Mycotic risk factors for the development of severe respiratory allergosis in the population of southern Russia

O. Ukhanova, E. Bogomolova, P.V. Budnikov, E. Churyukina, M. Malakhova, M. S. Shogenova, E. A. Goloshubova, V. Popova, O. Puzikova
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Abstract

Aim: to determine the concentration of mold spores and causative allergens of pollen-producing grasses in the cities of Southern Russia and to assess the prevalence of multisensitization in patients with severe allergic respiratory diseases, taking into consideration mold specific IgE results. Patients and Methods: from 2018 to 2020, concentrations of airborne allergens were evaluated in Stavropol, Krasnodar and Rostov-on-Don according to international techniques, using Burkard and Lanzoni volumetric spore and pollen traps. The levels of non-bacterial allergen- specific IgE were evaluated by allergen component testing in 143 patients (69 children and 74 adults) with allergic rhinitis and atopic asthma. Results: the results of aeropalynology studies demonstrated a high concentration of mold spores in the atmospheric air of all the studied cities co-occurring with seasonal increases in pollen allergen concentrations in the atmospheric air. The South of Russia is characterized by the year-round presence of mold allergens with sporulation peaks in July, August and September. The peak utilization of healthcare services coincided with the maximal concentration of plant pollen and mold spores. The results of comprehensive allergy diagnostic testing suggest that there is a predominance of patients with multisensitization (71%), including sensitization to pollen and mold spore allergens. As a result of the overlapping of the peaks of spreading airborne pollen allergens and mold sporulation, a frequent use of short-acting emergency β2-agonists and more calls for ambulance service are reported. Conclusion: the predominance of patients with multisensitization leads to the development of severe allergic respiratory diseases. Measures of timely management and prevention are needed for such patients. A daily monitoring of sporulation levels and pollen allergens in the air may help to avoid contacts with high concentrations of causative allergens and to implement the necessary preventive measures. The annual aeropalynology monitoring will provide an opportunity to predict allergen concentrations in the atmospheric air during the current year and to develop a statistically significant monitoring model in the future. KEYWORDS: molds, ragweed, aeromycology, aeropalynology, allergens, allergen component testing. FOR CITATION: Ukhanova O.P., Bogomolova E.V., Budnikov P.V. et al. Mycotic risk factors for the development of severe respiratory allergosis in the population of southern Russia. Russian Medical Inquiry. 2023;7(2):65–74 (in Russ.). DOI: 10.32364/2587-6821-2023-7-2-65-74.
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俄罗斯南部人口严重呼吸道过敏症发展的真菌危险因素
目的:在考虑霉菌特异性IgE结果的情况下,确定俄罗斯南部城市产花粉草的霉菌孢子和致敏原的浓度,并评估严重过敏性呼吸道疾病患者多重致敏的患病率。患者和方法:2018 - 2020年,采用Burkard和Lanzoni体积孢子和花粉诱捕器,按照国际标准,对斯塔夫罗波尔、克拉斯诺达尔和顿上罗斯托夫地区空气中过敏原浓度进行评估。对143例变应性鼻炎和特应性哮喘患者(69例儿童和74例成人)进行了非细菌性过敏原特异性IgE的检测。结果:空气鼻炎学研究结果表明,所有研究城市的大气中霉菌孢子浓度较高,同时大气中花粉过敏原浓度季节性增加。俄罗斯南部的特点是霉菌过敏原全年存在,孢子高峰在7月、8月和9月。卫生保健服务利用的高峰与植物花粉和霉菌孢子的最大浓度一致。综合过敏诊断试验结果显示,多致敏患者占多数(71%),包括对花粉和霉菌孢子过敏原的致敏。据报道,由于空气传播花粉过敏原和霉菌孢子的高峰重叠,频繁使用短效紧急β2激动剂和更多的救护车服务呼叫。结论:多重致敏患者的优势导致严重变应性呼吸道疾病的发生。需要对此类患者采取及时的管理和预防措施。每天监测空气中的孢子量和花粉过敏原,有助于避免接触高浓度的致病性过敏原,并采取必要的预防措施。一年一度的空气鼻炎监测将为预测当年大气中过敏原浓度提供机会,并为将来开发具有统计意义的监测模型提供机会。关键词:霉菌、豚草、空气霉菌学、空气鼻炎学、过敏原、过敏原成分检测。引文:Ukhanova o.p., Bogomolova e.v., Budnikov P.V.等。俄罗斯南部人口严重呼吸道过敏症发展的真菌危险因素。俄罗斯医学调查。2023;7(2):65-74。DOI: 10.32364 / 2587-6821-2023-7-2-65-74。
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