Dalimot Jill Jasmine, Smith Ilka Mc Cormick, Gerkrath Jasmin, Hartmann Sylvia, Cornely Oliver A, Lee Soo Chan, Heitman Joseph, Rickerts Volker
Mycotic and Parasitic Agents and Mycobacteria, Department of Infectious Diseases, Robert Koch Institute (RKI), 13353 Berlin, Germany.
Signalling in Apicomplexan Parasites Laboratory, The Francis Crick Institute, London NW1 1AT, UK.
J Fungi (Basel). 2022 Mar 11;8(3):289. doi: 10.3390/jof8030289.
Mucormycosis is an invasive fungal infection associated with high mortality, partly due to delayed diagnosis and inadequate empiric therapy. As fungal cultures often fail to grow Mucorales, identification of respective hyphae in tissue is frequently needed for diagnosis but may be challenging. We studied fluorescence in situ hybridization (FISH) targeting specific regions of the fungal ribosomal RNA (rRNA) of Mucorales to improve diagnosis of mucormycosis from tissue samples. We generated a probe combination specifically targeting Mucorales. Probe specificity was verified in silico and using cultivated fungi. Mucorales hyphae in tissue of a mouse model demonstrated a bright cytoplasmatic hybridization signal. In tissue samples of patients with mucormycosis, a positive signal was seen in 7 of 12 (58.3%) samples. However, autofluorescence in 3 of 7 (42.9%) samples impaired the diagnostic yield. Subsequent experiments suggested that availability of nutrients and antifungal therapy may impact on the FISH signal obtained with Mucorales hyphae. Diagnosis of mucormycosis from tissue might be improved by rRNA FISH in a limited number of cases only. FISH signals may reflect different physiological states of fungi in tissue. Further studies are needed to define the value of FISH to diagnose mucormycosis from other clinical samples.
毛霉病是一种侵袭性真菌感染,死亡率很高,部分原因是诊断延迟和经验性治疗不足。由于真菌培养往往无法培养出毛霉目真菌,因此诊断时经常需要在组织中识别相应的菌丝,但这可能具有挑战性。我们研究了针对毛霉目真菌核糖体RNA(rRNA)特定区域的荧光原位杂交(FISH)技术,以改善从组织样本中诊断毛霉病的方法。我们生成了一种专门针对毛霉目的探针组合。通过计算机模拟和使用培养的真菌验证了探针的特异性。小鼠模型组织中的毛霉目菌丝显示出明亮的细胞质杂交信号。在毛霉病患者的组织样本中,12个样本中有7个(58.3%)出现阳性信号。然而,7个样本中有3个(42.9%)的自发荧光影响了诊断结果。后续实验表明,营养物质的可用性和抗真菌治疗可能会影响毛霉目菌丝获得的FISH信号。只有在少数情况下,rRNA FISH可能会改善从组织中诊断毛霉病的情况。FISH信号可能反映了组织中真菌的不同生理状态。需要进一步研究来确定FISH在从其他临床样本中诊断毛霉病方面的价值。