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Analysis of Trichosporon Isolates Obtained from the Houses of Patients with Summer-Type Hypersensitivity Pneumonitis

机译:从夏季型超敏性肺炎患者的房屋中获得的滴虫孢子分离物的分析

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摘要

Summer-type hypersensitivity pneumonitis (SHP) is type III or IV allergies developed by repeated inhalation of arthroconidia of Trichosporon species. We identified 105 strains obtained from the homes of 36 SHP patients by analysis of the intergenic spacer (IGS) 1 region, which is located between the 26S and 5S rRNA genes; in addition, we analyzed the IGS genotypes of the strains. Serologically, Trichosporon species are classified as serotype I, II, III, or I-III. Of the 105 strains, 43 (41.1%), 53 (50.5%), and 9 (8.6%) strains were isolated as serotypes I, II, and III, respectively. Serotype I, II, and III strains were recovered from 19 (52.8%), 29 (80.6%), and 4 (11.1%) of the 36 houses of SHP patients, respectively. No serotype I-III strains were isolated from the houses. Of 43 serotype I strains, 42 (97.7%) were identified as Trichosporon dermatis, and the remaining one was T. terricola. Of 53 serotype II strains, 37 (69.8%) were identified as T. asahii, and the remaining serotype II isolates were T. aquatile (1.9%), T. coremiiforme (7.5%), T. faecale (1.9%), T. japonicum (15.1%), and T. ovoides (3.8%). There were nine serotype III strains comprised of T. montevideense (77.8%) and T. domesticum (22.2%). Intraspecies diversity was found only in T. asahii. This microorganism also causes opportunistic infections (trichosporonosis); seven genotypes of its IGS 1 region have been identified. While the strains of T. asahii obtained from Japanese patients with trichosporonosis were genotype I, the strains from the houses of SHP patients were genotype III. Based on our analysis, we conclude that the strains that play the most significant roles in the development of SHP are T. dermatis, T. asahii genotype 3, and T. montevideense, representing serotypes I, II, and III, respectively.
机译:夏季型超敏性肺炎(SHP)是通过反复吸入Trichosporon物种的关节炎而发展成的III型或IV型过敏。通过分析位于26S和5S rRNA基因之间的基因间隔区(IGS)1区,我们确定了从36例SHP患者的家中获得的105株。另外,我们分析了菌株的IGS基因型。在血清学上,毛孢子菌种被分类为血清型I,II,III或I-III。在105株中,分别分离出I,II和III血清型的43株(41.1%),53株(50.5%)和9株(8.6%)。从SHP患者的36所房屋中分别回收了I,II和III型血清型菌株,分别来自19所(52.8%),29所(80.6%)和4所(11.1%)。没有从房屋中分离出血清型I-III菌株。在43株I型血清型菌株中,有42株(97.7%)被鉴定为皮肤毛滴虫,其余为T. terricola。在53种II型血清型菌株中,有37种(69.8%)被鉴定为麻黄木霉菌,其余的II型血清型分离株为水生T.aquatile(1.9%),Coreiiforme(7.5%),F。faecale(1.9%),T。日本血吸虫(15.1%)和卵圆虫(3.8%)。存在9种III型血清型菌株,其由T. montevideense(77.8%)和T. domesticum(22.2%)组成。物种内的多样性仅在T. asahii中发现。这种微生物还会引起机会性感染(毛孢子菌病)。已经鉴定出其IGS 1区域的七个基因型。从日本的毛孢子虫病患者那里获得的麻黄锥虫菌株是基因型I,而从SHP患者的家中获得的菌株是基因型III。根据我们的分析,我们得出结论,在SHP的发展中发挥最重要作用的菌株是皮肤隐孢子虫,细支气管炎沙门氏菌基因型3和 T。 montevideense ,分别代表血清型I,II和III。

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