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Immuno-Thrombotic Complications of COVID-19: Implications for Timing of Surgery and Anticoagulation
Connor M Bunch1, Ernest E Moore2, Hunter B Moore2
1Department of Emergency Medicine, Henry Ford Hospital, Detroit, MI, United States.
Insights
Elective surgeries should be personalized for patients recovering from COVID-19 to reduce postoperative risks. A framework assessing COVID-19 illness severity, coagulopathy, and procedure acuity guides surgical timing for better outcomes.
Area of Science:
- Anesthesiology
- Cardiovascular Medicine
- Infectious Diseases
Background:
- Early pandemic guidelines delayed elective surgeries based on transmissibility and hospital capacity.
- Convalescent COVID-19 patients face increased postoperative risks, necessitating individualized risk assessment.
- COVID-19-associated coagulopathy (CAC) presents as a hypercoagulable state, increasing thromboembolic risks.
Purpose of the Study:
- To provide evidence for personalized preoperative risk assessment in COVID-19 patients undergoing elective surgery.
- To outline a framework for stratifying surgical fitness based on COVID-19 illness characteristics.
- To guide surgeons in managing perioperative risks associated with COVID-19-associated coagulopathy.
Main Methods:
- Review of current evidence on postoperative outcomes in COVID-19 patients.
- Analysis of pathophysiology including endotheliitis and COVID-19-associated coagulopathy.
- Proposal of a personalized risk stratification framework considering illness severity, coagulopathy, and surgical acuity.
Main Results:
- COVID-19 recovery is associated with significantly increased postoperative morbidity and mortality.
- Endotheliitis and fibrinolytic shutdown contribute to a hypercoagulable state in COVID-19 patients.
- Existing thromboprophylaxis guidelines for COVID-19 patients vary, highlighting the need for tailored approaches.
Conclusions:
- Elective surgeries should be delayed on a personalized basis for COVID-19 patients to optimize outcomes.
- A framework integrating COVID-19 severity, coagulopathy assessment, and surgical acuity is crucial.
- Perioperative assessment of CAC using viscoelastic hemostatic assays and microclot analysis is recommended.
Abstract:
Early in the coronavirus disease 2019 (COVID-19) pandemic, global governing bodies prioritized transmissibility-based precautions and hospital capacity as the foundation for delay of elective procedures. As elective surgical volumes increased, convalescent COVID-19 patients faced increased postoperative morbidity and mortality and clinicians had limited evidence for stratifying individual risk in this population. Clear evidence now demonstrates that those recovering from COVID-19 have increased postoperative morbidity and mortality. These data-in conjunction with the recent American Society of Anesthesiologists guidelines-offer the evidence necessary to expand the early pandemic guidelines and guide the surgeon's preoperative risk assessment. Here, we argue elective surgeries should still be delayed on a personalized basis to maximize postoperative outcomes. We outline a framework for stratifying the individual COVID-19 patient's fitness for surgery based on the symptoms and severity of acute or convalescent COVID-19 illness, coagulopathy assessment, and acuity of the surgical procedure. Although the most common manifestation of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection is COVID-19 pneumonitis, every system in the body is potentially afflicted by an endotheliitis. This endothelial derangement most often manifests as a hypercoagulable state on admission with associated occult and symptomatic venous and arterial thromboembolisms. The delicate balance between hyper and hypocoagulable states is defined by the local immune-thrombotic crosstalk that results commonly in a hemostatic derangement known as fibrinolytic shutdown. In tandem, the hemostatic derangements that occur during acute COVID-19 infection affect not only the timing of surgical procedures, but also the incidence of postoperative hemostatic complications related to COVID-19-associated coagulopathy (CAC). Traditional methods of thromboprophylaxis and treatment of thromboses after surgery require a tailored approach guided by an understanding of the pathophysiologic underpinnings of the COVID-19 patient. Likewise, a prolonged period of risk for developing hemostatic complications following hospitalization due to COVID-19 has resulted in guidelines from differing societies that recommend varying periods of delay following SARS-CoV-2 infection. In conclusion, we propose the perioperative, personalized assessment of COVID-19 patients' CAC using viscoelastic hemostatic assays and fluorescent microclot analysis.
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