Related Experiment Video
Updated: Aug 6, 2026

A Simple Fecal Flotation Method for Diagnosing Zoonotic Nematodes Under Field and Laboratory Conditions
Published on: December 15, 2023
Molecular identification of zoonotic hookworms in environmentally collected canine fecal samples in Northern
Ace Jared A Del Mundo1,2, Amina C Kunting2,3, Gino Ishmael Climaco4
1Department of Food Science and Nutrition, College of Home Economics, University of the Philippines Diliman, Quezon City, 1101, Philippines.
Background:
Hookworm infections remain an important public health and veterinary concern in tropical and subtropical regions, particularly in communities with close human-animal interactions and limited sanitation. Dogs are recognized as reservoirs of zoonotic hookworms, yet species-level infection data in endemic areas remain lacking because the widely utilized microscopic examination of stool samples cannot differentiate morphologically indistinguishable hookworm eggs.
Methods:
Environmentally deposited canine fecal samples (n = 72) were collected from five barangays in Gonzaga, Cagayan, Northern Philippines. Samples were examined using formalin-ether concentration technique (FECT) and endpoint PCR targeting the ITS regions, followed by Sanger sequencing for species identification.
Results:
Hookworm ova were detected by coproscopy in 20 samples (27.8%), while the PCR assay yielded 24 positive samples (33.3%). Three hookworm species were identified using nBLAST alignment, with Ancylostoma ceylanicum as the predominant species, alongside single detections of A. caninum and N. americanus, the latter likely reflecting environmental contamination or coprophagic passage rather than true canine infection. There were no mixed-species infections identified.
Conclusion:
The predominance of the zoonotic hookworm A. ceylanicum in environmentally collected canine feces highlights the role of free-roaming dogs in zoonotic hookworm transmission in shared environments. Molecular species identification provided greater resolution than microscopy alone, underscoring the value of integrating PCR-based approaches with conventional coproscopy to strengthen zoonotic hookworm surveillance and better inform One Health interventions.
