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首页> 外文期刊>Medical mycology: official publication of the International Society for Human and Animal Mycology >Rapid and robust identification of clinical isolates of Talaromyces marneffei based on MALDI-TOF mass spectrometry or dimorphism in Galleria mellonella
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Rapid and robust identification of clinical isolates of Talaromyces marneffei based on MALDI-TOF mass spectrometry or dimorphism in Galleria mellonella

机译:基于Maldi-Tof Marnepefe或Galleria Mellonella的临床鉴定术术临床分离株的快速和鲁棒鉴定

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Talaromyces marneffei is a thermally dimorphic fungal pathogen that causes serious infections particularly in patients with human immunodeficiency virus (HIV). Although the mould form typically produces a characteristic red-diffusing pigment, and conidia from penicillate heads, several nonpathogenic Talaromyces/Penicillium species are morphologically and phenotypically similar. While those other species do not exhibit thermal dimorphism, conversion of T. marneffei to the distinctive fission yeast form in vitro is arduous and frequently incomplete. Here we show that T. marneffei can be rapidly and unambiguously discriminated from related nonpathogenic Talaromyces/Penicillium spp., either by matrix-assisted laser desorption ionisation time-of-flight (MALDI-TOF) mass spectrometry or conversion to fission yeast after introduction into Galleria mellonella. Conversion of T. marneffei conidia to the fission yeast form in G. mellonella larvae occurred as early as 24 h post inoculation at 37 degrees C. Identification by MALDI-TOF was possible after supplementation of the commercial Bruker database with in-house mass spectral profiles created from either the yeast or mycelial phase of T. marneffei. In addition, we show that in-house generated mass spectral profiles could be successfully used to identify T. marneffei with a recently published on-line MALDI-TOF database, circumventing the need to create extensive in-house additional databases for rarely encountered fungal pathogens.
机译:Talaromyces Marneffei是一种热量二核真菌病原体,其尤其是人类免疫缺陷病毒(HIV)患者的严重感染。虽然模具形式通常产生特征的红漫射颜料,并且来自青霉素头的分泌物,几种非暴力缩小物种/青霉属物种在形态上和表型相似。虽然那些其他物种没有出现热量二态,但在体外转化为明显的裂变酵母形式的转化为艰巨和经常不完整。在这里,我们表明,T.Marneffei可以从相关的非致缩缩菌/青霉素SPP迅速且明确地区分。,通过基质辅助激光解吸离子化飞行时间(MALDI-TOF)质谱或在引入中后转化为裂变酵母Galleria mellonella。将T.Mellonella幼虫转化为Mellonella幼虫的裂变酵母形式,早在37摄氏度的24小时后发生。在使用内部质谱谱的内部质量谱谱补充商业Bruker数据库之后,MALDI-TOF的鉴定是可能的从T. Marneffei的酵母或菌丝阶段产生。此外,我们表明,内部生成的质谱配置可以成功地使用最近发布的在线Maldi-Tof数据库,以旨在为很少遇到的真菌病原体创建广泛的内部附加数据库需要造成广泛的内部额外数据库的T. Marneffei。 。

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