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Remestemcel-L Therapy for COVID-19-Associated Multisystem Inflammatory Syndrome in Children
Allison Ross Eckard1, Kenneth M Borow2, Elizabeth H Mack3
1Department of Pediatrics, Medical University of South Carolina, Charleston, South Carolina; eckarda@musc.edu.
Insights
Remestemcel-L, a novel cell therapy, shows promise for treating severe multisystem inflammatory syndrome in children (MIS-C) with cardiovascular issues. This investigational treatment improved heart function and reduced inflammation in two pediatric patients.
Area of Science:
- Pediatric critical care medicine
- Immunology
- Regenerative medicine
Background:
- Multisystem inflammatory syndrome in children (MIS-C) is a serious post-infectious complication of COVID-19.
- MIS-C can lead to severe cardiovascular dysfunction, hemodynamic instability, and organ failure.
- Current treatments for MIS-C are nonspecific and their optimal approach remains unknown.
Observation:
- Two previously healthy children with life-threatening MIS-C presented with severe illness, including myocardial dysfunction and shock.
- Despite standard care, patients showed limited improvement with persistent cardiac dysfunction and elevated inflammatory markers.
- Both patients had negative SARS-CoV-2 PCR tests but positive serology upon admission.
Findings:
- Treatment with two intravenous doses of remestemcel-L (mesenchymal stromal cells) led to rapid normalization of left ventricular ejection fraction.
- Remestemcel-L administration resulted in significant reductions in systemic and cardiac inflammation biomarkers.
- Patients experienced improved clinical status without adverse effects related to remestemcel-L.
Implications:
- Remestemcel-L demonstrates potential as a novel immunomodulatory therapy for MIS-C.
- This cell therapy may be particularly beneficial for children with significant cardiovascular manifestations of MIS-C.
- Further investigation into remestemcel-L for MIS-C is warranted.
Abstract:
Multisystem inflammatory syndrome in children (MIS-C) is a serious postinfectious immune dysregulation associated with coronavirus disease 2019 that may present with severe and life-threatening cardiovascular dysfunction, hemodynamic instability, shock, and multisystem organ failure. Optimal treatment is unknown. Current standard of care consists of nonspecific anti-inflammatory and antithrombotic therapies. Interventions that target MIS-C's distinctive clinical features and immunophenotype are indicated. Remestemcel-L, an investigational mesenchymal stromal cell therapy, is a promising candidate for treatment of MIS-C because of its beneficial anti-inflammatory, immunomodulatory, endothelial function and vascular stabilizing effects, which align well with the pathophysiology of MIS-C. Here, we present the first two patients with life-threatening MIS-C ever treated with remestemcel-L under an expanded access program. Both were previously healthy children without any indication of previous coronavirus disease 2019 infection or exposure. They presented with severe clinical illness including myocardial dysfunction, hemodynamic instability, hypotension, acute kidney injury, and shock. At the time of hospital admission, both had negative polymerase chain reaction (PCR) test results and positive serology results for severe acute respiratory syndrome coronavirus 2. Both children received standard of care MIS-C treatment. Although the patients showed some clinical improvement, left ventricular ejection fraction remained reduced and inflammatory biomarkers remained significantly elevated. When treated with two intravenous doses of remestemcel-L separated by 48 hours, rapid normalization of left ventricular ejection fraction, notable reductions in biomarkers of systemic and cardiac inflammation, and improved clinical status occurred. Neither child experienced adverse effects associated with remestemcel-L administration. This treatment appears promising as a novel immunomodulatory cellular therapy for children with clinically significant cardiovascular manifestations of MIS-C.
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