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Discovery of New Intracellular Pathogens by Amoebal Coculture and Amoebal Enrichment Approaches
Published on: October 27, 2013
Acanthamoeba species isolated from Philippine freshwater systems: epidemiological and molecular aspects
Giovanni D Milanez1,2, Frederick R Masangkay1,2, Patrick Scheid3
1Biomedical Science Program, School of Allied Health, Walailak University, Tha Sala District, Nakhon Si Thammarat, 8016, Thailand.
Abstract:
Free-living amoeba (FLA) research in the Philippines is still in its infancy but has, by far, demonstrated the presence of potentially pathogenic species. Acanthamoeba may cause sight-threatening and central nervous system infections to humans, yet its epidemiologic distribution from local environmental sources is yet to be defined. The present study aimed to provide a baseline epidemiologic distribution of Acanthamoeba spp. in freshwater systems in the Philippines and establish potential pathogenicity of isolates through thermo-tolerance assay. A total of 63 water samples were collected from 13 freshwater systems all over the Philippine archipelago. The low-volume (50 ml) water samples were processed and cultured on non-nutrient agar lawned with Escherichia coli and observed for amoebic growth using light microscopy. Amoebic culture demonstrated 14.28% (9/63) positivity while further molecular testing of culture-positive plates using Acanthamoeba-specific primers demonstrated 100% (9/9) confirmation of Acanthamoeba species. Genotyping of Acanthamoeba isolates revealed T1, T3, T4, T5, T7, T11, and T15 genotypes. Thermo-tolerance assay demonstrated that T5 and T7 genotypes were potentially pathogenic strains. The evidence of environmental distribution of Acanthamoeba spp. in the freshwater systems in the Philippines and thermo-tolerance profile of isolates are significant aspects of amoeba study in public health and calls for initiatives in the dissemination of relevant information and the expansion of knowledge, awareness, and policies on pathogenic waterborne amoeba to mitigate, prevent, detect, and report cases of human infections.
Insights
Free-living amoeba research in the Philippines found potentially pathogenic Acanthamoeba in freshwater systems. Specific genotypes, T5 and T7, showed potential for causing human infections, highlighting public health concerns.
Area of Science:
- Environmental microbiology
- Public health
- Parasitology
Background:
- Free-living amoeba (FLA) research in the Philippines is emerging.
- Potentially pathogenic Acanthamoeba species have been detected.
- Acanthamoeba poses risks for sight-threatening and central nervous system infections.
Purpose of the Study:
- To determine the distribution of Acanthamoeba species in Philippine freshwater.
- To assess the potential pathogenicity of isolated Acanthamoeba strains.
- To establish a baseline for Acanthamoeba epidemiology in the region.
Main Methods:
- Collected 63 freshwater samples from 13 sites across the Philippines.
- Cultured amoebic growth on non-nutrient agar with Escherichia coli.
- Utilized Acanthamoeba-specific primers for molecular identification and genotyping.
- Performed thermo-tolerance assays to evaluate pathogenicity.
Main Results:
- Amoebic growth confirmed in 14.28% of samples; 100% molecular confirmation of Acanthamoeba.
- Identified genotypes include T1, T3, T4, T5, T7, T11, and T15.
- Thermo-tolerance assays indicated T5 and T7 genotypes as potentially pathogenic.
Conclusions:
- Acanthamoeba species are environmentally distributed in Philippine freshwater systems.
- The presence of potentially pathogenic genotypes (T5, T7) warrants public health attention.
- Further research, awareness, and policy development are crucial for managing waterborne amoeba risks.
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