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Updated: Mar 14, 2026

Identification of Rare Bacterial Pathogens by 16S rRNA Gene Sequencing and MALDI-TOF MS
Published on: July 11, 2016
Identification and typing of free-living Acanthamoeba spp. by MALDI-TOF MS Biotyper
Federica Del Chierico1, David Di Cave2, Cristel Accardi1
1Human Microbiome Unit, Bambino Gesù Children's Hospital and Research Institute, IRCCS, Rome, Italy.
Abstract:
Over the years, the potential pathogenicity of Acanthamoeba for humans and animals has gained increasing attention from the scientific community. More than 24 species belong to this genus, however only some of them are causative agents of keratitis and encephalitis in humans. Due to technical difficulties in diagnosis, these infections are likely to be under-detected. The introduction of 18S rDNA amplification for the identification of Acanthamoeba has dramatically enhanced diagnosis performances, but the attestation of genotyping requires supplementary sequencing-based procedures. In this study, 15 Acanthamoeba strains were collected and grown on nutrient agar media. Each strain was genotyped by end-point PCR assay for the amplification of the 18S rDNA gene and the genotype was assigned by sequencing analysis through neighbor joining phylogenetic tree. In order to optimize standardization of the MALDI-TOF MS assay, we established the collection time point at the cystic phase. Two strains of each genotype were randomly chosen to customize the biotyper database. For all strains, 24 spectral measurements were acquired and submitted to identification and cluster analysis of spectra. The obtained results highlighted the correct identification of Acanthamoeba strains and the overlapping of spectra dendrogram clusters to the 18S genotype assignations. In conclusion, the MALDI-TOF MS Biotyper revealed the capability to identify and genotype the Acanthamoeba strains, providing a new frontier in the diagnostic identification of amaebae and in taxonomic and phylogenetic studies.
Insights
Matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF MS) can now identify and genotype Acanthamoeba strains. This method offers a new approach for diagnosing amoebic infections and advancing phylogenetic studies.
Area of Science:
- Microbiology
- Parasitology
- Molecular Diagnostics
Background:
- Acanthamoeba species are increasingly recognized as potential pathogens in humans and animals.
- Infections like keratitis and encephalitis are challenging to diagnose, potentially leading to under-detection.
- While 18S rDNA amplification improved identification, genotyping still requires complex sequencing.
Purpose of the Study:
- To evaluate the efficacy of MALDI-TOF MS for identifying and genotyping Acanthamoeba strains.
- To optimize MALDI-TOF MS standardization for Acanthamoeba cystic phase.
- To compare MALDI-TOF MS results with 18S rDNA sequencing for phylogenetic analysis.
Main Methods:
- 15 Acanthamoeba strains were cultured and genotyped using 18S rDNA PCR and sequencing.
- MALDI-TOF MS was optimized by collecting samples during the cystic phase.
- Customized the biotyper database with 24 spectral measurements per strain for identification and cluster analysis.
Main Results:
- MALDI-TOF MS accurately identified Acanthamoeba strains.
- Spectral dendrogram clusters correlated well with 18S rDNA-based genotype assignments.
- The method demonstrated capability for both identification and genotyping.
Conclusions:
- MALDI-TOF MS Biotyper provides a reliable method for identifying and genotyping Acanthamoeba.
- This technique represents a significant advancement for diagnosing amoebic infections.
- It also offers a valuable tool for taxonomic and phylogenetic research on Acanthamoeba.
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