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Allergenicity of airborne basidiospores and ascospores:need for further studies

机译:空气传播的孢子孢子和子囊孢子的致敏性:需要进一步研究

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Many known fungal species are grouped among basidiomycetes and ascomycetes. Active mechanisms of spore release into air currents are among the main features of these fungi. Aerobiolog-ical studies have described their presence in many regions worldwide. In some areas, fungi have been described as the predominant outdoor airborne biological paniculate with much higher concentrations than pollen. Other studies have determined that among the fungal aerospora, the highest concentrations belong to basidiospores and ascospores. Nevertheless, the allergenic potential of spores from basidiomycetes and meiotic forms of ascomycetes has not been studied to the extent of mitosporic fungi and allergens from other sources. The need to further evaluate the role of basidiomycetes and meiotic ascomycetes in allergies is evidenced by the few genera with characterized allergens and limited studies that had demonstrated levels of sensitization similar or higher to that of mitosporic fungi and other allergens. In this review, based on the existing aerobiological, epidemiological, immunological, and molecular biology studies, we provide evidence that the role of basidiomycetes and ascomycetes deserves more attention with respect to their roles as potential aeroallergens.
机译:许多已知的真菌物种被分为担子菌和子囊菌。孢子释放到气流中的活跃机制是这些真菌的主要特征。航空生物学研究已经描述了它们在全球许多地区的存在。在某些地区,真菌被描述为主要的户外空气传播生物颗粒,其浓度比花粉高得多。其他研究已经确定,在真菌气孢菌中,最高浓度属于担子孢子和子囊孢子。然而,尚未研究来自担子菌和减数分裂形式的子囊孢子的孢子的致敏潜力,以致丝孢真菌和其他来源的致敏原的程度。少数具有特征性过敏原的属证明了需要进一步评估担子菌和减数分裂子囊菌在过敏中的作用,并且有限的研究表明其敏化水平与线粒体真菌和其他过敏原相似或更高。在这篇综述中,基于现有的航空生物学,流行病学,免疫学和分子生物学研究,我们提供了证据,对于担子菌和子囊菌作为潜在的气变应原的作用,应给予更多关注。

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