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1.
Circulation ; 145(5): 345-356, 2022 02.
Article in English | MEDLINE | ID: covidwho-1807751

ABSTRACT

BACKGROUND: Understanding the clinical course and short-term outcomes of suspected myocarditis after the coronavirus disease 2019 (COVID-19) vaccination has important public health implications in the decision to vaccinate youth. METHODS: We retrospectively collected data on patients <21 years old presenting before July 4, 2021, with suspected myocarditis within 30 days of COVID-19 vaccination. Lake Louise criteria were used for cardiac MRI findings. Myocarditis cases were classified as confirmed or probable on the basis of the Centers for Disease Control and Prevention definitions. RESULTS: We report on 139 adolescents and young adults with 140 episodes of suspected myocarditis (49 confirmed, 91 probable) at 26 centers. Most patients were male (n=126, 90.6%) and White (n=92, 66.2%); 29 (20.9%) were Hispanic; and the median age was 15.8 years (range, 12.1-20.3; interquartile range [IQR], 14.5-17.0). Suspected myocarditis occurred in 136 patients (97.8%) after the mRNA vaccine, with 131 (94.2%) after the Pfizer-BioNTech vaccine; 128 (91.4%) occurred after the second dose. Symptoms started at a median of 2 days (range, 0-22; IQR, 1-3) after vaccination. The most common symptom was chest pain (99.3%). Patients were treated with nonsteroidal anti-inflammatory drugs (81.3%), intravenous immunoglobulin (21.6%), glucocorticoids (21.6%), colchicine (7.9%), or no anti-inflammatory therapies (8.6%). Twenty-six patients (18.7%) were in the intensive care unit, 2 were treated with inotropic/vasoactive support, and none required extracorporeal membrane oxygenation or died. Median hospital stay was 2 days (range, 0-10; IQR, 2-3). All patients had elevated troponin I (n=111, 8.12 ng/mL; IQR, 3.50-15.90) or T (n=28, 0.61 ng/mL; IQR, 0.25-1.30); 69.8% had abnormal ECGs and arrhythmias (7 with nonsustained ventricular tachycardia); and 18.7% had left ventricular ejection fraction <55% on echocardiogram. Of 97 patients who underwent cardiac MRI at a median 5 days (range, 0-88; IQR, 3-17) from symptom onset, 75 (77.3%) had abnormal findings: 74 (76.3%) had late gadolinium enhancement, 54 (55.7%) had myocardial edema, and 49 (50.5%) met Lake Louise criteria. Among 26 patients with left ventricular ejection fraction <55% on echocardiogram, all with follow-up had normalized function (n=25). CONCLUSIONS: Most cases of suspected COVID-19 vaccine myocarditis occurring in persons <21 years have a mild clinical course with rapid resolution of symptoms. Abnormal findings on cardiac MRI were frequent. Future studies should evaluate risk factors, mechanisms, and long-term outcomes.


Subject(s)
COVID-19 Vaccines/adverse effects , COVID-19/prevention & control , Myocarditis/diagnostic imaging , Myocarditis/physiopathology , Adolescent , Child , Electrocardiography/methods , Female , Humans , Magnetic Resonance Imaging, Cine/methods , Male , Myocarditis/blood , Myocarditis/etiology , Retrospective Studies , Time Factors , Young Adult
3.
Cardiol Young ; 32(5): 718-726, 2022 May.
Article in English | MEDLINE | ID: covidwho-1342787

ABSTRACT

BACKGROUND: A novel paediatric disease, multi-system inflammatory syndrome in children, has emerged during the 2019 coronavirus disease pandemic. OBJECTIVES: To describe the short-term evolution of cardiac complications and associated risk factors in patients with multi-system inflammatory syndrome in children. METHODS: Retrospective single-centre study of confirmed multi-system inflammatory syndrome in children treated from 29 March, 2020 to 1 September, 2020. Cardiac complications during the acute phase were defined as decreased systolic function, coronary artery abnormalities, pericardial effusion, or mitral and/or tricuspid valve regurgitation. Patients with or without cardiac complications were compared with chi-square, Fisher's exact, and Wilcoxon rank sum. RESULTS: Thirty-nine children with median (interquartile range) age 7.8 (3.6-12.7) years were included. Nineteen (49%) patients developed cardiac complications including systolic dysfunction (33%), valvular regurgitation (31%), coronary artery abnormalities (18%), and pericardial effusion (5%). At the time of the most recent follow-up, at a median (interquartile range) of 49 (26-61) days, cardiac complications resolved in 16/19 (84%) patients. Two patients had persistent mild systolic dysfunction and one patient had persistent coronary artery abnormality. Children with cardiac complications were more likely to have higher N-terminal B-type natriuretic peptide (p = 0.01), higher white blood cell count (p = 0.01), higher neutrophil count (p = 0.02), severe lymphopenia (p = 0.05), use of milrinone (p = 0.03), and intensive care requirement (p = 0.04). CONCLUSION: Patients with multi-system inflammatory syndrome in children had a high rate of cardiac complications in the acute phase, with associated inflammatory markers. Although cardiac complications resolved in 84% of patients, further long-term studies are needed to assess if the cardiac abnormalities (transient or persistent) are associated with major cardiac events.


Subject(s)
COVID-19 , Cardiovascular Abnormalities , Coronary Artery Disease , Pericardial Effusion , COVID-19/complications , Child , Child, Preschool , Humans , Pericardial Effusion/etiology , Retrospective Studies , SARS-CoV-2 , Systemic Inflammatory Response Syndrome
4.
Prog Pediatr Cardiol ; 61: 101383, 2021 Jun.
Article in English | MEDLINE | ID: covidwho-1185214

ABSTRACT

Objective: Medical education experienced widespread disruption during the first peak of the COVID-19 pandemic. In response, members of the Society of Pediatric Cardiology Training Program Directors (SPCTPD) created a series of live, Zoom-based lectures for pediatric cardiology fellows. The goals were to support fellow didactic education and connect fellows and faculty during the pandemic. We sought to determine the impact of the lecture series on pediatric cardiology fellows around the country. Methods: Pediatric cardiology experts from across the country volunteered to give lectures in the Pediatric Cardiology National Education Series (PC-NES). Lectures were held online once or twice weekly for 3 months during Spring 2020, while many fellows had modified clinical responsibilities. Fellows voluntarily completed an online survey before and after the lecture series. Results: On the initial survey, a majority of fellows responded they would benefit from more didactic education while their training was impacted by COVID-19. After the series concluded, almost all (95%) fellows responded that PC-NES lectures were valuable supplements to their training during COVID-19. They included quality of lectures, board-relevance, and a way to connect to the pediatric cardiology community as key reasons for participating in PC-NES, and 100% responded they felt PC-NES should continue in some capacity. Conclusion: The PC-NES was a low-cost, simple way to deliver high-quality supplemental education to pediatric cardiology fellows, help trainees build a network of peers and learn from experts outside their home institution. Similar models could connect other pediatric trainees at local, regional, or national levels, and provide valuable supplemental education opportunities.

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