4.6 Article

Identification of Adult Fasciola spp. Using Matrix-Assisted Laser/Desorption Ionization Time-of-Flight (MALDI-TOF) Mass Spectrometry

期刊

MICROORGANISMS
卷 9, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/microorganisms9010082

关键词

diagnosis; Fasciola gigantica; Fasciola hepatica; fascioliasis; helminth; matrix-assisted laser; desorption ionization time-of-flight (MALDI-TOF) mass spectrometry; trematode

资金

  1. Cooperation Visits Programme of The World Academy of Sciences and Deutsche Forschungsgemeinschaft (TWAS-DFG)
  2. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)
  3. Saarland University

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Fascioliasis is caused by Fasciola gigantica and Fasciola hepatica. Traditional diagnostic methods have low accuracy, while molecular diagnostics such as MALDI-TOF MS are more reliable. A study developed and validated an in-house database for species-specific identification of Fasciola using MALDI-TOF MS, showing promising results for accurate identification of medically relevant liver flukes.
Fascioliasis is a neglected trematode infection caused by Fasciola gigantica and Fasciola hepatica. Routine diagnosis of fascioliasis relies on macroscopic identification of adult worms in liver tissue of slaughtered animals, and microscopic detection of eggs in fecal samples of animals and humans. However, the diagnostic accuracy of morphological techniques and stool microscopy is low. Molecular diagnostics (e.g., polymerase chain reaction (PCR)) are more reliable, but these techniques are not routinely available in clinical microbiology laboratories. Matrix-assisted laser/desorption ionization time-of-flight (MALDI-TOF) mass spectrometry (MS) is a widely-used technique for identification of bacteria and fungi; yet, standardized protocols and databases for parasite detection need to be developed. The purpose of this study was to develop and validate an in-house database for Fasciola species-specific identification. To achieve this goal, the posterior parts of seven adult F. gigantica and one adult F. hepatica were processed and subjected to MALDI-TOF MS to create main spectra profiles (MSPs). Repeatability and reproducibility tests were performed to develop the database. A principal component analysis revealed significant differences between the spectra of F. gigantica and F. hepatica. Subsequently, 78 Fasciola samples were analyzed by MALDI-TOF MS using the previously developed database, out of which 98.7% (n = 74) and 100% (n = 3) were correctly identified as F. gigantica and F. hepatica, respectively. Log score values ranged between 1.73 and 2.23, thus indicating a reliable identification. We conclude that MALDI-TOF MS can provide species-specific identification of medically relevant liver flukes.

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