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Algorithm for the diagnosis and management of the multisystem inflammatory syndrome in children associated with
Serhat Emeksiz1, Banu Çelikel Acar2, Ayşe Esin Kibar3
1Department of Pediatric Intensive Care Unit, Ankara City Hospital, Ankara Yıldırım Beyazıt University, Ankara, Turkey.
Insights
Multisystem inflammatory syndrome in children (MIS-C) is a severe condition linked to COVID-19. This study outlines a protocol for evaluating, treating, and following up on these pediatric cases.
Area of Science:
- Pediatric critical care medicine
- Infectious diseases
- Rheumatology
Background:
- Initial reports indicated children were largely protected from severe COVID-19.
- Clusters of severe systemic hyperinflammation and shock in children emerged in April 2020.
- This novel condition, multisystem inflammatory syndrome in children (MIS-C), shares features with Kawasaki disease, toxic shock syndrome, and HLH/MAS.
Purpose of the Study:
- To develop a comprehensive protocol for the evaluation, treatment, and follow-up of pediatric patients diagnosed with MIS-C.
- To provide guidance for managing a new, severe inflammatory syndrome in children associated with SARS-CoV-2 infection.
Main Methods:
- A multidisciplinary working group was assembled, including experts from various pediatric specialties.
- The protocol was developed based on existing literature and clinical experience with MIS-C.
- Recommendations were refined through expert feedback after initial implementation.
Main Results:
- Children with MIS-C can experience acute cardiac decompensation and other organ system failures.
- Severe MIS-C cases require management in a pediatric intensive care unit due to potential rapid deterioration.
- Tailored therapeutic approaches based on patient phenotypes are recommended.
Conclusions:
- Prompt recognition and intensive care are crucial for severe MIS-C cases.
- Plasmapheresis may be a valuable treatment for hypercytokinemia in severe MIS-C.
- Long-term cardiac monitoring is essential for patients with MIS-C to detect potential sequelae.
Objective:
Although the initial reports of COVID-19 cases in children described that children were largely protected from severe manifestations, clusters of paediatric cases of severe systemic hyperinflammation and shock related to severe acute respiratory syndrome coronavirus 2 infection began to be reported in the latter half of April 2020. A novel syndrome called "multisystem inflammatory syndrome in children" (MIS-C) shares common clinical features with other well-defined syndromes, including Kawasaki disease, toxic shock syndrome and secondary hemophagocytic lymphohistiocytosis/macrophage activation syndrome. Our objective was to develop a protocol for the evaluation, treatment and follow-up of patients with MIS-C.
Methods:
The protocol was developed by a multidisciplinary team. We convened a multidisciplinary working group with representation from the departments of paediatric critical care, cardiology, rheumatology, surgery, gastroenterology, haematology, immunology, infectious disease and neurology. Our protocol and recommendations were based on the literature and our experiences with multisystem inflammatory syndrome in children. After an agreement was reached and the protocol was implemented, revisions were made on the basis of expert feedback.
Conclusion:
Children may experience acute cardiac decompensation or other organ system failure due to this severe inflammatory condition. Therefore, patients with severe symptoms of MIS-C should be managed in a paediatric intensive care setting, as rapid clinical deterioration may occur. Therapeutic approaches for MIS-C should be tailored depending on the patients' phenotypes. Plasmapheresis may be useful as a standard treatment to control hypercytokinemia in cases of MIS-C with severe symptoms. Long-term follow-up of patients with cardiac involvement is required to identify any sequelae of MIS-C.
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