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  1. 1
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    Academic Journal

    Contributors: Not specified., Отсутствует.

    Source: Current Pediatrics; Том 24, № 1 (2025); 26-36 ; Вопросы современной педиатрии; Том 24, № 1 (2025); 26-36 ; 1682-5535 ; 1682-5527

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    Relation: https://vsp.spr-journal.ru/jour/article/view/3683/1429; Баранов А.А., Намазова-Баранова Л.С., Таточенко В.К. и др. Обзор клинических рекомендаций по болезни/синдрому Кавасаки // Педиатрическая фармакология. — 2017. — Т. 14. — № 2. — С. 87–99. — doi: https://doi.org/10.15690/pf.v14i2.1723.; Kontopoulou T, Kontopoulos DG, Vaidakis E, Mousoulis GP. Adult Kawasaki disease in a European patient: a case report and review of the literature. J Med Case Rep. 2015;9:75. doi: https://doi.org/10.1186/s13256-015-0516-9; Makino N, Nakamura Y, Yashiro M, et al. Descriptive epidemiology of Kawasaki disease in Japan, 2011-2012: from the results of the 22nd nationwide survey. J Epidemiol. 2015;25(3):239–245. doi: https://doi.org/10.2188/jea.JE20140089; Kawasaki Disease. In: Centers for Disease Control and Prevention: Official website. Available online: https://www.cdc.gov/kawasaki. Accessed on December 27, 2024.; Lin MC, Lai MS, Jan SL, et al. Epidemiologic features of Kawasaki disease in acute stages in Taiwan, 1997–2010: effect of different case definitions in claims data analysis. J Chin Med Assoc. 2015;78(2): 121–126. doi: https://doi.org/10.1016/j.jcma.2014.03.009; Брегель Л.В., Субботин В.М., Солдатова Т.А. и др. Эпидемиологические особенности болезни Кавасаки в Иркутской области. Результаты многолетних наблюдений // Педиатрия. Журнал им. Г.Н. Сперанского. — 2011. — Т. 90. — № 5. — С. 49–53.; Singh S, Jindal AK, Pilania RK. Diagnosis of Kawasaki disease. Int J Rheum Dis. 2018;21(1):36–44. doi: https://doi.org/10.1111/1756-185X.13224; Kuo HC. Diagnosis. progress, and treatment update of Kawasaki disease. Int J Mol Sci. 2023;24(18):13948. doi: https://doi.org/10.3390/ijms241813948; Swanson KV, Deng M, Ting JP. The NLRP3 inflammasome: molecular activation and regulation to therapeutics. Nat Rev Immunol. 2019;19(8):477–489. doi: https://doi.org/10.1038/s41577-019-0165-0; Bordea MA, Costache C, Grama A, et al. Cytokine cascade in Kawasaki disease versus Kawasaki-like syndrome. Physiol Res. 2022;71(1):17–27. doi: https://doi.org/10.33549/physiolres.934672; Слизисто-кожный лимфонодулярный синдром [Кавасаки] M30.3: клинические рекомендации / Союз педиатров России. — Минздрав России; 2016. — 41 с.; Wessels PA, Bingler MA. A comparison of Kawasaki Disease and multisystem inflammatory syndrome in children. Prog Pediatr Cardiol. 2022;65:101516. doi: https://doi.org/10.1016/j.ppedcard.2022.101516; Таточенко В.К., Бакрадзе М.Д. Педиатру на каждый день – 2022. Лихорадки: справочник по диагностике и лечению. — М.: ФГАУ «НМИЦ здоровья детей» Минздрава России; 2022. — 440 с.; Noval Rivas M, Arditi M. Kawasaki disease: pathophysiology and insights from mouse models. Nat Rev Rheumatol. 2020;16(7): 391–405. doi: https://doi.org/10.1038/s41584-020-0426-0; Zhu X, Zhou Q, Tong S, Zhou Y. Challenges and strategies in the management of coronary artery aneurysms. Hellenic J Cardiol. 2021;62(2):112–120. doi: https://doi.org/10.1016/j.hjc.2020.09.004; Thangathurai J, Kalashnikova M, Takahashi M, Shinbane JS. Coronary Artery Aneurysm in Kawasaki Disease: Coronary CT Angiography through the Lens of Pathophysiology and Differential Diagnosis. Radiol Cardiothorac Imaging. 2021;3(5):e200550. doi: https://doi.org/10.1148/ryct.2021200550; Singhal M, Pilania RK, Jindal AK, et al. Distal coronary artery abnormalities in Kawasaki disease: experience on CT coronary angiography in 176 children. Rheumatology (Oxford). 2023;62(2):815–823. doi: https://doi.org/10.1093rheumatology/keac217; Соколовская В.В., Литвинова А.А., Крикова А.В., Козлов Р.С. Синдром Кавасаки у ребенка раннего возраста: клинический случай // Детские инфекции. — 2023. — Т. 22. — № 4. — С. 63–68. — doi: https://doi.org/10.22627/2072-8107-2023-22-4-63-68; Зыков В.В., Мальцев А.Е., Разин М.П. Судебно-медицинские и клинические аспекты диагностики синдрома Кавасаки // Вятский медицинский вестник. — 2018. — Т. 56. — № 4. — С. 11–15.

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    Academic Journal

    Source: Journal Infectology; Том 16, № 4 (2024); 49-59 ; Журнал инфектологии; Том 16, № 4 (2024); 49-59 ; 2072-6732 ; undefined

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    Relation: https://journal.niidi.ru/jofin/article/view/1709/1169; Nikolopoulou G. B., Maltezou H. C. COVID-19 in children: where do we stand? //Archives of medical research. – 2022. – Т. 53. – №. 1. – С. 1-8.; Инфекция, вызванная SARS-CoV-2 / А.А. Андреенко [и др.]; Военно-медицинская академия имени С.М. Кирова. – СПб.: ВМА им. С.М. Кирова, 2023. – 260 с. – ISBN 978-5-94277-103-4.; Riphagen S. et al. Hyperinflammatory shock in children during COVID-19 pandemic //The Lancet. – 2020. – Т. 395. – №. 10237. – С. 1607-1608.; Беседина, Е.А. Мультисистемный воспалительный синдром или Кавасаки-подобный синдром у детей, ассоциированный с COVID-19 / Е.А. Беседина, Т.В. Буркова // Медицинский вестник Юга России. – 2023. – Т. 14, № 2. – С. 76–83; Fabi M. et al. Kawasaki disease, multisystem inflammatory syndrome in children, and adenoviral infection: a scoring system to guide differential diagnosis //European journal of pediatrics. – 2023. – Т. 182. – №. 11. – С. 4889-4895.; Lee P. I., Hsueh P. R. Multisystem inflammatory syndrome in children: A dysregulated autoimmune disorder following COVID-19 //Journal of Microbiology, Immunology and Infection. – 2023. – Т. 56. – №. 2. – С. 236-245.; Avcu G. et al. Misdiagnosis of multisystem inflammatory syndrome in children: A diagnostic challenge //Journal of paediatrics and child health. – 2023. – Т. 59. – №. 4. – С. 667-672.; Патогенез и клинические проявления поражения сердечно-сосудистой системы у пациентов с новой коронавирусной инфекцией (COVID-19) : учебное пособие / Е.В. Крюков, К.С. Шуленин, Д.В. Черкашин. – СПб., 2021. – 36 с. https://www.elibrary.ru/item.asp?id=46333748; Прогностическое значение некоторых гематологических синдромов при инфекции, вызванной SARS-COV-2 / А.С. Поляков [и др.] // Гематология. Трансфузиология. Восточная Европа. – 2020. – Т. 6, № 2. – С. 161–171. – https://www.elibrary.ru/item.asp?id=43065813; Джаксыбаева, И. Иммунологические особенности у детей с мультисистемным воспалительным синдромом, ассоциированным с SARS-COV-2 / И. Джаксыбаева, Р. Боранбаева, Г. Ташенова // Актуальные вопросы практической педиатрии. – 2023. – Т. 1, № 1. – С. 86–88.; Симбирцев, А.С. Цитокины в патогенезе и лечении заболеваний человека / А.С. Симбирцев. – СПб: Фолиант, 2018. – 512 с.; DeBiasi, R.L. Multisystem inflammatory syndrome of children: subphenotypes, risk factors, biomarkers, cytokine profiles, and viral sequencing / R.L. DeBiasi, A.S. Harahsheh, H. Srinivasalu, A. Krishnan [et al.] // The Journal of Pediatrics. – 2021. – Vol. 237. – P. 125–135. e18.; Rey-Jurado, E. Deep immunophenotyping reveals biomarkers of multisystemic inflammatory syndrome in children in a Latin American cohort / E. ReyJurado, Y. Espinosa, C. Astudillo, L.J. Cortés [et al.] //journal of Allergy and Clinical Immunology. – 2022. – Vol. 150, № 5. – P. 1074–1085. e11.; Diorio, C. Multisystem inflammatory syndrome in children and COVID-19 are distinct presentations of SARS–CoV-2 / C. Diorio, S.E. Henrickson, L.A. Vella, K.O. cNerney [et al.] //journal of Clinical Investigation. – 2020. – Vol.130, № 11. – P. 5967–5975.; Porritt, R.A. The autoimmune signature of hyperinflammatory multisystem inflammatory syndrome in children / R.A. Porritt, A. Binek, L. Paschold, M.N. Rivas [et al.] //journal of Clinical Investigation. – 2021. – Vol. 131, № 20.; https://journal.niidi.ru/jofin/article/view/1709

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    Academic Journal

    Contributors: The work was performed using the equipment of the Proteomny Analysis Center for Collective Use, supported by funding from the Russian Ministry of Education and Science (agreement No. 075‐15‐2021‐691)., Работа выполнена с использованием оборудования ЦКП «Протеомный анализ», поддержанного финансированием Минобрнауки России (соглашение № 075‐15‐2021‐691).

    Source: South of Russia: ecology, development; Том 19, № 2 (2024); 6-16 ; Юг России: экология, развитие; Том 19, № 2 (2024); 6-16 ; 2413-0958 ; 1992-1098

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    Relation: https://ecodag.elpub.ru/ugro/article/view/3145/1416; Auger N., Côté-Corriveau G., Kang H., Quach C., Lo E., Eun Lee G., Healy-Profitós J., Brousseau E., Luu T.M. Multisystem inflammatory syndrome in 1.2 million children: longitudinal cohort study of risk factors // Pediatric Research. 2024. N 95. P. 325–333. https://doi.org/10.1038/s41390-023-02633-y; Ogimi C., Kim Y.J., Martin E.T., et al. What’s new with the old coronaviruses? // J. Pediatric Infect. Dis. Soc. 2020. V. 9. N 2. P. 210–217. https://doi.org/10.1093/jpids/piaa037; Рябиченко Т.И., Скосырева Г.А., Обухова О.О., Курская О.Г., Косьянова Т.Г., Горбенко О.М., Шваюк А.П. Этиологическая структура острых респираторных вирусных инфекций у детей, госпитализированных в стационар в 2015–2018 // Инфекционные болезни: новости, мнения, обучение. 2021. Т. 10. N 2. С. 47–53. https://doi.org/10.33029/2305-3496-2021-10-2-47-53; Lu X., Zhang L., Du H., Zhang J., Li Y.Y., Qu J., Zhang W., Wang Y., Bao S., Li Y., Wu C., Liu H., Liu D., Shao J., Peng X., Yang Y., Liu Z., Xiang Y., Zhang F., Silva R.M, Pinkerton K.E., Shen K., Xiao H., Xu S., Wong G.K. Chinese Pediatric Novel Coronavirus Study Team. SARS-CoV-2 Infection in Children // N. Engl. J. Med. 2020. V. 382. N 17. P. 1663–1665. https://doi.org/10.1056/NEJMc2005073; Riphagen S., Gomez X., Gonzales-Martinez C., Wilkinson N., Theocharis P. Hyperinflammatory shock in children during COVID-19 pandemic // Lancet. 2020. V. 395. Iss. 10237. P. 1607–1608. https://doi.org/10.106/S0140-6736(20)31094-1; Хидирова Л.Д., Федорук В.А., Васильев К.О. Роль новой коронавирусной инфекции, вызванной вирусом SARS-CoV-2, в манифестации мультисистемного воспалительного синдрома // Профилактическая медицина. 2021. Т. 24. N 6. С. 110–115. https://doi.org/10.17116/profmed202124061110; Hoste L, Van Paemel R., Haerynck F. Multisystem inflammatory syndrome in children related to COVID-19: a systematic review // Eur J Pediatr. 2021. N 180. P. 2019–2034. https://doi.org/10.1007/ s00431-021-03993-5; Schultz C.M., Burke L.A., Kent D.A. A Systematic Review and Meta-analysis of the Initial Literature Regarding COVID-19 Symptoms in Children in the United States // J Pediatr Health Care. 2023. V. S0891–5245. N 23. P. 00055–X. https://doi.org/10.1016/j.pedhc.2023.02.006; Mubbasheer A., Shailesh A., Axel M., et al. Multisystem inflammatory syndrome in children: A systematic review // EClinicalMedicine. 2020. N 26. P. 100527–100542. https://doi.org/10.1016/j.eclinm.2020.100527; Цибулевский А.Ю., Соколов А.В. Микроэкология человека // Успехи современного естествознания. 2008. N 7. С. 22–26.; Belkaid Y., Harrison O. Homeostatic Immunity and the Microbiota // Immunity. 2017. V. 46. N 4. P. 562–576. https://doi.org/10.1016/j.immuni.2017.04.008; Методические рекомендации «Особенности клинических проявлений и лечения заболевания, вызванного новой короновирусной инфекцией (COVID-19) у детей. Версия 2. URL: https://static0.minzdrav.gov.ru/system/attachments/attaches/000/050/914/original/03062020_дети_COVID-19_v2.pdf (дата обращения: 30.12.2023); World Health Organization. Multisystem inflammatory syndrome in children and adolescents with COVID-19. URL: https://www.who.int/publications-detail/multisysteminflammatorysyndrome-in-children-and-adolescents-withcovid-19 (дата обращения: 15.02.2024); Романчук Н.П. Здоровая микробиота и натуральное функциональное питание: гуморальный и клеточный иммунитет // Бюллетень науки и практики. 2020. Т. 6. N 9. С.127–166. https://doi.org/10.33619/2414-2948/58/14; Abdo Z., Le Cureux J., Dean G.A. Impact of oral probiotic Lactobacillus acidophilus vaccine estrains on the immune response and gut microbiome of mice strains on the immune response and gut microbiome of mice // PLoS One. 2019. V. 14. N 12. e0225842-48. https://doi.org/10.1371/journal.pone.0225842.; Рябиченко Т.И., Чаукина В.А., Скосырева Г.А., Обухова О.О., Калмыкова А.И., Тимофеева Е.П., Карцева Т.В.Оценка результатов использования продуктов пробиотического питания у детей, посещающих детские дошкольные учреждения // Вопросы детскойдиетологии. 2019. Т.17. N 4. С. 33–39. https://doi.org/10.20953/1727-5784-2019-4-; Каламбет Е.И., Османов И.М., Сухоруков В.С., Шабельникова Е.И., Хавкин А.И. Нарушения клеточного энергообмена и их коррекция при заболеваниях органов пищеварения у детей // Вопросы практической педиатрии. 2012. Т. 7. N 2. С. 69–72.; Шаповал Н.С., Медведев О.С., Медведева Н.А., Моргун А.В., Бойцова Е.Б., Осипова Е.Д., Салмина А.Б. Влияние окисленной и восстановленной форм коэнзима q10 (убихинона и убихинола) на клетки церебрального эндотелия в модели гематоэнцефалического барьера // Цитология. 2020. Т. 62. N 6. С. 428–436. https://doi.org/10.31857/S0041377120060085; Носаль Л.А., Симонова Н.В., Доровских В.А., Штарберг М.А. Применение реамберина для коррекции антиоксидантного статуса при эпилепсии у детей // Журнал неврологии и психиатрии им. Корсакова С.С. 2019. Т. 119. N 11–2. С. 74–79. https://doi.org/10.17116/jnevro201911911274; Бондаренко Д.А., Смирнов Д.В., Симонова Н.В., Доровских В.А., Штарберг М.А. Эффективность реамберина в коррекции процессов перекисного окисления липидов в плазме крови больных раком яичников // Онкология. Журнал им. Герцена П.А. 2018. N 6. С. 40–44. https://doi.org/10.17116/onkolog2018706140; Прозорный А.А., Кривошеин А.Е. Оценка эффективности применения омега-3 и омега-6 жирных кислот, антиоксидантов и витаминов группы B в комплексном лечении синдрома сухого глаза на фоне дисфункции мейбомиевых желез // Forcipe. 2021. Т. 4. N S1. С. 663–664.; Рябиченко Т.И., Обухова О.О., Скосырева Г.А., Карпович Г.С., Митрофанов И.М., Куимова И.В., Калмыкова А.И., Воевода М.И. Способ комплексной терапии пациентов детского возраста с вирусной инфекцией с использованием продуктов пробиотического питания. Патент на изобретение РФ. N 2793833. 2023.; https://ecodag.elpub.ru/ugro/article/view/3145

  8. 8
    Academic Journal

    Contributors: Not specified., Отсутствует.

    Source: Pediatric pharmacology; Том 21, № 4 (2024); 350-360 ; Педиатрическая фармакология; Том 21, № 4 (2024); 350-360 ; 2500-3089 ; 1727-5776

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    Relation: https://www.pedpharma.ru/jour/article/view/2507/1629; Новикова Ю.Ю., Овсянников Д.Ю., Абрамов Д.С. и др. Детский мультисистемный воспалительный синдром, ассоциированный с новой коронавирусной инфекцией (COVID-19): учебное пособие / под ред. Д.Ю. Овсянникова, Е.Е. Петряйкиной. — М.: РУДН; 2020. — 62 с.; Кантемирова М.Г., Новикова Ю.Ю., Овсянников Д.Ю. и др. Детский мультисистемный воспалительный синдром, ассоциированный с новой коронавирусной инфекцией (COVID-19): актуальная информация и клиническое наблюдение // Педиатрическая фармакология. — 2020. — Т. 17. — № 3. — С. 219–229. — doi: https://doi.org/10.15690/pf.v17i3.2126; Melgar M, Lee EH, Miller AD, et al. Council of State and Territorial Epidemiologists/CDC Surveillance Case Definition for Multisystem Inflammatory Syndrome in Children Associated with SARS-CoV-2 Infection — United States. MMWR Recomm Rep. 2022;71(4):1–14. doi: https://doi.org/10.15585/mmwr.rr7104a1; Tang Y, Li W, Baskota M, et al. Multisystem inflammatory syndrome in children during the coronavirus disease 2019 (COVID-19) pandemic: a systematic review of published case studies. Transl Pediatr. 2021;10(1):121–135. doi: https://doi.org/10.21037/tp-20-188; Duong-Quy S, Huynh-Truong-Anh D, Le-Thi-Hong N, et al. Acute Respiratory Distress Syndrome Associated with Multisystem Inflammatory Syndrome in a Child with Covid-19 and Diabetic Ketoacidosis: A Case Report. Pulm Ther. 2022;8(3):333–342. doi: https://doi.org/10.1007/s41030-022-00192-x; Parappil P, Ghimire S, Saxena A, et al. New-onset diabetic ketoacidosis with purpura fulminans in a child with COVID-19- related multisystem inflammatory syndrome. Infect Dis (Lond). 2022;54(7):522–528. doi: https://doi.org/10.1080/23744235.2022.2050423; Naguib M, Raymond J, Vidmar A. New onset diabetes with diabetic ketoacidosis in a child with multisystem inflammatory syndrome due to COVID-19. J Pediatr Endocrinol Metab. 2020;34(1):147–150. doi: https://doi.org/10.1515/jpem-2020-0426; Aly HH, Fouda EM, Kotby AA, et al. COVID-19-Related Multisystem Inflammatory Syndrome in Children Presenting With New-Onset Type 1 Diabetes in Severe Ketoacidosis: A Case Series. Diabetes Care. 2022;45(4):983–989. doi: https://doi.org/10.2337/dc21-1094; Тихонович Ю.В., Ртищев А.Ю., Глазырина А.А. и др. Детский мультисистемный воспалительный синдром, ассоциированный с COVID-19, у пациентки 6 лет с манифестацией сахарного диабета 1-го типа диабетическим кетоацидозом // Педиатрия. Журнал им. Г.Н. Сперанского. — 2021. — Т. 100. — № 2. — С. 295–300.; Ludvigsson J.F. Systematic review of COVID-19 in children shows milder cases and a better prognosis than adults. Acta Paediatr. 2020;109(6):1088–1095. doi: https://doi.org/10.1111/apa.15270; Karavanaki K, Rodolaki K, Soldatou A, et al. Covid-19 infection in children and adolescents and its association with type 1 diabetes mellitus (T1d) presentation and management. Endocrine. 2023;80(2): 237–252. doi: https://doi.org/10.1007/s12020-022-03266-7; Sankar J, Dhochak N, Kabra SK, Lodha R. COVID-19 in children: clinical approach and management. Indian J Pediatr. 2020;87(6):433–442. doi: https://doi.org/10.1007/s12098-020-03292-1; Duarte-Neto AN, Caldini EG, Gomes-Gouvêa MS, et al. An autopsy study of the spectrum of severe COVID-19 in children: From SARS to different phenotypes of MIS-C. EClinicalMedicine. 2021;35:100850. doi: https://doi.org/10.1016/j.eclinm.2021.100850; Khunti K, Prato SD, Mathieu C, et al. COVID-19, hyperglycemia, and new-onset diabetes. Diabetes Care. 2021;44(12): 2645–2655. doi: https://doi.org/10.2337/dc21-1318; Viner RM, Whittaker E. Kawasaki-like disease: emerging complication during the COVID-19 pandemic. Lancet. 2020;395(10239):1741–1743. doi: https://doi.org/10.1016/S0140-6736(20)31129-6; Holm M, Hartling UB, Schmidt LS, et al. Multisystem inflammatory syndrome in children occurred in one of four thousand children with severe acute respiratory syndrome coronavirus 2. Acta Paediatr. 2021;110(9):2581–2583. doi: https://doi.org/10.1111/apa.15985; Payne AB, Gilani Z, Godfred-Cato S, et al. Incidence of Multisystem Inflammatory Syndrome in Children Among US Persons Infected With SARS-CoV-2. JAMA Netw Open. 2021;4(6):e2116420. doi: https://doi.org/10.1001/jamanetworkopen.2021.16420; Lai CC, Hsu CK, Hsueh SC, et al. Multisystem inflammatory syndrome in adults: Characteristics, treatment, and outcomes. J Med Virol. 2023;95(2):e28426. doi: https://doi.org/10.1002/jmv.28426; Silva Luz M, Lemos FFB, Rocha Pinheiro SL, et al. Pediatric multisystem inflammatory syndrome associated with COVID-19: Insights in pathogenesis and clinical management. World J Virol. 2023;12(3):193–203. doi: https://doi.org/10.5501/wjv.v12.i3.193; Nakra NA, Blumberg DA, Herrera-Guerra A, Lakshminrusimha S. Multi-System Inflammatory Syndrome in Children (MIS-C) Following SARS-CoV-2 Infection: Review of Clinical Presentation, Hypothetical Pathogenesis, and Proposed Management. Children. 2020;7(7):69. doi: https://doi.org/10.3390/children7070069; Parra Villasmil MG, Patel S, Tansey M, et al. A Rare Presentation of New-Onset Type 1 Diabetes Mellitus in a Developmentally Delayed Child With an Overlap of Diabetic Ketoacidosis and Hyperglycemic Hyperosmolar State. Cureus. 2022;14(9):e28983. doi: https://doi.org/10.7759/cureus.28983; Chun SH, Lee HS, Hwang JS. Hyperosmolar hyperglycemic state as the first manifestation of type 1 diabetes mellitus in an adolescent male: a case report. Ann Pediatr Endocrinol Metab. 2022;27(1):69–72. doi: https://doi.org/10.6065/apem.2142002.001; https://www.pedpharma.ru/jour/article/view/2507

  9. 9
    Academic Journal

    Source: CHILDREN INFECTIONS; Том 23, № 4 (2024); 29-34 ; ДЕТСКИЕ ИНФЕКЦИИ; Том 23, № 4 (2024); 29-34 ; 2618-8139 ; 2072-8107

    File Description: application/pdf

    Relation: https://detinf.elpub.ru/jour/article/view/993/690; Livingston E., Bucher K. Coronavirus disease 2019 (COVID-19) in Italy. JAMA 2020; 323(14):1335 doi:10.1001/jama.2020.4344; The Novel Coronavirus Pneumonia Emergency Response Epidemiology Team. The Epidemiological Characteristics of an Outbreak of 2019 Novel Coronavirus Diseases COVID-19-China. CCDC Weekly. 2020; (2):1—10.; Jiang L., Tang K., Levin M., et al.COVID-19 and multisystem inflammatory syndrome in children and adolescents. Lancet Infect Dis. 2020:S1473-3099(20)30651—4. DOI:10.1016/S1473-3099(20)30651-4; Методические рекомендации: особенности клинических проявлений и лечения заболевания, вызванного новой коронавирусной инфекцией (COVID-19) у детей. Версия 2 от 03.07.2020. URL: https://static0.minzdrav.gov.ru/system/attachments/attaches/000/050/914/original/03062020_дети_COVID-19_v2.pdf; Tezer H., Bedir Demirdağ T. Turk. Novel coronavirus disease (COVID-19) in children. J. Med. Sci. 2020; 50(SI-1):592—603. doi:10.3906/sag-2004-174; Yasuhara J., Kuno T., Takagi H., Sumitomo N. Clinical characteristics of COVID-19 in children: A systematic review. Pediatr. Pulmonol. 2020; 55(10):2565—2575. doi:10.1002/ppul.24991; Горелов А.В., Николаева С.В., Акимкин В.Г. Новая коронавирусная инфекция COVID-19: особенности течения у детей в Российской Федерации. Педиатрия. Журнал им. Г.Н. Сперанского 2020; 99(6):57— 62 doi:10.24110/0031-403X-2020-99-6-57-62; Каледа М.И., Никишина И.П., Федоров Е.С., Насонов Е.Л. Коронавирусная болезнь 2019 (COVID-19) у детей: уроки педиатрической ревматологии. Научно-практическая ревматология. 2020; 58(5):469— 479.; Radia T., Williams N., Agrawal P., Harman K., Weale J., Cook J., Gupta A. Multi-system inflammatory syndrome in children & adolescents (MIS-C): A systematic review of clinical features and presentation. Paediatr. Respir. Rev. 2021; 38(35):51—7 doi:10.1016/j.prrv.2020.08.001; Nakra N.A., Blumberg D.A., Herrera-Guerra A., Lakshminrusimha S. MultiSystem Inflammatory Syndrome in Children (MIS-C) Following SARS- CoV-2 Infection: Review of Clinical Presentation, Hypothetical Pathogenesis, and Proposed Management. Children (Basel). 2020; 7(7):69 doi:10.3390/children7070069; Kaushik A, Gupta S, Sood M, Sharma S, Verma S. A systematic review of multisystem inflammatory syndrome in children associated with SARS-CoV-2 infection. Pediatr Infect Dis J. 2020; 39(11):e340—e346. doi:10.1097/INF.0000000000002888; Ahmed M, Advani S, Moreira A, Zoretic S, Martinez J, Chorath K, et al. Multisystem inflammatory syndrome in children: A systematic review. EClinicalMedicine. 2020; 26:100527. DOI:10.1016/j.eclinm.2020.100527; Carter MJ, Fish M, Jennings A, Doores KJ. et al. Peripheral immunophenotypes in children with multisystem inflammatory syndrome associated with SARS-CoV-2 infection. Nat Med. 2020; 26(11):1701—1707. doi:10.1038/s41591-020-1054-6; Consiglio CR, Cotugno N, Sardh F, Pou C. et al. The immunology of multisystem inflammatory syndrome in children with COVID-19. Cell. 2020; 183(4):968—981.e7. 10.1016/j.cell.2020.09.016; Rowley AH. Understanding SARS-CoV-2-related multisystem inflammatory syndrome in children. Nat Rev Immunol. 2020; 20:453—454. doi:10.1038/s41577-020-0367-5; Abdel-Haq N, Asmar BI, Deza Leon MP, McGrath EJ, Arora HS, Cashen K, Tilford B, Charaf Eddine A, Sethuraman U, Ang JY. SARS-CoV-2-associated multisystem inflammatory syndrome in children: clinical manifestations and the role of infliximab treatment. Eur J Pediatr. 2021; 180(5):1581—1591. doi:10.1007/s00431-021-03935-1; Colomba C, La Placa S, Saporito L, Corsello G, Ciccia F, Medaglia A, et al. Intestinal involvement in Kawasaki disease. J Pediatr. 2018; 202:186— 193. doi:10.1016/j.jpeds.2018.06.034; Kузубовa Н.A., Tитовa O.Н. Т2-ассоциированные заболевания: в фокусе коморбидный пациент. Медицинский совет. 2020; 17:57—64.; Namita A. Gandhi, Brandy L. Bennett, Neil M. H. Graham, Gianluca Pirozzi, Neil Stahl. Targeting key proximal drivers of type 2 inflammation in disease. Nature Reviews Drug Discovery. 2016; 15(1):35—50. doi:10.1038/nrd4624; Licari А., Castagnoli R., Marseglia A., Olivero F., Votto M. Dupilumab to Treat Type 2 Inflammatory Diseases in Children and Adolescents. Paediatric Drugs. 2020; 22(6):295—310. doi:10.1007/s40272-020-00387-2; https://detinf.elpub.ru/jour/article/view/993

  10. 10
  11. 11
  12. 12
    Academic Journal

    Source: Сучасна педіатрія. Україна; № 6(134) (2023): Сучасна педіатрія. Україна; 142-148 ; Modern Pediatrics. Ukraine; No. 6(134) (2023): Modern pediatrics. Ukraine; 142-148 ; Modern Pediatrics. Ukraine; № 6(134) (2023): Modern pediatrics. Ukraine; 142-148 ; 2706-6134 ; 2663-7553

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  13. 13
    Academic Journal

    Source: Russian Journal of Pediatric Surgery, Anesthesia and Intensive Care; Vol 12, No 4 (2022); 489-503 ; Российский вестник детской хирургии, анестезиологии и реаниматологии; Vol 12, No 4 (2022); 489-503 ; 2587-6554 ; 2219-4061 ; 10.17816/psaic.20224

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  14. 14
    Academic Journal

    Contributors: The study did not have sponsorship, Исследование не имело спонсорской поддержки

    Source: Medical Herald of the South of Russia; Том 14, № 2 (2023); 76-83 ; Медицинский вестник Юга России; Том 14, № 2 (2023); 76-83 ; 2618-7876 ; 2219-8075 ; 10.21886/2219-8075-2023-14-2

    File Description: application/pdf

    Relation: https://www.medicalherald.ru/jour/article/view/1719/962; Piroth L., Cottenet J., Mariet A. S., Bonniaud P., Blot M., et al. Comparison of the characteristics, morbidity, and mortality of COVID-19 and seasonal influenza: a nationwide, population-based retrospective cohort study. Lancet Respir Med. 2021; 9 (3): 251-9. doi:10.1016/S2213-2600(20)30527-0; Kim M. M., Murthy S., Goldman R. D. Post-COVID-19 multisystem inflammatory syndrome in children. Can Fam Physician. 2021; 67 (8): 594-596. doi:10.46747/cfp.6708594; Consiglio C. R., Cotugno N., Sardh F., Pou C., Amodio D., et al. The Immunology of Multisystem Inflammatory Syndrome in Children with COVID-19. Cell. 2020; 183 (4): 968-981.e7. doi:10.1016/j.cell.2020.09.016; Abdel-Haq N., Asmar B. I., Deza Leon M. P., McGrath E. J., Arora H. S., et al. SARS-CoV-2-associated multisystem inflammatory syndrome in children: clinical manifestations and the role of infliximab treatment. Eur J Pediatr. 2021; 180 (5): 1581-1591. doi:10.1007/s00431-021-03935-1; Verdoni L., Mazza A., Gervasoni A., Martelli L., Ruggeri M., et al. An outbreak of severe Kawasaki-like disease at the Italian epicentre of the SARS-CoV-2 epidemic: an observational cohort study. Lancet. 2020; 395 (10239): 1771-1778. doi:10.1016/S0140-6736(20)31103-x; Schulert G. S., Blum S. A., Cron R. Q. Host genetics of pediatric SARS-CoV-2 COVID-19 and multisystem inflammatory syndrome in children. Curr Opin Pediatr. 2021; 33 (6): 549-555. doi:10.1097/MOP.0000000000001061; Sharma C., Ganigara M., Galeotti C., Burns J., Berganza F. M., et al. Multisystem inflammatory syndrome in children and Kawasaki disease: a critical comparison. Nat Rev Rheumatol. 2021; 17 (12): 731-748. doi:10.1038/s41584-021-00709-9; Chen M. R., Kuo H. C., Lee Y. J., Chi H., Li S. C., et al. Phenotype, Susceptibility, Autoimmunity, and Immunotherapy Between Kawasaki Disease and Coronavirus Disease-19 Associated Multisystem Inflammatory Syndrome in Children. Front Immunol. 2021; 12: 632890. Erratum in: Front Immunol. 2021; 12: 722582. PMID: 33732254; PMCID: PMC7959769. doi:10.3389/fimmu.2021.632890; Dufort E. M., Koumans E. H., Chow E. J., Rosenthal E. M., Muse A., et al. Multisystem Inflammatory Syndrome in Children in New York State. N Engl J Med. 2020; 383 (4): 347-358. doi:10.1056/NEJMoa2021756; Belhadjer Z., Méot M., Bajolle F., Khraiche D., Legendre A., et al. Acute Heart Failure in Multisystem Inflammatory Syndrome in Children in the Context of Global SARS-CoV-2 Pandemic. Circulation. 2020; 142 (5): 429-436. doi:10.1161/CIRCULATIONAHA.120.048360; Whittaker E., Bamford A., Kenny J., Kaforou M., Jones C. E., et al. Clinical Characteristics of 58 Children with a Pediatric Inflammatory Multisystem Syndrome Temporally Associated with SARS-CoV-2. JAMA. 2020; 324 (3): 259-269. doi:10.1001/jama.2020.10369; Radujkovic A., Hippchen T., Tiwari-Heckler S., Dreher S., Boxberger M., Merle U. Vitamin D Deficiency and Outcome of COVID-19 Patients. Nutrients. 2020; 12 (9): 2757. doi:10.3390/nu12092757; Zuo T., Zhang F., Lui G. C. Y., Yeoh Y. K., Li A. Y. L., et al. Alterations in Gut Microbiota of Patients with COVID-19 During Time of Hospitalization. Gastroenterology. 2020; 159 (3): 944-955.e8. doi:10.1053/j.gastro.2020.05.048; Sperotto F., Friedman K. G., Son M. B. F., Vander Pluym C. J., Newburger J. W., Dionne A. Cardiac manifestations in SARS-CoV-2-associated multisystem inflammatory syndrome in children: a comprehensive review and proposed clinical approach. Eur J Pediatr. 2021; 180 (2): 307-322. doi:10.1007/s00431-020-03766-6; Carter M. J., Fish M., Jennings A., Doores K. J., Wellman P., et al. Peripheral immunophenotypes in children with multisystem inflammatory syndrome associated with SARS-CoV-2 infection. Nat Med. 2020; 26 (11): 1701-1707. doi:10.1038/s41591-020-1054-6; Yonker L. M., Gilboa T., Ogata A. F., Senussi Y., Lazarovits R., et al. Multisystem inflammatory syndrome in children is driven by zonulin-dependent loss of gut mucosal barrier. J Clin Invest. 2021; 131 (14): e149633. doi:10.1172/JCI149633; Vella L. A., Giles J. R., Baxter A. E., Oldridge D. A., Diorio C., et al. Deep immune profiling of MIS-C demonstrates marked but transient immune activation compared to adult and pediatric COVID-19. Sci Immunol. 2021; 6 (57): eabf7570. doi:10.1126/sciimmunol.abf7570; Jones V. G., Mills M., Suarez D., Hogan C. A., Yeh D., et al. COVID-19 and Kawasaki Disease: Novel Virus and Novel Case. Hosp Pediatr. 2020; 10 (6): 537-540. doi:10.1542/hpeds.2020-0123; Diorio C., Henrickson S. E., Vella L. A., McNerney K. O., Chase J., et al. Multisystem inflammatory syndrome in children and COVID-19 are distinct presentations of SARS-CoV-2. J Clin Invest. 2020; 130 (11): 5967-5975. doi:10.1172/JCI140970; Ramaswamy A., Brodsky N. N., Sumida T. S., Comi M., Asashima H., et al. Post-infectious inflammatory disease in MIS-C features elevated cytotoxicity signatures and autoreactivity that correlates with severity. medRxiv [Preprint]. 2021: 2020. 12.01.20241364. Update in: Immunity. 2021; 54 (5): 1083-1095.e7. PMID: 33300011; PMCID: PMC7724682. doi:10.1101/2020.12.01.20241364.; Patel J. M. Multisystem Inflammatory Syndrome in Children (MIS-C). Curr Allergy Asthma Rep. 2022; 22 (5): 53-60. doi:10.1007/s11882-022-01031-4; Perez-Toledo M., Faustini S. E., Jossi S. E., Shields A. M., Marcial-Juarez E., et al. SARS-CoV-2-specific IgG1/IgG3 but not IgM in children with Pediatric Inflammatory Multi-System Syndrome. Pediatr Allergy Immunol. 2021; 32 (5): 1125-1129. doi:10.1111/pai.13504; Yonker L. M., Neilan A. M., Bartsch Y., Patel A. B., Regan J., et al. Pediatric Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2): Clinical Presentation, Infectivity, and Immune Responses. J Pediatr. 2020; 227: 45-52.e5. doi:10.1016/j.jpeds.2020.08.037; Cheung E. W., Zachariah P., Gorelik M., Boneparth A., Kernie S. G., et al. Multisystem Inflammatory Syndrome Related to COVID-19 in Previously Healthy Children and Adolescents in New York City. JAMA. 2020; 324 (3): 294-296. doi:10.1001/jama.2020.10374; Capone C. A., Subramony A., Sweberg T., Schneider J., Shah S., et al. Characteristics, Cardiac Involvement, and Outcomes of Multisystem Inflammatory Syndrome of Childhood Associated with severe acute respiratory syndrome coronavirus 2 Infection. J Pediatr. 2020; 224: 141-145. doi:10.1016/j.jpeds.2020.06.044; Matic K. M. SARS-CoV-2 and Multisystem Inflammatory Syndrome In Children (MIS-C). Curr Probl Pediatr Adolesc Health Care. 2021; 51 (4): 101000. doi:10.1016/j.cppeds.2021.101000; Kaushik A., Gupta S., Sood M., Sharma S., Verma S. A Systematic Review of Multisystem Inflammatory Syndrome in Children Associated with SARS-CoV-2 Infection. Pediatr Infect Dis J. 2020; 39 (11): e340-e346. doi:10.1097/INF.0000000000002888; Irfan O., Muttalib F., Tang K., Jiang L., Lassi Z. S., Bhutta Z. Clinical characteristics, treatment and outcomes of paediatric COVID-19: a systematic review and meta-analysis. Arch Dis Child. 2021; 106 (5): 440–8. Epub ahead of print. doi:10.1136/archdischild-2020-321385; Emeksiz S., Çelikel Acar B., Kibar A. E., Özkaya Parlakay A., Perk O., et al. Algorithm for the diagnosis and management of the multisystem inflammatory syndrome in children associated with COVID-19. Int J Clin Pract. 2021; 75 (9): e14471. doi:10.1111/ijcp.14471; Balasubramanian S., Nagendran T. M., Ramachandran B., Ramanan A. V. Hyper-inflammatory Syndrome in a Child with COVID-19 Treated Successfully with Intravenous Immunoglobulin and Tocilizumab. Indian Pediatr. 2020; 57 (7): 681-683. doi:10.1007/s13312-020-1901-z; Jiang L., Tang K., Levin M., Irfan O., Morris S. K., et al. COVID-19 and multisystem inflammatory syndrome in children and adolescents. Lancet Infect Dis. 2020; 20 (11): e276-e288. Erratum in: Lancet Infect Dis. 2022; 22 (10): e279. PMID: 32818434; PMCID: PMC7431129. doi:10.1016/S1473-3099(20)30651-4; Graciano-Machuca O., Villegas-Rivera G., López-Pérez I., Macías-Barragán J., Sifuentes-Franco S. Multisystem Inflammatory Syndrome in Children (MIS-C) Following SARS-CoV-2 Infection: Role of Oxidative Stress. Front Immunol. 2021; 12: 723654. doi:10.3389/fimmu.2021.723654; Zhang S. Y., Zhang Q., Casanova J. L., Su H. C.; COVID Team. Severe COVID-19 in the young and healthy: monogenic inborn errors of immunity? Nat Rev Immunol. 2020; 20 (8): 455-456. doi:10.1038/s41577-020-0373-7; Feldstein L. R., Rose E. B., Horwitz S. M., Collins J. P., Newhams M. M., et al. Multisystem Inflammatory Syndrome in U. S. Children and Adolescents. N Engl J Med. 2020; 383 (4): 334-346. doi:10.1056/NEJMoa2021680; Zeichner S. L., Cruz A. T. Multisystem Inflammatory Syndrome in Children and SARS-CoV-2 Serology. Pediatrics. 2020; 146 (6): e2020032888. doi:10.1542/peds.2020-032888; Ouldali N., Toubiana J., Antona D., Javouhey E., Madhi F., et al. Association of Intravenous Immunoglobulins Plus Methylprednisolone vs Immunoglobulins Alone with Course of Fever in Multisystem Inflammatory Syndrome in Children. JAMA. 2021; 325 (9): 855-864. Erratum in: JAMA. 2021; 326 (1): 90. PMID: 33523115; PMCID: PMC7851757. doi:10.1001/jama.2021.0694.; Henderson L. A., Canna S. W. Friedman K. G., Gorelik M., Lapidus S. K., et al. American College of Rheumatology Clinical Guidance for Multisystem Inflammatory Syndrome in Children Associated with SARS-CoV-2 and Hyperinflammation in Pediatric COVID-19: Version 1. Arthritis Rheumatol. 2020; 72 (11): 1791-1805. doi:10.1002/art.41454; Choe Y. J., Choi E. H., Choi J. W., Eun B. W., Eun L. Y., et al. Surveillance of COVID-19-Associated Multisystem Inflammatory Syndrome in Children, South Korea. Emerg Infect Dis. 2021; 27 (4): 1196-1200. doi:10.3201/eid2704.210026; https://www.medicalherald.ru/jour/article/view/1719

  15. 15
    Academic Journal

    Source: Journal Infectology; Том 14, № 5 (2022); 90-100 ; Журнал инфектологии; Том 14, № 5 (2022); 90-100 ; 2072-6732 ; 10.22625/2072-6732-2022-14-5

    File Description: application/pdf

    Relation: https://journal.niidi.ru/jofin/article/view/1431/1026; Huang C., Wang Y., Li X., Ren L., Zhao J., Hu Y. et al. Clinical features of patients infected with 2019 novel coronavirus in Wuhan, China. The Lancet. 2020; 395 (10223): 497-506. doi:10.1016/S0140-6736(20)30183-5.; Старшинова, А. А. Новая коронавирусная инфекция: особенности клинического течения, возможности диагностики, лечения и профилактики инфекции у взрослых и детей / А. А. Старшинова [и др.] // Вопросы современной педиатрии. – 2020. – № 19 (2). – С. 42–50.; WHO. Coronavirus disease (COVID-19) pandemic. Geneva: WHO; 2020. Available from: https://www.who.int/europe/emergencies/situations/covid-19.; Kompaniyets L., Bull-Otterson L., Boehmer K. T., Sarah Baca S., Alvarez P., Hong K. et al. Post–COVID-19 Symptoms and Conditions Among Children and Adolescents — United States, March 1, 2020–January 31, 2022. MMWR. 2022; 71 (31): 993-999. DOI:10.15585/mmwr.mm7131a3.; Liu K., Fang Y. Y., Deng Y., Liu W., Wang M. F., Ma J. P. et al. Clinical characteristics of novel coronavirus cases in tertiary hospitals in Hubei Province. Chin Med J. 2020; 133 (9): 1025-1031. doi:10.1097/CM9.0000000000000744.; Yong Sh. J. Long COVID or post-COVID-19 syndrome: putative pathophysiology, risk factors, and treatments, Infectious Diseases, 2021. 53: 10, 737-754, DOI:10.1080/23744235.2021.1924397.; Malkova A. M., Kudlai D. A., Kudryavtsev I. V., Starshinova A. A., Yablonsky P. K., Shoenfeld Y. Immunogenetic predictors of severe COVID-19. Vaccines. 2021; 9 (3): 211. DOI:10.3390/vaccines9030211.; Wang L., Berger N. A., Kaelber D. C., Pamela B. Davis P. B., Volkow N. D., Xu R. Comparison of outcomes from COVID infection in pediatric and adult patients before and after the emergence of Omicron. MedRxiv and bioRxiv. 2022. doi:10.1101/2021.12.30.21268495.; Price A. M., Olson S. M., Newhams M. M., Halasa N. B., Boom J. A., Sahni L. C., Pannaraj P. S. et al. BNT162b2 Protection against the Omicron Variant in Children and Adolescents. The NEJM.org. 2022. DOI:10.1056/NEJMoa2202826.; Starshinova A. A., Malkova A. M., Zinchenko Yu. S., Kudlai D. A., Glushkova A. V., Dovgalyk I. et al. Efficacy of different types of therapy for covid-19: a comprehensive review. Life. 2021; 11 (8): 753. doi:10.3390/life11080753; Мелехина, Е. В. Клинические особенности течения COVID-19 у детей различных возрастных групп / Е. В. Мелехина, А. В. Горелов, А. Д. Музыка // Обзор литературы к началу апреля 2020 года. Вопросы практической педиатрии. – 2020. – № 15 (2). – С. 7–20. DOI:10.20953/1817-7646-2020-2-7-20; Tagarro A., Epalza С., Santos M., et al. Screening and severity of Coronavirus disease 2019 (COVID-19) in children in Madrid, Spain. JAMA Pediatr. 2020; e201346. doi:10.1001/jamapediatrics.2020.1346.; Козлов, В. А. Клиническая иммунология : практическое пособие для инфекционистов / В. А. Козлов [и др.]. – Красноярск: Поликор, 2021. – 563 c.; Hoste L., Van Paemel R., Haerynck F. Multisystem inflammatory syndrome in children related to COVID-19: a systematic review. Eur J Pediatr. 2021 Jul; 180 (7): 2019-2034. doi:10.1007/s00431-021-03993-5.; Center for Disease Control and Prevention. Multisystem inflammatory syndrome in children (MIS-C) 2021. https://www.cdc.gov/mis-c/cases. Accessed 18 Mar 2022.; Centers for Disease Control and Prevention. MIS-C and COVID-19. Available online: https://www.cdc.gov/mis-c/ (accessed on 15 January 2022).; Royal College of Paediatrics and Child Health Guidance: Paediatric Multisystem Inflammatory Syndrome Temporally Associated with COVID-19. https://www.rcpch.ac.uk/resources/paediatric-multisystem-inflammatory-syndrome-temporally-associated-covid-19-pims-guidance (accessed on 15 January 2022).; Jiang L., Tang K., Irfan O., Li X, Zhang E., Bhutta Z. Epidemiology, Clinical Features, and Outcomes of Multisystem Inflammatory Syndrome in Children (MIS-C) and Adolescents-a Live Systematic Review and Meta-analysis. Curr Pediatr Rep. 2022; 10 (2): 19-30. doi:10.1007/s40124-022-00264-1.; Irfan O., Muttalib F., Tang K., Jiang L., Lassi Z. S., Bhutta Z. Clinical characteristics, treatment and outcomes of paediatric COVID-19: a systematic review and meta-analysis. Arch Dis Child. 2021 Feb 16;106(5):440–8. doi:10.1136/archdischild-2020-321385.; Radia T., Williams N., Agrawal P., Harman K., Weale J., Cook J., Gupta A. Multi-system inflammatory syndrome in children & adolescents (MIS-C): A systematic review of clinical features and presentation. Paediatr Respir Rev. 2021; 38: 51-57. doi:10.1016/j.prrv.2020.08.001; Castagnoli R., Votto M., Licari A., Brambilla I., Bruno R., Perlini S., Rovida F., Baldanti F., Marseglia G. L. Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) Infection in Children and Adolescents: A Systematic Review. JAMA Pediatr. 2020; 174 (9): 882-889. doi:10.1001/jamapediatrics.2020.1467.; Dolinger M. T., Person H., Smith R., Jarchin L., Pittman N., Dubinsky M. C., Lai J. Pediatric Crohn Disease and Multisystem Inflammatory Syndrome in Children (MIS-C) and COVID-19 Treated With Infliximab. J Pediatr Gastroenterol Nutr. 2020; 71 (2): 153-155. doi:10.1097/MPG.0000000000002809.; NICE. COVID-19 Rapid Guideline: Managing the Long-Term Effects of COVID-19. National Institute for Health and Care Excellence (NICE); London, UK: 2020; Miller F., Nguyen V., Navaratnam A. M., Shrotri M., Kovar J., Hayward A. C., Fragaszy E., Aldridge R. W., Hardelid P. Prevalence of persistent symptoms in children during the COVID-19 pandemic: Evidence from a household cohort study in England and Wales. medRxiv. 2021 doi:10.1101/2021.05.28.21257602; Koc H. C., Xiao J., Liu W., Li Y., Chen G. Long COVID and its Management. Int J Biol Sci. 2022 Jul 11; 18 (12): 4768-4780. doi:10.7150/ijbs.75056; Boston Children’s Hospital Z-Score Calculator: https://pedz.de/de/pedz/main.html (Last access July 2020).; Whittaker E., Bamford A., Kenny J., et al. Clinical characteristics of 58 children with a pediatric inflammatory multisystem syndrome temporally associated with SARS-CoV-2. JAMA2020; 324: 259. doi:10.1001/jama.2020.10369; Кантемирова, М. Г. Детский мультисистемный воспалительный синдром, ассоциированный с новой коронавирусной инфекцией (COVID-19): актуальная информация и клиническое наблюдение / М. Г. Кантемирова [и др.] // Педиатрическая фармакология. – 2020. – № 17 (3). – С. 219–229.; Stafie C. S., Solomon S. M., Sufaru I. G., Manaila M., Stafie I. I., Melinte G., Simionescu B., Leustean L. Pathogenic Connections in Post-COVID Conditions: What Do We Know in the Large Unknown? A Narrative Review. Viruses. 2022 Jul 30; 14 (8): 1686. doi:10.3390/v14081686.; Malkova A., Kudryavtsev I., Starshinova A., Kudlay D., Zinchenko Y., Glushkova A., Yablonskiy P., Shoenfeld Y. Post COVID-19 Syndrome in Patients with Asymptomatic / Mild Form. Pathogens. 2021 Oct 30; 10 (11): 1408. doi:10.3390/pathogens10111408.; Turner, S., Naidoo, C. A., Usher, T. J., et al. (2022). Increased levels of inflammatory molecules in blood of Long COVID patients point to thrombotic endotheliitis. medRxiv. doi:10.1101/2022.10.13.22281055.; Gustine J. N., Jones D. Immunopathology of Hyperinflammation in COVID-19. Am J Pathol. 2021 Jan; 191 (1): 4-17. doi:10.1016/j.ajpath.2020.08.009.; Wangu Z., Swartz H., Doherty M. Multisystem inflammatory syndrome in children (MIS-C) possibly secondary to COVID-19 mRNA vaccination. BMJ Case Rep. 2022; 15 (3): e247176. doi:10.1136/bcr-2021-247176.; Valverde I., Singh Y., Sanchez-de-Toledo J. et al. AEPC COVID-19 Rapid Response Team. Acute Cardiovascular Manifestations in 286 Children With Multisystem Inflammatory SyndromeAssociated With COVID-19 Infection in Europe. Circulation. 2021; 143 (1): 21–32. doi:10.1161/CIRCULATIONAHA.120.050065.; Kaushik S., Aydin S. I., Derespina K. R. et al (2020) Multisystem inflammatory syndrome in children (MIS-C) associated with SARS-CoV-2 infection: a multi-institutional study from New York City. J Pediatr 2-7. doi:10.1016/j.jpeds.2020.06.045.; Salamanna F., Veronesi F., Martini L., Landini M. P., Fini M. Post-COVID-19 Syndrome: The Persistent Symptoms at the Post-viral Stage of the Disease. A Systematic Review of the Current Data. Front Med (Lausanne). 2021 May 4; 8: 653516. doi:10.3389/fmed.2021.653516. PMID: 34017846; Rao S., Lee G. M., Razzaghi H., Lorman V., Mejias A., Pajor N. M., Thacker D., Webb R., Dickinson K., Bailey L. C., Jhaveri R., Christakis D. A., Bennett T. D., Chen Y., Forrest C. B. Clinical Features and Burden of Postacute Sequelae of SARS-CoV-2 Infection in Children and Adolescents. JAMA Pediatr. 2022 Oct 1; 176 (10): 1000-1009. URL: https://pesquisa.bvsalud.org/global-literature-on-novel-coronavirus-2019-ncov/resource/pt/covidwho-1999806; https://journal.niidi.ru/jofin/article/view/1431

  16. 16
    Academic Journal

    Source: CHILDREN INFECTIONS; Том 22, № 4 (2023); 63-68 ; ДЕТСКИЕ ИНФЕКЦИИ; Том 22, № 4 (2023); 63-68 ; 2618-8139 ; 2072-8107

    File Description: application/pdf

    Relation: https://detinf.elpub.ru/jour/article/view/890/645; Centers for Disease Control and Prevention. Emergency preparedness and response: health alert network. Accessed 22 May 2020. Available from: https://emergency.cdc.gov/han/2020/han00432.asp; Tong T., Yao X., Lin Z., et al. Similarities and differences between MIS-C and KD: a systematic review and meta-analysis. Pediatr Rheumatol Online J. 2022; 20(1):112. doi:10.1186/s12969-022-00771-x; Kabeerdoss J., Pilania R.K., Karkhele R., Kumar T.S., Danda D., Singh S. Severe COVID-19, multisystem inflammatory syndrome in children, and Kawasaki disease: immunological mechanisms, clinical manifestations and management. Rheumatol Int. 2021; 41:19—32. doi:10.1007/s00296-020-04749-4; Tripathi A.K., Pilania R.K., Bhatt G.C., Atlani M., Kumar A., Malik S. Acute kidney injury following multisystem inflammatory syndrome associated with SARS-CoV-2 infection in children: a systematic review and meta-analysis. Pediatr Nephrol. 2023; 38(2):357—370. doi:10.1007/s00467-022-05701-3; Беседина Е.А., Бадьян А.С., Пискунова С.Г., Дудникова Э.В., Коваленко В.Н., Инкин А.М. Мультисистемный воспалительный синдром, или Кавасакиподобный синдром, у детей, ассоциированный с COVID-19. Медицинский вестник Юга России. 2023; 14(2):76—83. DOI:10.21886/2219-8075-2023-14-2-76-83; Dhar D., Dey T., Samim M.M., et al. Systemic inflammatory syndrome in COVID-19-SISCoV study: systematic review and meta-analysis. Pediatr Res. 2022; 91(6):1334—1349. doi:10.1038/s41390-021-01545-z; Лобзин Ю.В., Вильниц А.А., Костик М.М., Бехтерева М.К., Усков А.Н., Скрипченко Н.В., Бабаченко И.В., Иванов Д.О., Александрович Ю.С., Константинова Ю.Е., Дондурей Е.А., Конев А.И., Карасев В.В. Педиатрический мультисистемный воспалительный синдром, ассоциированный с новой коронавирусной инфекцией: нерешенные проблемы. Журнал инфектологии. 2021; 13(1):13—20. doi.org/10.22625/2072-6732-2021-13-1-13-20; https://detinf.elpub.ru/jour/article/view/890

  17. 17
    Academic Journal
  18. 18
    Academic Journal

    Source: Ukrainian Journal of Perinatology and Pediatrics; No. 2(90) (2022): Ukrainian Journal of Perinatology and Pediatrics; 44-50
    Украинский журнал Перинатология и Педиатрия; № 2(90) (2022): Ukrainian Journal of Perinatology and Pediatrics; 44-50
    Український журнал Перинатологія і Педіатрія; № 2(90) (2022): Український журнал Перинатологія і Педіатрія; 44-50

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  19. 19
    Academic Journal

    Contributors: 1

    Source: Russian Journal of Pediatric Surgery, Anesthesia and Intensive Care; Vol 12, No 2 (2022); 223-232 ; Российский вестник детской хирургии, анестезиологии и реаниматологии; Vol 12, No 2 (2022); 223-232 ; 2587-6554 ; 2219-4061 ; 10.17816/psaic.20222

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  20. 20
    Academic Journal

    Source: Pediatric pharmacology; Том 19, № 2 (2022); 105-114 ; Педиатрическая фармакология; Том 19, № 2 (2022); 105-114 ; 2500-3089 ; 1727-5776

    File Description: application/pdf

    Relation: https://www.pedpharma.ru/jour/article/view/2153/1368; Kabeerdoss J, Pilania RK, Karkhele R, et al. Severe COVID-19, multisystem inflammatory syndrome in children, and Kawasaki disease: immunological mechanisms, clinical manifestations and management. Rheumatol Int. 2021;41(1):19-32. doi: https://doi.org/10.1007/s00296-020-04749-4; Nuno-Gonzalez A, Martin-Carrillo P, Magaletsky K, et al. Prevalence of mucocutaneous manifestations in 666 patients with COVID-19 in a field hospital in Spain: oral and palmoplantar findings. Br J Dermatol. 2021;184(1):184-185. doi: https://doi.org/10.1111/bjd.19564; Zhu N, Zhang D, Wang W, et al. A Novel Coronavirus from Patients with Pneumonia in China, 2019. N Engl J Med. 2020;382(8):727-733. doi: https://doi.org/10.1056/NEJMoa2001017; Morris SB, Schwartz NG, Patel P, et al. Case Series of Multisystem Inflammatory Syndrome in Adults Associated with SARS-CoV-2 Infection — United Kingdom and United States, March-August 2020. MMWR Morb Mortal Wkly Rep. 2020;69(40):1450-1456. doi: https://doi.org/10.15585/mmwr.mm6940e1; Marzano AV, Cassano N, Genovese G, et al. Cutaneous manifestations in patients with COVID-19: a preliminary review of an emerging issue. Br J Dermatol. 2020;183(3):431-442. doi: https://doi.org/10.1111/bjd.19264; Labe P, Ly A, Sin C, et al. Erythema multiforme and Kawasaki disease associated with COVID-19 infection in children. J Eur Acad Dermatol Venereol. 2020;34(10):e539-e541. doi: https://doi.org/10.1111/jdv.16666; Seque CA, Enokihara MMSES, Porro AM, et al. Skin manifestations associated with COVID-19. An Bras Dermatol. 2022;97(1):75-88. doi: https://doi.org/10.1016/j.abd.2021.08.002; Tan SW, Tam YC, Oh CC. Skin manifestations of COVID-19: A worldwide review. JAAD Int. 2021;2:119-133. doi: https://doi.org/10.1016/j.jdin.2020.12.003; COVID Symptom Study App (archive). In: British Association of Dermatologists. Available online: https://covidskinsigns.com. Accessed on April 17, 2022.; Rocha KO, Zanuncio VV, Freitas BAC, et al. “COVID toes”: A meta-analysis of case and observational studies on clinical, histopathological, and laboratory findings. Pediatr Dermatol. 2021;38(5):1143-1149. doi: https://doi.org/10.1111/pde.14805; Andina D, Noguera-Morel L, Bascuas-Arribas M, et al. Chilblains in children in the setting of COVID-19 pandemic. Pediatr Dermatol. 2020;37(3):406-411. doi: https://doi.org/10.1111/pde.14215; Andina D, Belloni-Fortina A, Bodemer C, et al. Skin manifestations of COVID-19 in children: Part 1. Clin Exp Dermatol. 2021;46(3):444-450. doi: https://doi.org/10.1111/ced.14481; Nemazee L, Elangasinghe V. A Case of ‘Long Covid Toes' with Associated Cryofibrinogenaemia. In: 20th ESPD Annular Meeting, May 12-14, 2021. On-Line Poster.; Volpi S, Picco P, Caorsi R, et al. Type I interferonopathies in pediatric rheumatology. Pediatr Rheumatol Online J. 2016;14(1):35. doi: https://doi.org/10.1186/s12969-016-0094-4; Magro C, Mulvey JJ, Berlin D, et al. Complement associated microvascular injury and thrombosis in the pathogenesis of severe COVID-19 infection: A report of five cases. Transl Res. 2020;220:1-13. doi: https://doi.org/10.1016/j.trsl.2020.04.007; Gianotti R, Recalcati S, Fantini F, et al. Histopathological Study of a Broad Spectrum of Skin Dermatoses in Patients Affected or Highly Suspected of Infectionby COVID-19intheNorthernPartof Italy: Analysis of the Many Faces of the Viral-Induced Skin Diseases in Previous and New Reported Cases. Am J Dermatopathol. 2020;42(8):564-570. doi: https://doi.org/10.1097/DAD.0000000000001707; Andina D, Belloni-Fortina A, Bodemer C, et al. Skin manifestations of COVID-19 in children: Part 2. Clin Exp Dermatol. 2021;46(3):451-461. doi: https://doi.org/10.1111/ced.14482; Estebanez A, Perez-Santiago L, Silva E, et al. Cutaneous manifestations in COVID-19: a new contribution. J Eur Acad Dermatol Venereol. 2020;34(6):e250-e251. doi: https://doi.org/10.1111/jdv.16474; Young S, Fernandez AP. Skin manifestations of COVID-19. Cleve Clin J Med. 2020 May 14. Online ahead of print. doi: https://doi.org/10.3949/ccjm.87a.ccc031; Marzano AV, Genovese G, Fabbrocini G, et al. Varicella-like exanthem as a specific COVID-19-associated skin manifestation: Multicenter case series of 22 patients. J Am Acad Dermatol. 2020;83(1):280-285. doi: https://doi.org/10.1016/j.jaad.2020.04.044; Criado PR, Abdalla BMZ, de Assis IC, et al. Are the cutaneous manifestations during or due to SARS-CoV-2 infection/ COVID-19 frequent or not? Revision of possible pathophysiologic mechanisms. Inflamm Res. 2020;69(8):745-756. doi: https://doi.org/10.1007/s00011-020-01370-w; de Masson A, Bouaziz JD, Sulimovic L, et al. Chilblains is a common cutaneous finding during the COVID-19 pandemic: A retrospective nationwide study from France. J Am Acad Dermatol. 2020;83(2):667-670. doi: https://doi.org/10.1016/j.jaad.2020.04.161; Ventura-Espejo L, Gracia-Darder I, Escriba-Bori S, et al. Patient with H syndrome, cardiogenic shock, multiorgan infiltration, and digital ischemia. Pediatr Rheumatol Online J. 2021;19(1):104. doi: https://doi.org/10.1186/s12969-021-00586-2; Manalo IF, Smith MK, Cheeley J, et al. A dermatologic manifestation of COVID-19: transient livedoreticularis. J Am Acad Dermatol. 2020;83(2):700. doi: https://doi.org/10.1016/j.jaad.2020.04.018; Galeotti C, Bayry J. Autoimmune and inflammatory diseases following COVID-19. Nat Rev Rheumatol. 2020;16(8):413-414. doi: https://doi.org/10.1038/s41584-020-0448-7; Verdoni L, Mazza A, Gervasoni A, et al. An outbreak of severe Kawasaki-like disease at the Italian epicentre of the SARS-CoV-2 epidemic: an observational cohort study. Lancet. 2020;395(10239):1771-1778. doi: https://doi.org/10.1016/S0140-6736(20)31103-X; Young TK, Shaw KS, Shah JK, et al. Mucocutaneous Manifestations of Multisystem Inflammatory Syndrome in Children During the COVID-19 Pandemic. JAMA Dermatol. 2021;157(2):207-212. doi: https://doi.org/10.1001/jamadermatol.2020.4779; Naka F, Melnick L, Gorelik M, Morel KD. A dermatologic perspective on multisystem inflammatory syndrome in children. Clin Dermatol. 2021;39(1):163-168. doi: https://doi.org/10.1016/j.clindermatol.2020.09.003; Miller J, Cantor A, Zachariah P, et al. Gastrointestinal Symptoms as a Major Presentation Component of a Novel Multisystem Inflammatory Syndrome in Children That Is Related to Coronavirus Disease 2019: A Single Center Experience of 44 Cases. Gastroenterology. 2020;159(4):1571-1574.e2. doi: https://doi.org/10.1053/j.gastro.2020.05.079; Andina D, Belloni-Fortina A, Bodemer C, et al. Skin manifestations of COVID-19 in children: Part 3. Clin Exp Dermatol. 2021;46(3):462-472. doi: https://doi.org/10.1111/ced.14483; Salian VS, Wright JA, Vedell PT, et al. COVID-19 Transmission, Current Treatment, and Future Therapeutic Strategies. Mol Pharm. 2021;18(3):754-771. doi: https://doi.org/10.1021/acs.molpharmaceut.0c00608; Centers for Disease Control and Prevention. Interim Guidelines for collecting, handling, and testing clinical specimens from patients under investigation (PUIs) for Middle East Respiratory Syndrome Coronavirus (MERS-CoV) — Version 2.1. Available online: https://www.cdc.gov/coronavirus/mers/down-loads/Guidelines-Clinical-Specimens.pdf. Accessed on April 17, 2022.; Colonna C, Monzani NA, Rocchi A, et al. Chilblain-like lesions in children following suspected COVID-19 infection. Pediatr Dermatol. 2020;37(3):437-440. doi: https://doi.org/10.1111/pde.14210; Gupta A, Madhavan MV, Sehgal K, et al. Extrapulmonary manifestations of COVID-19. Nat Med. 2020;26(7):1017-1032. doi: https://doi.org/10.1038/s41591-020-0968-3; Cazzato, G., Foti, C., Colagrande, A., et al. Skin Manifestation of SARS-CoV-2: The Italian Experience. J Clin Med. 2021;10(8):1566. doi: https://doi.org/10.3390/jcm10081566; Ahmed M, Advani S, Moreira A, et al. Multisystem inflammatory syndrome in children: A systematic review. EClinicalMedicine. 2020;26:100527. doi: https://doi.org/10.1016/j.eclinm.2020.100527; https://www.pedpharma.ru/jour/article/view/2153