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  1. 1
    Academic Journal

    Contributors: The research work and the publication of its results had been carried out with the financial support from the Moscow City Government Grant for the Implementation of a Scientific and Practical Project in Medicine No. 0408–1., Исследование и публикация осуществлены при поддержке гранта Правительства Москвы на реализацию научно-практического проекта в медицине № 0408–1.

    Source: Rossiyskiy Vestnik Perinatologii i Pediatrii (Russian Bulletin of Perinatology and Pediatrics); Том 70, № 1 (2025); 5-10 ; Российский вестник перинатологии и педиатрии; Том 70, № 1 (2025); 5-10 ; 2500-2228 ; 1027-4065

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    Relation: https://www.ped-perinatology.ru/jour/article/view/2132/1560; Valenta R., Karaulov A., Niederberger V., Gattinger P., van Hage M., Flicker S., et al. Molecular aspects of allergens and allergy. Adv Immunol 2018; 138: 195–256. DOI:10.1016/bs.ai.2018.03.002; Valenta R., Lidholm J., Niederberger V., Hayek B., Kraft D., Grönlund H. The recombinant allergen-based concept of component-resolved diagnostics and immunotherapy (CRD and CRIT). Clin Exp Allergy 1999; 29(7): 896–904. DOI:10.1046/j.1365–2222.1999.00653.x; Jakob T., Forstenlechner P., Matricardi P., Kleine-Tebbe J. Molecular allergy diagnostics using multiplex assays: methodological and practical considerations for use in research and clinical routine: Part 21 of the Series Molecular Allergology. Allergo J Int 2015; 24: 320–332. DOI:10.1007/s40629–015–0087–8; Ansotegui I.J., Melioli G., Canonica G.W., Caraballo L., Villa E., Ebisawa M. IgE allergy diagnostics and other relevant tests in allergy, a World Allergy Organization position paper. World Allergy Organ J 2020; 13(2): 100080. DOI:10.1016/j.waojou.2019.100080; Garib V., Trifonova D., Freidl R., Linhart B., Schlederer T., Douladiris N. et al. Milk Allergen Micro-Array (MAMA) for Refined Detection of Cow’s-Milk-Specific IgE Sensitization. Nutrients 2023; 15(10): 2401. DOI:10.3390/nu15102401; Dramburg S., Hilger C., Santos A.F., de Las Vecillas L., Aalberse R.C., Acevedo N., et al. EAACI Molecular Allergology User’s Guide 2.0. Pediatr Allergy Immunol 2023; 34 Suppl 28: e13854. DOI:10.1111/pai.13854. PMID: 37186333; Riggioni C., Ricci C., Moya B., Wong D., van Goor E., Bartha I. et al. Systematic review and meta-analyses on the accuracy of diagnostic tests for IgE-mediated food allergy. Allergy 2024; 79(2): 324–352. DOI:10.1111/all.15939; Пампура А.Н., Есакова Н.В. Анафилаксия у детей. М.: Медпрактика-М, 2020; 368. [Pampura A.N., Esakova N.V. Anaphylaxis in children. Moscow: Medpraktika, 2020; 368. (in Russ.); Golden D.B.K., Wang J., Waserman S., Akin C., Campbell R.L., Ellis A.K. et al. Anaphylaxis: A 2023 practice parameter update. Ann Allergy Asthma Immunol 2024; 132(2): 124–176. DOI:10.1016/j.anai.2023.09.015; Tosca M.A., Schiavetti I., Olcese R., Trincianti C., Ciprandi G. Molecular Allergy Diagnostics in Children with Cow’s Milk Allergy: Prediction of Oral Food Challenge Response in Clinical Practice. J Immunol Res 2023; 2023: 1129449. DOI:10.1155/2023/1129449; Есакова Н.В., Пампура А.Н. Особенности пищевой анафилаксии у детей, возникающей при альтернативных путях поступления аллергена. Педиатрия. Журнал им. Г.Н. Сперанского 2021; 100(2): 57–63.; Fiocchi A., Bognanni A., Brożek J., Ebisawa M., Schünemann H. WAO DRACMA guideline group. World Allergy Organization (WAO) Diagnosis and Rationale for Action against Cow’s Milk Allergy (DRACMA) Guidelines update — I — Plan and definitions. World Allergy Organ J 2022; 15(1): 100609. DOI:10.1016/j.waojou.2021.100609; Пампура А.Н., Жукалина Е.Ф., Моренко М.А., Усенова О.П. Современные подходы к диагностике и ведению детей раннего возраста с аллергией на белки коровьего молока. Рос вестн перинатол и педиатр 2023; 68:(2): 39–46.; Gómez T.E., Gratacós G.A.R., González J.O.M., Joyanes R.J.B., Palacios C.A, García R.R. Profilins and Food-Dependent Exercise-Induced Anaphylaxis. J Investig Allergol Clin Immunol 2021; 31(4): 349–350. DOI:10.18176/jiaci.0650; Santos A.F., Riggioni C., Agache I., Akdis C.A., Akdis M., Alvarez-Perea A. et al. EAACI guidelines on the diagnosis of IgE-mediated food allergy. Allergy 2023; 78(12): 3057–3076. DOI:10.1111/all.15902; Tedner S.G., Asarnoj A., Thulin H., Westman M., Konradsen J.R., Nilsson C. Food allergy and hypersensitivity reactions in children and adults-A review. J Intern Med 2022; 291(3): 283–302. DOI:10.1111/joim.13422; Skypala I.J., Bartra J., Ebo D.G., Antje Faber M., Fernandez-Rivas M., Gomez F., et al. The diagnosis and management of allergic reactions in patients sensitized to non-specific lipid transfer proteins. Allergy 2021; 76: 2433–2446. DOI:10.1111/all.14797; Bublin M., Breiteneder H. Cross-reactivities of non-homologous allergens. Allergy 2020; 75: 1019–1022. DOI:10.1111/all.14120; Candreva A.M., Smaldini P.L., Cauerhff A., Petruccelli S., Docena G.H. A novel approach to ameliorate experimental milk allergy based on the oral administration of a short soy cross-reactive peptide. Food Chem 2021; 346: 128926. DOI:10.1016/j.foodchem.2020.128926; Warm K., Lindberg A., Lundbäck B., Rönmark E. Increase in sensitization to common airborne allergens among adults — two population-based studies 15 years apart. Allergy Asthma Clin Immunol 2013; 9(1): 20. DOI:10.1186/1710–1492–9–20; Sarzsinszky E., Lupinek C., Vrtala S., Huang H.J., Hofer G., Keller W. et al. Expression in Escherichia coli and Purification of Folded rDer p 20, the Arginine Kinase From Dermatophagoides pteronyssinus: A Possible Biomarker for Allergic Asthma. Allergy Asthma Immunol Res 2021; 13(1): 154–163. DOI:10.4168/aair.2021.13.1.154; Жукалина Е.Ф., Пампура А.Н., Суровенко Т.Н., Медведева А.Д. Профили молекулярной сенсибилизации к аллергенам пушных животных у пациентов Российской Фе- дерации. Педиатрия 2024; 103(2): 17–26.; Alvaro-Lozano M., Akdis C.A., Akdis M., Alviani C., Angier E., Arasi S. et al. EAACI Allergen Immunotherapy User’s Guide. Pediatr Allergy Immunol 2020; 31 25(25): 1–101. DOI:10.1111/pai.13189; Wickman M., Lupinek C., Andersson N., Belgrave D., Asarnoj A., Benet M. et al. Detection of IgE Reactivity to a Handful of Allergen Molecules in Early Childhood Predicts Respiratory Allergy in Adolescence. EBioMedicine 2017; 26: 91–99. DOI:10.1016/j.ebiom.2017.11.009; Grönlund H., Saarne T., Gafvelin G., van Hage M. The major cat allergen, Fel d 1, in diagnosis and therapy. Int Arch Allergy Immunol. 2010;151(4): 265–274. DOI:10.1159/000250435; Bjerg A., Winberg A., Berthold M., Mattsson L., Borres M.P., Rönmark E. A population-based study of animal component sensitization, asthma, and rhinitis in schoolchildren. Pediatr Allergy Immunol 2015; 26(6): 557–563. DOI:10.1111/pai.12422; Hatzler L., Panetta V., Lau S., Wagner P., Bergmann R.L., Illi S. et al. Molecular spreading and predictive value of preclinical IgE response to Phleum pratense in children with hay fever. J Allergy Clin Immunol 2012; 130(4): 894–901.e5. DOI:10.1016/j.jaci.2012.05.053; Jensen-Jarolim E., Pacios L.F., Bianchini R., Hofstetter G., Roth-Walter F. Structural similarities of human and mammalian lipocalins, and their function in innate immunity and allergy. Allergy 2016; 71(3): 286–94. DOI:10.1111/все.12797; Schoos A.M., Kattan J.D., Gimenez G., Sampson H.A. Sensitization phenotypes based on protein groups and associations to allergic diseases in children. J Allergy Clin Immunol 2016; 137(4): 1277–1280. DOI:10.1016/j.jaci.2015.09.035; Steering Committee Authors; Review Panel Members. A WAO — ARIA — GA2LEN consensus document on molecular-based allergy diagnosis (PAMD@): Update 2020. World Allergy Organ J 2020; 13(2): 100091. DOI:10.1016/j.waojou.2019.100091

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  3. 3
    Academic Journal

    Source: Current Pediatrics; Том 21, № 4 (2022); 305-310 ; Вопросы современной педиатрии; Том 21, № 4 (2022); 305-310 ; 1682-5535 ; 1682-5527

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Nutrients. 2016;8(12):789. doi: https://doi.org/10.3390/nu8120789; Kim G, Bae JH. Vitamin D and atopic dermatitis: A systematic review and meta-analysis. Nutrition. 2016;32(9):913–920. doi: https://doi.org/10.1016/j.nut.2016.01.023; Zhu Z, Yang Z, Wang C, Liu H. Assessment of the Effectiveness of Vitamin Supplement in Treating Eczema: A Systematic Review and Meta-Analysis. Evid Based Complement Alternat Med. 2019; 2019:6956034. doi: https://doi.org/10.1155/2019/6956034; Ercan N, Bostanci IB, Ozmen S, Tekindal MA. Is there an association between vitamin D levels and cow’s milk protein allergy at infancy? Arch Argent Pediatr. 2019;117(5):306–313. doi: https://doi.org/10.5546/aap.2019.eng.306; Baek JU, Hwangbo JW, Lee HR, Lee SY. Vitamin D insufficiency is associated with food sensitization in children under 2 years with atopic dermatitis. Allergy Asthma Respir Dis. 2013;1(3):211–215.; Кашинская Т.С., Шахова Н.В. Ассоциация уровня витамина D со степенью тяжести и сенсибилизацией к аллергенам при атопическом дерматите у детей 3–6 лет // Российский вестник перинатологии и педиатрии. — 2021. — Т. 66. — № 4. — С. 185.; Ibrahim HM, El-Taieb MA, Hassan MH, et al. Relations between vitamin D3, total and specific IgE for house dust mites in atopic dermatitis patients. Sci Rep. 2020;10(1):21000. doi: https://doi.org/10.1038/s41598-020-77968-1; Jang YH, Sim HB, Moon SY, Lee WJ, Lee SJ, Jin M, Kim SH, Kim DW. House Dust Mite Sensitization Is Inversely Associated with Plasma 25-Hydroxyvitamin D3 Levels in Patients with Severe Atopic Dermatitis. Ann Dermatol. 2017;29(4):400–406. doi: https://doi.org/10.5021/ad.2017.29.4.400

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    Contributors: 1

    Source: Russian Journal of Infection and Immunity; Vol 12, No 3 (2022); 580-584 ; Инфекция и иммунитет; Vol 12, No 3 (2022); 580-584 ; 2313-7398 ; 2220-7619

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    Contributors: The study was carried out within the framework of state Funding АААА-А18-118052490070-9, Исследование проведено в рамках финансирования Госзадания НИОКТРАААА-А18-П8052490070-9

    Source: Rossiyskiy Vestnik Perinatologii i Pediatrii (Russian Bulletin of Perinatology and Pediatrics); Том 65, № 4 (2020); 117-121 ; Российский вестник перинатологии и педиатрии; Том 65, № 4 (2020); 117-121 ; 2500-2228 ; 1027-4065 ; 10.21508/1027-4065-2020-65-4

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    Relation: https://www.ped-perinatology.ru/jour/article/view/1219/973; Meltzer E.O., Blaiss M.S., Naclerio R.M. Stoloff S.W, Derebery M.J., Nelson H.S. et al. Burden of allergic rhinitis: allergies in America, Latin America, and Asia-Pacific adult surveys. Allergy Asthma Proc 2012; 33: S113—141. DOI:10.2500/aap.2012.33.3603; Brozek J.L., Bousquet J., Agache I., Agarwal A., Bachert C., Bosnic-Anticevich S. et al. Allergic Rhinitis and its Impact on Asthma (ARIA) guidelines-2016 revision. Allergy Clin Immunol 2017; 140(4): 950-958. DOI:10.1016/j.jaci.2017.03.050; Meltzer E.O. Allergic Rhinitis: Burden of Illness, Quality of Life, Comorbidities, and Control. Immunol Allergy Clin North Am 2016; 36(2): 235-48. DOI:10.1016/j.iac.2015.12.002; de la HozCaballer B., Rodriguez M., Fraj J., Cerecedo I., AMtolin-Amerigo D., Colkset C. Allergic rhinitis and its impact on work productivity in primary care practice and a comparison with other common diseases: the Cross-sectional study to evaluate work productivity in allergic rhinitis compared with other common diseases (CAPRI) study. Am J Rhinol Allergy 2012; 26: 390-394. DOI:10.2500/ajra.2012.26.3799; Juniper E.F., Howland W.C., Roberts N.B., Thompson A.K., King D.R. Measuring quality of life in children with rhinocon-junctivitis. J Allergy Clin Immunol 1998; 101(2P 1): 163-170.; Marino-Sanchez F., Valls-Mateus M., Cardenas-Escalante P., Haag O., Ruiz-Echevarna K., Jimenez-Feijoo R. et al. Influence of nasal septum deformity on nasal obstruction, disease severity, and medical treatment response among children and adolescents with persistent allergic rhinitis. Int J Pedi-atr Otorhinolaryngol 2017; 95: 145-154. DOI:10.1016/j.ijporl.2017.02.005; Marino-Sanchez F.S., Valls-Mateus M., Ruiz-Echevarria K., Alobid I., Cardenas-Escalante P., Jimknez-Feijoo R. et al. Nasal Obstructive Disorders induce medical treatment failure in Pediatric Persistent Allergic Rhinitis (The NODPAR Study). Pediatr Allergy Immunol 2016; 28(2): 176-184. DOI:10.1111/pai.12679; Khan D.A. Allergic rhinitis and asthma: epidemiology and common pathophysiology. Allergy Asthma Proc 2014; 35(5): 357-361. DOI:10.2500/aap.2014.35.3794; Ohta K., Tanaka H., Tohda Y., Kohrogi H., Chihara J., Saka-kibara H. et al. Asthma exacerbations in patients with asthma and rhinitis: Factors associated with asthma exacerbation and its effect on QOL in patients with asthma and rhinitis. Al-lergol Int 2019; 6: S1323-8930(19)30059-0. DOI:10.1016/j.alit.2019.04.008

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    Contributors: The study was funded with a grant from the Rector of the Altai State Medical University (Order «№ 88-ПК» dated February 12, 2018)., Исследование проведено на средства гранта ректора ФГБОУ ВО «Алтайский государственный медицинский университет» (Приказ № 88-ПК от 12.02.2018).

    Source: Current Pediatrics; Том 18, № 2 (2019); 118-124 ; Вопросы современной педиатрии; Том 18, № 2 (2019); 118-124 ; 1682-5535 ; 1682-5527

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Airway epithelial cells from asthmatic children differentially expressproremodeling factors. J Allergy Clin Immunol. 2012;129:990–997. doi:10.1016/j.jaci.2011.11.035.; Johansson MW, Evans MD, Crisafi GM, et al. Serum periostin is associated with type 2 immunity in severe asthma. J Allergy Clin Immunol. 2016;137(6):1904–1907. doi:10.1016/j.jaci.2015.12.1346.; Simpson JL, Yang IA, Upham JW, et al. Periostin levels and eosinophilic inflammation in poorly-controlled asthma. BMC Pulm Med. 2016;16(1):67. doi:10.1186/s12890-016-0230-4.; Habernau Mena A, Del Pozo Abejon V, Rodriguez Vidigal FF, Bobadilla Gonzalez P. Role of periostin in uncontrolled asthma in children (DADO study). J Investig Allergol Clin Immunol. 2017; 27 (5):291–298. doi:10.18176/jiaci.0144.; Konradsen JR, Skantz E, Nordlund B, et al. Predicting asthma morbidity in children using proposed markers of Th2-type inflammation. Pediatr Allergy Immunol. 2015;26(8):772–779. doi:10.1111/pai.12457.

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    Source: Medical Immunology (Russia); Том 24, № 2 (2022); 317-326 ; Медицинская иммунология; Том 24, № 2 (2022); 317-326 ; 2313-741X ; 1563-0625

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    Source: Current Pediatrics; Том 13, № 6 (2014); 21-29 ; Вопросы современной педиатрии; Том 13, № 6 (2014); 21-29 ; 1682-5535 ; 1682-5527

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    Source: Pediatric pharmacology; Том 10, № 4 (2013); 106-112 ; Педиатрическая фармакология; Том 10, № 4 (2013); 106-112 ; 2500-3089 ; 1727-5776

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