Coronavirus (COVID-19), Coagulation, and Exercise: Interactions That May Influence Health Outcomes
Emma Kate Zadow1, Daniel William Taylor Wundersitz1, Diane Louise Hughes1,2
1Holsworth Research Initiative, La Trobe Rural Health School, La Trobe University, Bendigo, Victoria, Australia.
Insights
The cytokine storm in COVID-19 increases thrombosis risk. Low- to moderate-intensity exercise may help manage coagulopathy in mild COVID-19, potentially reducing mortality risk.
Area of Science:
- Hematology
- Immunology
- Infectious Diseases
Background:
- Coronavirus disease 2019 (COVID-19) triggers a cytokine storm impacting the hematological system.
- This storm leads to coagulation activation, endothelial dysfunction, and increased risk of venous and arterial thrombosis.
- Coagulopathy, indicated by elevated D-dimer levels, is linked to COVID-19 mortality, especially in those with pre-existing cardiometabolic conditions and sedentary lifestyles.
Purpose of the Study:
- To explore the potential role of exercise as an adjuvant therapy in managing COVID-19-associated coagulopathy.
- To investigate how physical activity influences the "perfect storm" of COVID-19, coagulation, and reduced mobility.
- To determine the safety and efficacy of different exercise intensities in mitigating COVID-19 complications.
Main Methods:
- Review of existing literature on COVID-19, coagulopathy, and exercise physiology.
- Analysis of biochemical markers related to coagulation in the context of physical activity.
- Evaluation of potential benefits and risks of exercise interventions in COVID-19 patients.
Main Results:
- COVID-19-induced coagulopathy exacerbates thrombosis risk, particularly in individuals with poor vascular health and reduced physical activity.
- Pharmaceutical treatments for COVID-19 have potential adverse effects.
- Low- to moderate-intensity exercise may positively impact coagulopathy markers, while high-intensity exercise may increase thrombotic risk.
Conclusions:
- Low- to moderate-intensity exercise could serve as an adjuvant therapy for mild-to-moderate COVID-19.
- This exercise approach may reduce the risk of developing severe COVID-19 symptoms and associated mortality.
- Exercise has not been fully considered as a management strategy for COVID-19 despite its potential benefits.
Abstract:
The proinflammatory cytokine storm associated with coronavirus disease 2019 (COVID-19) negatively affects the hematological system, leading to coagulation activation and endothelial dysfunction and thereby increasing the risk of venous and arterial thrombosis. Coagulopathy has been reported as associated with mortality in people with COVID-19 and is partially reflected by enhanced D-dimer levels. Poor vascular health, which is associated with the cardiometabolic health conditions frequently reported in people with severer forms of COVID-19, might exacerbate the risk of coagulopathy and mortality. Sedentary lifestyles might also contribute to the development of coagulopathy, and physical activity participation has been inherently lowered due to at-home regulations established to slow the spread of this highly infectious disease. It is possible that COVID-19, coagulation, and reduced physical activity may contribute to generate a "perfect storm," where each fuels the other and potentially increases mortality risk. Several pharmaceutical agents are being explored to treat COVID-19, but potential negative consequences are associated with their use. Exercise is known to mitigate many of the identified side effects from the pharmaceutical agents being trialled but has not yet been considered as part of management for COVID-19. From the limited available evidence in people with cardiometabolic health conditions, low- to moderate-intensity exercise might have the potential to positively influence biochemical markers of coagulopathy, whereas high-intensity exercise is likely to increase thrombotic risk. Therefore, low- to moderate-intensity exercise could be an adjuvant therapy for people with mild-to-moderate COVID-19 and reduce the risk of developing severe symptoms of illness that are associated with enhanced mortality.
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