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"Echinococcus - isolation "
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Assessment of environmental contamination with Echinococcus spp. through DNA detection in free-roaming canid feces and soil in human echinococcosis hotspots from the Three-River-Source Region of the Qinghai-Tibet Plateau, China
2026
Background
The Three-River-Source Region of the Qinghai-Tibet Plateau is a hyperendemic focus for echinococcosis, with
Echinococcus granulosus
,
E. multilocularis
, and
E. shiquicus
circulating between definitive canid hosts (dogs and foxes) and intermediate hosts (livestock and rodents). However, the extent of environmental contamination by
Echinococcus
eggs remains understudied and poses significant risks to human and animal health.
Methods
From 2019 to 2021, we collected 631 canid fecal samples (296 from dogs and 335 from foxes) and 398 adjacent soil samples across endemic counties in the Three-River-Source Region of the Qinghai-Tibet Plateau. Multiplex real-time PCR was employed to detect
Echinococcus
species DNA in feces and soil samples.
Results
The overall
Echinococcus
prevalence in canid feces was 7.13% (45/631), with 3.01% in
E. multilocularis
(19/631), 2.06% in
E. granulosus
(13/631), and 2.06% in
E. shiquicus
(13/631). Foxes presented increased
E. multilocularis
(3.88%, 13/335) and
E. shiquicus
(2.69%, 9/335) infections, whereas dogs presented increased
E. granulosus
prevalence (2.70%, 8/296). Soil contamination with
Echinococcus
species was detected in 2.51% (10/398) of the samples. The primary contaminants were
E. multilocularis
and
E. shiquicus
(1.01% each, 4/398), whereas
E. granulosus
was less frequent (0.50%, 2/398). Moreover, the soil near fox feces was contaminated with both
E. multilocularis
and
E. shiquicus
, whereas the dog-associated soil was contaminated with all three species.
Conclusions
This study suggests widespread environmental deposition of
Echinococcus
eggs on the Qinghai-Tibet Plateau, driven by canid defecation. If these eggs remain viable, their persistence in soil would indicate a potential zoonotic transmission risk, highlighting the need for integrated control strategies targeting both domestic and wild canids.
Graphical abstract
Journal Article
Presence of Echinococcus eggs in the environment and food: a review of current data and future prospects
2024
Cystic and alveolar echinococcosis are considered the second and third most significant foodborne parasitic diseases worldwide. The microscopic eggs excreted in the feces of the definitive host are the only source of contamination for intermediate and dead-end hosts, including humans. However, estimating the respective contribution of the environment, fomites, animals or food in the transmission of Echinococcus eggs is still challenging. Echinococcus granulosus and E. multilocularis seem to have a similar survival capacity regarding temperature under laboratory conditions. In addition, field experiments have reported that the eggs can survive several weeks to years outdoors, with confirmation of the relative susceptibility of Echinococcus eggs to desiccation. Bad weather (such as rain and wind), invertebrates and birds help scatter Echinococcus eggs in the environment and may thus impact human exposure. Contamination of food and the environment by taeniid eggs has been the subject of renewed interest in the past decade. Various matrices from endemic regions have been found to be contaminated by Echinococcus eggs. These include water, soil, vegetables and berries, with heterogeneous rates highlighting the need to acquire more robust data so as to obtain an accurate assessment of the risk of human infection. In this context, it is essential to use efficient methods of detection and to develop methods for evaluating the viability of eggs in the environment and food.
Journal Article
Cystic echinococcosis in Cyprus: historical retrospective and finding of 2 Echinococcus granulosus sensu lato species
by
Casulli, Adriano
,
Santolamazza, Federica
,
Santoro, Azzurra
in
Agricultural production
,
Animals
,
Bats
2024
The island of Cyprus was a historical endemic area for cystic echinococcosis (CE) in the Mediterranean. During the last decades, Cyprus has been an open-air laboratory and a model for testing and implementing control measures aiming to eliminate CE as a public health problem. Despite control and surveillance measures implemented during last 50 years, molecular characterization of Echinococcus granulosus sensu lato specimens has been never provided. In February 2023, the carcass of a stray dog collected in the Nicosia district was examined by the Veterinary Services and found infected with Echinococcus spp. worms. The worms were sent to the European Union Reference Laboratory (EURLP) for species/genotype identification. The sequences analyses of nad2 and nad5 genes allowed us to identify the tapeworms as Echinococcus canadensis, genotype G7b. In November 2023, a parasitic liver cyst was observed during the post-mortem examination of a mouflon from the same area of the dog's finding. The cyst sample was also referred to EURLP for identification and comparison with tapeworms previously collected from the dog. The sequences analysis of cox1 gene allowed to identify the cyst as E. granulosus sensu stricto, genotype G1. The finding of 2 different species of E. granulosus s.l. in a limited area raises epidemiological questions on the origin of the samples: whether distinct transmission cycles are present or a recent introduction event have occurred. From a public health perspective, it will be essential to conduct further molecular epidemiology studies to clarify the recent transmission dynamics of Echinococcus species in Cyprus.
Journal Article
Molecular survey of taeniid cestodes with special emphasis on Echinococcus species in free-roaming dogs and wild carnivores in Armenia
by
Romig, Thomas
,
Gevorgyan, Hasmik
,
Asikyan, Manan
in
Alveoli
,
Animals
,
Animals, Wild - parasitology
2025
Echinococcosis, caused by cestodes of the genus Echinococcus , poses significant public health and veterinary concerns globally. In Armenia, cystic echinococcosis (CE) is well-documented in livestock and humans, while alveolar echinococcosis (AE) has long been considered non-endemic. However, a recent retrospective study identified human AE cases, suggesting an underestimation of the parasite’s presence. To address knowledge gaps, a pilot survey was conducted to identify Echinococcus species and other taeniids in free-roaming dogs and wild carnivores in Armenia. Fecal samples ( n = 112) were opportunistically collected from eight wild carnivore species and stray dogs across six Armenian provinces between 2017 and 2018. Samples were analysed for taeniid eggs using flotation and molecular techniques. Echinococcus multilocularis was identified in a free-roaming dog, marking the first confirmed detection of the parasite in a definitive host in Armenia. Additionally, E. canadensis G6/7 and E. ortleppi were detected in a wolf, while E. canadensis G6/7, Taenia hydatigena , and T. laticollis were found in a lynx. These findings indicate the involvement of both domestic and wild carnivores in the transmission cycles of Echinococcus species and suggest the presents of a potential sylvatic cycle involving E. canadensis G6/7 and E. ortleppi . The presence of E. multilocularis in a dog underscores the risk of human infection, necessitating further epidemiological studies. This study provides initial insights into the epidemiology of Echinococcus in Armenia and highlights the need for continued surveillance to assess public health risks.
Journal Article
Prevalence and geographic distribution of Echinococcus genus in wild canids in southern Québec, Canada
by
Massé, Ariane
,
Fernandez-Prada, Christopher
,
Turgeon, Patricia
in
Animals
,
Animals, Wild - parasitology
,
Biology and Life Sciences
2024
Echinococcus spp. is an emerging zoonotic parasite of high concern. In Canada, an increase in the number of human and animal cases diagnosed has been reported, but information regarding the parasite’s distribution in wildlife reservoir remains limited. A cross-sectional study was conducted to estimate the prevalence of wild canids infected with Echinococcus spp. and Echinococcus multilocularis in areas surrounding populated zones in Québec (Canada); to investigate the presence of areas at higher risk of infection; to evaluate potential risk factors of the infection; and as a secondary objective, to compare coproscopy and RT-PCR diagnostic tests for Taenia spp. and Echinococcus identification. From October 2020 to March 2021, fecal samples were collected from 423 coyotes ( Canis latrans ) and 284 red foxes ( Vulpes vulpes ) trapped in 12 administrative regions. Real-time PCR for molecular detection of genus Echinococcus spp. and species-specific Echinococcus multilocularis were performed. A total of 38 positive cases of Echinococcus spp., of which 25 were identified as E . multilocularis , were detected. Two high-risk areas of infection were identified. The prevalence of Echinococcus spp. was 22.7% (95% CI 11.5–37.8%) in the Montérégie centered high-risk area, 26.5% (95% CI 12.9–44.4%) in the Bas-St-Laurent high-risk area, and 3.0% (95%CI 1.8–4.7%) outside those areas. For E . multilocularis , a prevalence of 20.5% (95% CI 9.8–35.3%) was estimated in the high-risk area centered in Montérégie compared to 2.4% (95% CI 1.4–3.9%) outside. Logistic regression did not show any association of infection status with species, sex, or geolocation of capture ( p > 0.05). This study shows the circulation of Echinococcus in a wildlife cycle in 9/12 administrative regions of Québec.
Journal Article
Human and animal cystic echinococcosis in Konya, Turkey: molecular identification and the first report of E. equinus from human host in Turkey
2021
Cystic echinococcosis is a neglected, zoonotic disease in Turkey. The disease is commonly seen in rural areas where the local population is in close contact with livestock and dogs. This research aimed to molecularly identify of hydatid cysts in cattle and human isolates from Konya, Turkey. Following sample collection, direct microscopy was performed. After direct examination, total DNA was extracted, and positive PCR products of cox 1 mitochondrial gene (~ 875 bp) were sequenced. A total of 83 hydatid cysts (cattle n = 57 and human n = 26), 82 were identified as Echinococcus granulosus sensu stricto (G1–G3 genotypes), and one human isolate was characterized as Echinococcus equinus (G4 genotype). Fertility rates of cysts belonging to cattle for liver and lung cysts were 93.3% and 80%, respectively. Out of 26 human originated isolates, 18 (69.2%) of cysts were found to be fertile. To the best of our knowledge, this is the first report of E. equinus from human host in Turkey.
Journal Article
Molecular evidence of Echinococcus canadensis (G6/G7) predominance in Mongolian livestock and its implications for control
by
Cao, Yilin
,
Zhou, Xiao-Nong
,
Nergui, Davaasuren
in
Animals
,
Biology and Life Sciences
,
Camelus - parasitology
2026
Cystic echinococcosis (CE), caused by Echinococcus granulosus sensu lato (E. granulosus s.l.), is a major zoonotic disease causing substantial health and economic losses, particularly in pastoral communities. WHO and WOAH recommend combining regular dog deworming with sheep vaccination (EG95) for control. However, genotype data are important for vaccination planning, as EG95 mainly targets G1/G3 in sheep and evidence of protection against other genotypes is limited. In Mongolia, molecular data from livestock, especially sheep, remain scarce despite the large sheep population. We therefore aimed to determine the genotype distribution of E. granulosus s.l. among livestock, particularly sheep, across Mongolia's endemic provinces.
From August to December 2024, we conducted an abattoir-based cross-sectional survey in four provinces (Umnugobi, Bayankhongor, Dundgobi, and Tuv). Sheep, goats, and camels were examined for hydatid cysts. DNA was extracted, the COX1 gene was amplified by PCR and sequenced using the Sanger method, and published diagnostic COX1 sites were used to refine G6/G7 assignments; phylogenetic and haplotype analyses were performed with regional reference data.
Cysts were detected in 2.5% (115/4,578) of animals, and 0.31% (14/4,578) were molecularly confirmed as E. granulosus s.l. Among them, 93% (13/14; 10 sheep, 2 goats, 1 camel) were Echinococcus canadensis (G6/G7) and 7% (1/14; 1 sheep) were Echinococcus granulosus s.s. (G1/G3). Five COX1 haplotypes were identified: four E. canadensis haplotypes (H1-H4) and one E. granulosus s.s. haplotype (H5). Haplotypes H1-H3 were consistent with G6, whereas H4 was consistent with G7a. These haplotypes grouped with reference isolates from Mongolia and neighbouring countries, as well as from other endemic regions included in the network.
This study strengthens evidence that E. granulosus s.l. infections in Mongolian livestock are predominantly caused by Echinococcus canadensis G6/G7 and shows, for the first time, that this taxon predominated among successfully genotyped isolates from sheep in the surveyed areas. These findings support genotype-informed surveillance for vaccination planning, particularly in mixed-genotype settings, while underscoring the importance of dog deworming and safe offal disposal. Our findings further clarify CE transmission patterns in Mongolia and the wider region, highlight the transboundary nature of CE, and support the need for coordinated cross-border surveillance and control.
Journal Article
A multiplex PCR for the identification of Echinococcus multilocularis, E. granulosus sensu stricto and E. canadensis that infect human
2019
Echinococcus granulosus sensu stricto (s.s.), Echinococcus multilocularis and Echinococcus canadensis are the common causes of human echinococcosis in China. An accurate species identification tool for human echinococcosis is needed as the treatments and prognosis are different among species. The present work demonstrates a method for the simultaneous detection of these three Echinococcus species based on multiplex polymerase chain reaction (mPCR). Specific primers of this mPCR were designed based on the mitochondrial genes and determined by extensive tests. The method can successfully detect either separated or mixed target species, and generate expected amplicons of distinct size for each species. Sensitivity of the method was tested by serially diluted DNA, showing a detection threshold as less as 0.32 pg for both E. granulosus s.s. and E. canadensis, and 1.6 pg for E. multilocularis. Specificity assessed against 18 other parasites was found to be 100% except weakly cross-react with E. shiquicus. The assay was additionally applied to 69 echinococcosis patients and 38 healthy persons, confirming the high reliability of the method. Thus, the mPCR described here has high application potential for clinical identification purposes, and can further provide a useful tool for evaluation of serology and imaging method.
Journal Article
National survey and molecular diagnosis of Echinococcus granulosus sensu lato in livestock in France, 2012
by
Umhang, Gérald
,
Boué, Franck
,
Boucher, Jean-Marc
in
Abattoirs
,
Animal Distribution
,
animal organs
2020
The parasitic species of the Echinococcus granulosus sensu lato (sl) complex are the causative agents of cystic echinococcosis in humans. The lifecycle of E. granulosus sl is essentially domestic, and is based on the consumption by dogs of hydatid cysts in viscera of livestock species. The aim of this study was to survey E. granulosus sensu lato in livestock in France. A 1-year national survey of E. granulosus sl in livestock at the slaughterhouse was organized in 2012 in France, with systematic molecular confirmation. The prevalence of E. granulosus ss nationally was 0.002% in sheep, mainly focused in the Alpine area, and 0.001% in cattle, with the distribution of cases throughout the country. Echinococcus canadensis G6/7 was observed only in Corsica in pigs, with a prevalence of nearly 1% in the island. A national prevalence of 0.0002% was estimated for E. ortleppi in cattle, due to seven cases distributed in two foci. The results of this survey are of particular interest because of the zoonotic risk associated with the presence of these parasite species, for which systematic control at the slaughterhouse should enable their elimination.
Journal Article
Environmental contamination with feces of free-roaming dogs and the risk of transmission of Echinococcus and Taenia species in urban regions of southeastern Iran
by
Romig, Thomas
,
Dumendiak, Sonja
,
Aghassi, Hossein
in
Animals
,
Biomedical and Life Sciences
,
Biomedicine
2024
Background
Dogs are the most important definitive hosts of zoonotic taeniid helminths worldwide. Different
Echinococcus
and
Taenia
species of domestic and wild carnivores pose a potential risk to human population. High populations of free-roaming dogs (FRDs) in urban areas of Iran and widespread contamination of the environment with dog feces is a potential source of infecting people living in the urban regions with cystic echinococcosis (CE). Our knowledge on the risk of CE transmission in the urban settings in the endemic regions is limited. The present study surveyed the species and genotypes of
E. granulosus
sensu lato and other taeniids by examining feces of free-roaming dogs in the urban areas in the city of Kerman, southeastern Iran.
Methods
The city was divided into 100 consecutive blocks of which 25 blocks were randomly selected. Fecal samples of FRDs were counted, mapped and fresh samples were collected. Then Zinc chloride flotation, and sequential sieving was performed, and the samples were examined under an inverted microscope. Single individual taeniid eggs were isolated, partial
nad1
gene was amplified and sequenced to identify species and genotypes.
Results
In total 5607 fecal samples of dogs were mapped and 83 fresh samples were collected. Taeniid eggs were detected in nine fecal samples (10.8%) from seven out of the 25 city blocks (28.0%).
Echinococcus
eggs were found in four samples (4.8%) from three city blocks, two samples containing
E. granulosus
sensu stricto (2.4%), two samples containing
E. canadensis
G6/7 (2.4%). In addition, three samples contained eggs of
Taenia hydatigena
(3.6%), and one sample of
Taenia serialis
(1.2%).
Conclusions
This study documented the potential risk of CE transmission to humans resulting from the feces of dogs roaming freely in urban areas.
Graphical Abstract
Journal Article