[Diagnosis of allergen components in fungi and microbial communities: patient sensitization characteristics and main sensitizing proteins]

Zhonghua Yu Fang Yi Xue Za Zhi. 2024 May 6;58(5):711-718. doi: 10.3760/cma.j.cn112150-20240304-00179.
[Article in Chinese]

Abstract

The human body, as a highly complex ecosystem, harbors diverse microbial communities, with major factors triggering allergic reactions encompassing the skin microbiome and fungi. The global diversity of fungi is estimated to range from approximately 600 000 to 1 million species, and theoretically, IgE-mediated sensitization may occur to any fungal species. As of now, the World Health Organization/IUIS official database records 113 fungal allergens originating from 30 different fungi species, covering 42 allergen families. Regarding the skin microbiome, 14 distinct Malassezia allergens have been identified, all derived from three different Malassezia fungi species--M. furfur, M. sympodialis, and M. globosa. The conditions of patients with these allergies are exceptionally complex. This article extensively discusses the latest research advancements and clinical applications related to skin microbiome and fungal allergies from the European Academy of Allergy and Clinical Immunology (EAACI) publication, "Molecular Allergology User's Guide 2.0". Additionally, it compiles information on the sources of fungal allergens, characteristics of allergen component protein families, clinical relevance, and management strategies, both domestically and internationally. The aim is to enhance the profound understanding of allergen components among relevant professionals. Through the application of advanced allergen component diagnostic techniques, the goal is to achieve precise diagnosis and treatment of fungal allergy patients and explore the mechanisms underlying fungal sensitization and pathogenesis, laying the foundation for studying the fungal allergen protein sensitization spectrum in the Chinese population.

人体作为一个高度复杂的生态系统,生长着多种多样的微生物群落,其中引发过敏反应的主要为皮肤微生物组和真菌。全球真菌的种类数量大致介于60万至100万之间,在理论上,IgE介导的致敏作用可以由任何真菌物种导致。但截至目前,世界卫生组织/国际免疫学联合会(IUIS)官方数据库中只记录了113种真菌过敏原,这些过敏原源自30种不同的真菌,涵盖了42个过敏原家族。而对于皮肤微生物组,已经鉴定出14种不同的马拉色菌过敏原,这些过敏原均源自3种不同的马拉色霉菌,即毛滴虫、分枝杆菌和M. globosa。这些过敏病患者的过敏原组分致敏谱异常复杂。本文将详细阐释欧洲过敏和临床免疫学会(EAACI)发布的《过敏原组分诊断指导建议2.0》中关于皮肤微生物组和真菌过敏的最新研究进展和临床应用。同时,整理了国内外真菌过敏原的来源、过敏原组分蛋白家族的特征、临床相关性以及诊断策略,以提升相关专业人员对过敏原组分的深刻理解。通过运用先进的过敏原组分诊断技术,旨在精准诊疗过敏患者,为研究中国人群的皮肤微生物组和真菌过敏原蛋白致敏谱奠定基础。.

Publication types

  • English Abstract

MeSH terms

  • Allergens* / immunology
  • Fungal Proteins / immunology
  • Fungi* / immunology
  • Humans
  • Hypersensitivity* / diagnosis
  • Malassezia / immunology
  • Microbiota*
  • Skin / microbiology

Substances

  • Allergens
  • Fungal Proteins