone regulation, this interaction between the kallikrein/kinin and renin-angiotensin systems has a thrombo-regulatory role independent of the contact pathway. At the level of the G-protein coupled receptors of these systems, defective bradykinin signaling due to attenuated bradykinin formation and/or decreased B2 receptor expression, as seen in murine prekallikrein and B2 receptor null mice, respectively, leads to compensatory overexpressed Mas, the receptor for angiotensin-(1-7) of the renin-angiotensin system. Mas stimulation and/or its increased expression contributes to maintaining a healthy vascular homeostasis by generating graded elevation of plasma prostacyclin which reduces thrombosis through two independent pathways: (1) increasing the vasoprotective transcription factor Sirtuin 1 to suppress tissue factor expression, and (2) inhibiting platelet activation. This review will summarize the recent advances in this field that support these understandings. Appreciating these subtle mechanisms help to develop novel anti-thrombotic strategies by targeting the vascular receptors in the renin-angiotensin and the kallikrein/kinin systems to maintain healthy vascular homeostasis.
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