Deciphering Aspergillus section Terrei in Galleria mellonella model: a clade-specific pathogenicity characterization

Roya Vahedi-Shahandashti1, Jos Houbraken2, Vit Hubka3,4

  • 1Institute of Hygiene and Medical Microbiology, Medical University of Innsbruck, ECMM Excellent Center of Mycology, ISHAM Working Group Member of A. terreus, Innsbruck, Austria.

Microbiology Spectrum
|March 17, 2025
PubMed

Insights

Cryptic Aspergillus species show varied virulence and antifungal resistance. Accurate identification is crucial for clinical preparedness against emerging fungal pathogens.

Area of Science:

  • Medical Mycology
  • Infectious Diseases
  • Fungal Pathogenesis

Background:

  • The Aspergillus genus includes opportunistic pathogens, with cryptic species gaining clinical relevance.
  • Understanding the virulence and antifungal susceptibility of these less-common species is vital for public health.
  • Traditional focus on Aspergillus fumigatus overlooks the growing threat of other species.

Purpose of the Study:

  • To evaluate the virulence potential of 19 Aspergillus species in section Terrei using the Galleria mellonella model.
  • To compare virulence across three series (Terrei, Nivei, Ambigui) within Aspergillus section Terrei.
  • To assess antifungal susceptibility, particularly azole resistance, in cryptic Aspergillus species.

Main Methods:

  • Utilized the Galleria mellonella invertebrate model to assess fungal virulence.
  • Infected larvae with 19 Aspergillus species from section Terrei, categorized into three series.
  • Performed histological analysis to evaluate fungal distribution and filamentation.
  • Determined minimum inhibitory concentrations (MICs) for conventional antifungals.

Main Results:

  • Significant variations in virulence were observed among Aspergillus section Terrei species and series.
  • Series Ambigui exhibited lower virulence compared to series Terrei and Nivei.
  • Cryptic species showed a range of virulence, with some highly virulent (≤72h survival) and others less virulent (≤144h survival).
  • Histological data supported virulence assessment, showing greater fungal spread in more virulent species.
  • Elevated azole MICs were noted for certain cryptic species, including Aspergillus niveus and Aspergillus iranicus.

Conclusions:

  • Cryptic Aspergillus species within section Terrei display diverse virulence profiles and varying antifungal susceptibility.
  • Accurate identification of these cryptic species is essential due to their potential for high virulence and azole resistance.
  • Findings underscore the need for enhanced clinical preparedness to address emerging fungal threats posed by understudied Aspergillus species.

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