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1.
J Helminthol ; 98: e47, 2024 Jun 03.
Article in English | MEDLINE | ID: mdl-38828707

ABSTRACT

Relative to the numerous studies focused on mammalian schistosomes, fewer include avian schistosomatids particularly in the southern hemisphere. This is changing and current research emerging from the Neotropics shows a remarkable diversity of endemic taxa. To contribute to this effort, nine ducks (Spatula cyanoptera, S.versicolor, Netta peposaca), 12 swans (Cygnus melancoryphus) and 1,400 Physa spp. snails from Chile and Argentina were collected for adults and larval schistosomatids, respectively. Isolated schistosomatids were preserved for morphological and molecular analyses (28S and COI genes). Four different schistosomatid taxa were retrieved from birds: Trichobilharzia sp. in N. peposaca and S. cyanoptera that formed a clade; S.cyanoptera and S. versicolor hosted Trichobilharzia querquedulae; Cygnus melancoryphus hosted the nasal schistosomatid, Nasusbilharzia melancorhypha; and one visceral, Schistosomatidae gen. sp., which formed a clade with furcocercariae from Argentina and Chile from previous work. Of the physid snails, only one from Argentina had schistosomatid furcocercariae that based on molecular analyses grouped with T. querquedulae. This study represents the first description of adult schistosomatids from Chile as well as the elucidation of the life cycles of N.melancorhypha and T. querquedulae in Chile and Neotropics, respectively. Without well-preserved adults, the putative new genus Schistosomatidae gen. sp. could not be described, but its life cycle involves Chilina spp. and C. melancoryphus. Scanning electron microscopy of T. querquedulae revealed additional, undescribed morphological traits, highlighting its diagnostic importance. Authors stress the need for additional surveys of avian schistosomatids from the Neotropics to better understand their evolutionary history.


Subject(s)
Life Cycle Stages , Phylogeny , Schistosomatidae , Animals , Schistosomatidae/genetics , Schistosomatidae/classification , Schistosomatidae/isolation & purification , Schistosomatidae/growth & development , Schistosomatidae/anatomy & histology , Chile , Argentina , Birds/parasitology , Bird Diseases/parasitology , RNA, Ribosomal, 28S/genetics , Snails/parasitology , South America , Electron Transport Complex IV/genetics
2.
J Invertebr Pathol ; 205: 108145, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38821315

ABSTRACT

Avian schistosomes inhabit the blood stream of domestic and wild birds with aquatic snails as their intermediate hosts. In the Neotropics there is an emerging effort to describe species from these hosts, including Chile, although the knowledge about their pathological consequences is mostly understudied. This study aimed to describe the pathological changes associated with the parasitism of a native schistosomatid restricted to the Southern Cone of Neotropics. To achieve this, a total of 401 Chilina dombeiana snails (Chilinidae) were collected in two locations from Southern Chile. All of them were disposed to cercarial release procedure for three consecutive days. Furcocercariae released were stained and characterized by microscopic evaluation. Then, all snails were dissected under stereomicroscope and preserved in 10 % buffered formalin until histopathological analysis was performed. Eight out 401 (P = 2 %) snails were found parasitized with avian schistosomes. The released furcocercariae were identified as Schistosomatidae gen. sp. Lineage II which was previously reported in the same host. The main pathological change was an atrophy of ovotestes and an absence or mild infiltration of hemocytes in the surrounding tissues. Besides, a co-infection with echinostomes was found which was associated with a moderate hemocyte infiltration, granuloma-like lesion, and a reduced presence of schistosome' sporocysts. The latter would suggest an antagonistic interaction between these two digeneans, as has been proposed in the Echinostoma spp.-Schistosoma mansoni model. Despite the above, the release of furcocercariae was present but reduced, in contrast with the non-release of echinocercariae. This interaction requires further attention. This study represents the first attempt to characterize the pathological consequences of parasitism by a native, yet undescribed, avian schistosome in an endemic snail. Future studies should consider experimental infections to understand the dynamics of single infections in other Chilina species, including inter- and intra-specific parasitism as previous studies have found, including this study.


Subject(s)
Birds , Schistosomatidae , Snails , Animals , Chile , Snails/parasitology , Schistosomatidae/isolation & purification , Birds/parasitology , Bird Diseases/parasitology , Bird Diseases/pathology , Fresh Water/parasitology , Host-Parasite Interactions
3.
Parasitology ; 151(5): 495-505, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38465379

ABSTRACT

Avian schistosomes are snail-borne trematode parasites (Trichobilharzia spp.) that can cause a nasty skin rash in humans when their cercariae mistake us for their normal bird hosts. We sought to investigate drivers of the spatial distribution of Trichobilharzia cercaria abundance throughout Northern Michigan lakes. For 38 sites on 16 lakes, we assessed several dozen potential environmental predictors that we hypothesized might have direct or indirect effects on overall cercaria abundance, based on known relationships between abiotic and biotic factors in wetland ecosystems. We included variables quantifying local densities of intermediate hosts, temperature, periphyton growth rates, human land use and hydrology. We also measured daily abundance of schistosome cercariae in the water over a 5-week period, supported by community scientists who collected and preserved filtered water samples for qPCR. The strongest predictor of cercaria abundance was Lymnaea host snail density. Lymnaea density was higher in deeper lakes and at sites with more deciduous tree cover, consistent with their association with cool temperature habitats. Contrary to past studies of human schistosomes, we also found a significant negative relationship between cercaria abundance and submerged aquatic vegetation, possibly due to vegetation blocking cercaria movement from offshore snail beds. If future work shows that these effects are indeed causal, then these results suggest possible new approaches to managing swimmer's itch risk in northern MI lakes, such as modifying tree cover and shallow-water vegetation at local sites.


Subject(s)
Bird Diseases , Birds , Lakes , Schistosomatidae , Snails , Animals , Lakes/parasitology , Michigan , Schistosomatidae/isolation & purification , Schistosomatidae/genetics , Schistosomatidae/physiology , Birds/parasitology , Snails/parasitology , Bird Diseases/parasitology , Bird Diseases/epidemiology , Ecosystem , Trematode Infections/parasitology , Trematode Infections/veterinary , Trematode Infections/epidemiology , Temperature , Cercaria/physiology , Wetlands
4.
J Vet Diagn Invest ; 36(4): 538-542, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38520054

ABSTRACT

Canine schistosomiasis caused by Heterobilharzia americana can lead to severe morbidity and eventual mortality, in part due to the deposition of fluke ova in the liver and gastrointestinal tract, which promotes an influx of peri-ova inflammatory cells. Although fluke eggs can be identified in H&E-stained histologic sections, cases exist in which only fragments of the ova persist, or the egg is obscured by inflammatory infiltrates, which can confound definitive histologic diagnosis. Unfortunately, antibodies specific to Heterobilharzia are not commercially available for immunohistochemical labeling. Therefore, we aimed to use an RNA in situ hybridization strategy to fluorescently label Heterobilharzia ova. Using the H. americana 18S rRNA sequence, we developed an RNA probe and validated its performance on archival formalin-fixed, paraffin-embedded canine tissue. A positive signal was observed for all identifiable ova, fragmented and whole. Use of this methodology could aid understanding of the pathogenesis of H. americana infection in dogs. This technique augments standard diagnostic methodology, enabling spatial colocalization of fluke ova and inflammatory infiltrates when using fluorescent techniques.


Subject(s)
Dog Diseases , Liver , Schistosomatidae , Trematode Infections , Animals , Dogs , Dog Diseases/parasitology , Dog Diseases/diagnosis , Schistosomatidae/isolation & purification , Trematode Infections/veterinary , Trematode Infections/diagnosis , Trematode Infections/parasitology , Liver/parasitology , Liver/pathology , In Situ Hybridization/veterinary , RNA, Ribosomal, 18S/genetics , Ovum , RNA, Helminth/analysis
5.
J Helminthol ; 95: e22, 2021 Apr 20.
Article in English | MEDLINE | ID: mdl-33875029

ABSTRACT

Due to the increased prevalence of human infections with bird schistosome larvae (cercarial dermatitis) associated with bathing in Danish lakes, a nationwide survey of infected intermediate host snails was conducted in 2018-2020. Pulmonate snails (10,225 specimens) were collected from 39 freshwater lakes (in the four major geographic regions in Denmark) and subjected to shedding. Released schistosome cercariae were isolated and identified by polymerase chain reaction and sequencing whereby Trichobilharzia regenti, Trichobilharzia franki, Trichobilharzia szidati and Trichobilharzia anseri were recorded. Infections were primarily determined by biotic factors such as the presence of final host birds and intermediate host snails and water temperature was noted as an important abiotic parameter associated with the infection. No clear connection with other abiotic factors (conductivity, alkalinity, pH, nitrogen, phosphorous) was seen. The widespread occurrence of infected snails, when compared to previous investigations, suggests that climate changes at northern latitudes could be responsible for the increased risk of contracting cercarial dermatitis.


Subject(s)
Birds/parasitology , Schistosomatidae , Schistosomiasis , Animals , Bird Diseases/parasitology , Denmark , Lakes , Schistosomatidae/isolation & purification , Schistosomiasis/veterinary , Snails/parasitology
6.
Parasitol Res ; 120(1): 133-143, 2021 Jan.
Article in English | MEDLINE | ID: mdl-33164155

ABSTRACT

In this study, two potentially new species of turtle blood flukes (TBFs) (Digenea: Spirorchiidae) have been recorded from South Brazil. The spirorchiid parasites infect the vascular system of turtles, thereby compromising their health. The life cycle of these parasites is not well studied. The larval stage of cercaria is found in intermediate gastropod hosts, with some species presenting similar morphological characteristics, which can result in misinterpretations when using only morphological taxonomy for species identification. In this study, we recorded a single morphotype belonging to the family Spirorchiidae in Biomphalaria occidentalis in an urban aquatic ecosystem in Brazil. However, molecular data (28S rDNA and cytochrome oxidase subunit I) confirmed the presence of two species of Spirorchiidae in the sampled environment; both phylogenetically close to genera previously studied in freshwater turtles from the Peruvian Amazon. In this study, species characterization was possible because of molecular tools. We recommend using more than one molecular marker in future studies focusing on TBFs, which need attention about their evolutionary history and ecology to understand their distribution in South America.


Subject(s)
Biomphalaria/parasitology , Fresh Water/parasitology , Schistosomatidae/isolation & purification , Trematode Infections/veterinary , Turtles/parasitology , Animals , Brazil , Cercaria/classification , Cercaria/genetics , Cercaria/growth & development , Cercaria/isolation & purification , DNA, Helminth/genetics , Ecosystem , Phylogeny , Schistosomatidae/classification , Schistosomatidae/genetics , Schistosomatidae/growth & development , Trematode Infections/parasitology , Trematode Infections/transmission
7.
Parasitol Res ; 119(12): 4135-4141, 2020 Dec.
Article in English | MEDLINE | ID: mdl-33150513

ABSTRACT

Avian schistosomes are of medical and veterinary importance as they are responsible for the annually occurring cercarial dermatitis outbreaks. For Austria, so far, only Trichobilharzia szidati Neuhaus 1952 was confirmed on species level as causative agent of cercarial dermatitis. Here we present the first record of Trichobilharzia franki Müller & Kimmig 1994 in Austria. The species was detected during a survey of digenean trematodes in Upper Austrian water bodies. Furthermore, we provide DNA barcodes of T. franki as well as measurements of several parasite individuals to indicate the intraspecific diversity. We also recommend the usage of an alternative primer pair, since the "standard COI primer pair" previously used for Schistosomatidae amplified an aberrant fragment in the sequence of T. franki. Overall, our study shows how limited our knowledge about occurrence and distribution of avian schistosomes in Austria is and how important it is to acquire such a knowledge to estimate ecological and epidemiological risks in the future.


Subject(s)
Dermatitis/parasitology , Schistosomatidae/isolation & purification , Schistosomiasis/veterinary , Skin Diseases, Parasitic/parasitology , Snails/parasitology , Animals , Auricularia , Austria , Bird Diseases/parasitology , Birds/parasitology , Disease Outbreaks , Schistosomatidae/genetics , Schistosomiasis/parasitology , Skin Diseases, Parasitic/veterinary
8.
PLoS Negl Trop Dis ; 14(6): e0008388, 2020 06.
Article in English | MEDLINE | ID: mdl-32569278

ABSTRACT

BACKGROUND: The World Health Organization recommends that schistosomiasis be treated through Mass Drug Administration (MDA). In line with this recommendation, Zimbabwe commenced a national helminth control program in 2012 targeting schoolchildren throughout the country for 6 years. This study, part of a larger investigation of the impact of helminth treatment on the overall health of the children, determined the effect of annual praziquantel treatment on schistosome infection and morbidity in a cohort of children during Zimbabwe's 6-year national helminth control program. METHODOLOGY/PRINCIPAL FINDINGS: A school-based longitudinal study was carried out in 35 sentinel sites across Zimbabwe from September 2012 to November 2017. The sentinel sites were selected following a countrywide survey conducted in 280 primary schools. Schistosoma haematobium was diagnosed using the urine filtration technique. Schistosoma mansoni was diagnosed using both the Kato-Katz and formol-ether concentration techniques. S. haematobium morbidity was determined through detection of macro and microhaematuria. A cohort of children aged 6-15 years old was surveyed annually before MDA and 6 weeks post treatment. Maximum treatment coverage reached 90% over the 6 rounds of MDA. At baseline S. haematobium infection prevalence and intensity were 31.7% (95% CI = 31.1-32.2) and 28.75 eggs/10ml urine (SEM = 0.81) respectively, while S. mansoni prevalence and intensity were 4.6% (95% CI = 4.4-4.8) and 0.28 eggs/25mg (SEM = 0.02). Prior to the 6th round of MDA, S. haematobium infection prevalence had reduced to 1.56% (p<0.001) and infection intensity to 0.07 (SEM 0.02). Six weeks later after the 6th MDA, both were 0. Similarly the prevalence of S. haematobium morbidity as indicated by haematuria also fell significantly from 32.3% (95% CI = 29.9-34.6) to 0% (p< 0.0001) prior to the final MDA. For S.mansoni, both prevalence and intensity had decreased to 0 prior to the 6th MDA. After 6 rounds of annual MDA, prevalence and intensity of both schistosome species decreased significantly to 0% (p< 0.0001). CONCLUSION: Zimbabwe's helminth control program significantly reduced schistosome infection intensity and prevalence and urogenital schistosomiasis morbidity prevalence in a cohort of school-aged children, moving the schistosome prevalence in the children from moderate to low by WHO classification. These findings will inform the design of the country's next stage interventions for helminth control and eventual elimination.


Subject(s)
Helminthiasis/drug therapy , Mass Drug Administration/methods , Praziquantel/therapeutic use , Trematode Infections/drug therapy , Adolescent , Animals , Child , Cohort Studies , Cross-Sectional Studies , Female , Helminthiasis/diagnosis , Helminthiasis/epidemiology , Helminths/isolation & purification , Hematuria , Humans , Longitudinal Studies , Male , Morbidity , Prevalence , Schistosoma haematobium , Schistosoma mansoni , Schistosomatidae/isolation & purification , Schistosomiasis haematobia/drug therapy , Schools , Surveys and Questionnaires , Trematode Infections/diagnosis , Trematode Infections/epidemiology , Zimbabwe/epidemiology
9.
Parasitol Res ; 119(8): 2531-2537, 2020 Aug.
Article in English | MEDLINE | ID: mdl-32562067

ABSTRACT

Human cercarial dermatitis is a parasitic disease that causes an allergic reaction in the skin (swimmer's itch) as a consequence of contact with cercariae of bird schistosomes present in water, mainly of the genus Trichobilharzia Skrjabin et Zakarow, 1920. The main objective of the study was to confirm the presence of the zoonotic disease agent following reports of human infections in recreational water in Slovakia. We identified two species of freshwater snails at Kosice Lake, Radix auricularia (Linnaeus, 1758) and Physa acuta (Draparnaud, 1805). Trematode infections were observed only in R. auricularia. Of the 62 snails collected, 11 (17.7%) were infected with 5 different species of larval stages of trematodes. The blood fluke Trichobilharzia franki was found in 2 (3.2%) of the examined snails. The present record provides the first evidence that T. franki from the pulmonate snail R. auricularia represents a source of human cercarial dermatitis in recreational water in Slovakia. Our finding complements the easternmost records of both swimmer's itch and the confirmed occurrence of a bird schistosome in a waterbody in Europe. The present work suggests that the health risks associated with trichobilharziasis need to be further studied by detailed monitoring of the occurrence of the major causative agent of human cercarial dermatitis, T. franki.


Subject(s)
Dermatitis/parasitology , Lakes/parasitology , Schistosomatidae/isolation & purification , Schistosomiasis/transmission , Skin Diseases, Parasitic/parasitology , Trematode Infections/parasitology , Zoonoses/parasitology , Animals , Dermatitis/epidemiology , Disease Outbreaks , Humans , Schistosomatidae/classification , Schistosomatidae/genetics , Schistosomiasis/epidemiology , Schistosomiasis/parasitology , Skin Diseases, Parasitic/transmission , Slovakia/epidemiology , Snails/parasitology , Trematode Infections/epidemiology , Trematode Infections/transmission , Zoonoses/epidemiology , Zoonoses/transmission
10.
Parasitol Res ; 119(3): 1167-1172, 2020 Mar.
Article in English | MEDLINE | ID: mdl-31863180

ABSTRACT

Precise identification of avian schistosomes in the genus Trichobilharzia at the species level is difficult and requires both traditional morphological and molecular techniques. To obtain satisfactory results by traditional methods, the characteristics of the intact adults or large fragments of male and females are necessary. The present study aimed to introduce a more efficient method for collecting eggs and both fragments and intact worms for morphological identification of visceral Trichobilharzia spp. Thirty-eight domestic ducks (twenty-eight fresh and ten frozen) were studied. For fresh samples, warm saline (40-45 °C) was injected into the portal vein or liver tissue, followed by slicing of the liver to small pieces in a large Petri dish. All materials were then transferred into the laboratory sieves arranged from the largest to the smallest mesh size and while crushed with the hand, washed, and filtered using a trigger water sprayer. The collected materials were studied under a stereomicroscope for parasite eggs, fragments, and full-length worms. Out of 28 freshly killed ducks, 19 (67.9%) and of 10 frozen ducks 6 (60%) were positive for visceral Trichobilharzia spp. The full-length worms and large fragments of male worms were mostly recovered with the mesh no. 150 (diameter of 106 µm) and small fragments, especially of females, and eggs with the mesh no. 270 (diameter of 53 µm). In addition to large numbers of fragments, 15 full-length adults were obtained from fresh and 2 from frozen ducks. The number of collected full-length adults was related to the worm burden. Since morphological description of different species of the genus Trichobilharzia is primarily based on the availability of adult worms, the application of methods that provide a higher number of intact males and females will result in better characterization of the species and deposition of appropriate voucher specimens. These results show the present method as a suitable tool for the collection of quality adults of visceral Trichobilharzia spp. in ducks.


Subject(s)
Bird Diseases/parasitology , Liver/parasitology , Schistosomatidae/isolation & purification , Trematode Infections/veterinary , Animals , Ducks/parasitology , Female , Male , Schistosomatidae/classification , Snails/parasitology , Trematode Infections/parasitology
11.
Parasitol Res ; 118(10): 2801-2810, 2019 Oct.
Article in English | MEDLINE | ID: mdl-31468127

ABSTRACT

This paper includes the first transmission electron microscopical (TEM) study of the tegument of a member of the basal digenean family Aporocotylidae. Scanning electron microscopical investigations of the fish blood fluke Aporocotyle simplex show that each boss on the lateral body surface bears 12-15 simple, uniform spines which extend from 0.5-2.7 µm above the surface of the boss. TEM observations revealed that these spines reach deep beneath the distal cytoplasm of the tegument for much of their length (9-12 µm) and are surrounded by a complex of diagonal muscles in each boss. This is the first record of any digenean with so-called 'sunken' spines. The results suggest that aporocotylid spines arise from within the sarcoplasm of the boss diagonal muscles. The sunken cell bodies (perikarya) of the tegument are connected to the distal cytoplasm via ducts (specialised processes lined by microtubules); this in contrast to other digeneans studied, where they are connected via non-specialised cytoplasmic processes. Within the distal cytoplasm, the tegumental ducts of A. simplex are surrounded by invaginations of the basal membrane and release their cytoplasmic inclusions into the distal cytoplasm. These apparently unique morphological features of the tegument, especially the deep origin of the spines, may represent useful characteristics for understanding aporocotylid relationships, especially in view of the known variation in the spine patterns of aporocotylids.


Subject(s)
Fish Diseases/parasitology , Schistosomatidae/ultrastructure , Trematode Infections/veterinary , Animals , Flatfishes/parasitology , Microscopy, Electron, Scanning , Microscopy, Electron, Transmission , Rhodophyta , Schistosomatidae/classification , Schistosomatidae/growth & development , Schistosomatidae/isolation & purification , Trematode Infections/parasitology
12.
Zoonoses Public Health ; 66(4): 377-381, 2019 06.
Article in English | MEDLINE | ID: mdl-30784198

ABSTRACT

Swimmer's itch is caused by the penetration of free-swimming larvae of trematodes of the family Schistosomatidae in human skin. It is usually reported in people engaged in recreational water activities in freshwater bodies and in most of cases, it is provoked by bird schistosomes of the genus Trichobilharzia. In the summer 2017, many cases of dermatitis were recorded in people bathing in the waters of the Albano Lake (Rome, Italy) and a parasitological investigation was carried out in order to ascertain the causative agent of these cases. Snails of the family Lymnaeidae, natural intermediate hosts of bird schistosomes, were collected from lake shallow waters to detect the presence of trematodes of the genus Trichobilharzia. Pools of maximum 10 snails were placed in Petri dishes, and cercarial emergence was stimulated exposing snails to strong artificial light intensity at 25°C. Three hundred and thirty-seven snails were collected and screened for the shedding of cercariae. Furcocercariae of the family Schistosomatidae, with a morphology overlapping that of the genus Trichobilharzia, were detected in seven Petri dishes. Assuming that in each positive Petri dish just one snail was shedding furcocercariae, the minimum infectious rate was 2.1%. Molecular analysis of furcocercariae allowed ascribing them to the species Trichobilharzia franki. Snails of the species Radix auricularia were identified as intermediate hosts of the parasite. This is the second record of T. franki causing cercarial dermatitis in Central Italy, the third in Italy. The 2017 was in Italy exceptionally warm and dry. Trematodes are sensitive to changes in temperature, being cercarial production and emission rates temperature dependent. Small increases in water temperature would speed up parasite development and transmission, leading to a manifold increase in cercarial emergence. Moreover, high temperatures raise chances to acquire the infection, due to increased time spent in water by people.


Subject(s)
Birds/parasitology , Dermatitis/epidemiology , Disease Outbreaks , Lakes/parasitology , Schistosomatidae/isolation & purification , Animals , Dermatitis/parasitology , Humans , Italy/epidemiology , Larva/physiology , Schistosomatidae/genetics , Skin/parasitology , Snails/parasitology , Swimming
13.
Parasitol Res ; 117(12): 3821-3833, 2018 Dec.
Article in English | MEDLINE | ID: mdl-30343420

ABSTRACT

This study is part of an effort to document the diversity of avian schistosomes in ducks and snails in Northern Iran, a major flyway (Black Sea/Mediterranean) for migratory birds and where cercarial dermatitis (CD) is prevalent in rice growing areas. CD is an allergic skin reaction from schistosome trematodes that emerge from aquatic snails. Most CD cases are reported from recreational swimmers or aquaculture farmers. Much of the work on the epidemiology of CD has focused in recreational waters in the Americas and Europe, with fewer studies in aquaculture, particularly in Iran. The artificial environment at aquaculture sites support dense populations of snails that are hosts to schistosomes, as well as domestic ducks. Thus, are domestic ducks reservoir hosts of species of Trichobilharzia, one of the main etiological agents of CD in Northern Iran? This study focused on a survey of domestic ducks for the presence of the nasal schistosome, T. regenti, that has been reported widely in Europe. Trichobilharzia regenti were found in domestic ducks in the Guilan Province of Iran based on morphological and molecular analyses. The presence of this species in Northern Iran indicates that the domestic duck can serve as a reservoir host for this species and that one of the local snail species is likely the intermediate host. The continued study and surveillance of this species is important because it is a neuropathic schistosome that can use a diversity of bird definitive hosts and Radix snails that are widespread across Eurasia.


Subject(s)
Bird Diseases/epidemiology , Dermatitis/epidemiology , Ducks/parasitology , Nose/parasitology , Schistosomatidae/classification , Schistosomiasis/epidemiology , Schistosomiasis/veterinary , Animals , Bird Diseases/parasitology , Birds/parasitology , Black Sea , Dermatitis/parasitology , Dermatitis/veterinary , Disease Reservoirs/parasitology , Europe , Genetic Variation/genetics , Iran/epidemiology , Mediterranean Sea , Schistosomatidae/genetics , Schistosomatidae/isolation & purification , Schistosomiasis/parasitology , Snails/parasitology
14.
Environ Health ; 17(1): 73, 2018 10 25.
Article in English | MEDLINE | ID: mdl-30359259

ABSTRACT

BACKGROUND: Cercarial dermatitis, colloquially "swimmer's itch", is a rash contracted in natural bodies of water, when people are exposed to skin-penetrating, larval flatworm parasites of the family Schistosomatidae, that emerge from aquatic snails. Swimmer's itch is a globally-distributed, allergic condition, of which we know very little regarding local dynamics of transmission. This study aims to gather relevant information on swimmer's itch in Canada, from multiple perspectives, including the human experience, parasite and host presence and distributions, and insight from historical perspectives. METHODS: Herein we utilize a mixed-methods approach towards examining the environmental health issue of swimmer's itch in Canadian lakes from a nation-wide viewpoint, with an example from Alberta. We examine the human perspective of having contracted swimmer's itch through a self-reporting surveillance system implemented over a 5-year period. We also conducted a 3-year species survey of parasites and intermediate snail hosts within lakes in central Alberta and compiled this data with snail and vertebrate (definitive) host survey data from across Alberta to examine potential for future spread. We compare the results from our surveys to a historical review of the literature to examine the extent of swimmer's itch across Canada and identify where future efforts should be focused. RESULTS: Over 3800 cases of swimmer's itch were captured across Canada by the self-reporting surveillance system. Swimmer's itch cases were reported from every province except Prince Edward Island. Species surveys in Alberta revealed 7 new parasite and host records, with potential for swimmer's itch to occur throughout most of the province based on host distributions. A review and comparison to the literature has highlighted several knowledge gaps surrounding schistosome species, host species and their distributions and contributions towards swimmer's itch. CONCLUSIONS: Swimmer's itch is a greater environmental health hazard across Canada than previous literature would have alluded. This study provides proof-of-concept for the utility of a self-reporting surveillance system for swimmer's itch in Canada. Recommendations are made towards implementing a systems-thinking approach that incorporates citizen-scientists for future research, management, and policy surrounding swimmer's itch.


Subject(s)
Pruritus/epidemiology , Schistosomatidae , Trematode Infections/epidemiology , Animals , Canada/epidemiology , Humans , Lakes , Schistosomatidae/genetics , Schistosomatidae/isolation & purification , Snails/parasitology , Surveys and Questionnaires , Swimming
15.
Parasitol Res ; 117(12): 3695-3704, 2018 Dec.
Article in English | MEDLINE | ID: mdl-30215139

ABSTRACT

Trichobilharzia spp. have been identified as a causative agent of swimmers' itch, a skin disease provoked by contact with these digenean trematodes in water. These parasites have developed a number of strategies to invade vertebrates. Since we have little understanding of the behavior of these parasites inside the human body, the monitoring of their invasion in snail host populations is highly recommended. In our research, lymnaeid snails were collected from several Polish lakes for two vegetation seasons. The prevalence of bird schistosomes in snail host populations was significantly lower than that of other digenean species. We were the first to detect the presence of the snails emitted Trichobilharzia regenti (potentially the most dangerous nasal schistosome) in Poland. In addition, by sequencing partial rDNA genes, we confirmed the presence of the snails positive with Trichobilharzia szidati in Polish water bodies, showing that swimmer's itch is more frequent during summer months and that large snails are more often infected with bird schistosomes than small ones.


Subject(s)
Bird Diseases/parasitology , Dermatitis/epidemiology , Dermatitis/parasitology , Schistosomatidae/isolation & purification , Schistosomiasis/epidemiology , Snails/parasitology , Animals , Birds/parasitology , Humans , Lakes/parasitology , Poland/epidemiology , Schistosomatidae/classification , Schistosomiasis/parasitology , Swimming , Water/parasitology
16.
Ecohealth ; 15(4): 827-839, 2018 12.
Article in English | MEDLINE | ID: mdl-30120669

ABSTRACT

Swimmer's itch (cercarial dermatitis) is a nuisance encountered by bathers and recreational water users worldwide. The condition is caused by the penetration of larval digenean trematodes (cercariae) of the family Schistosomatidae, into the skin, following their release into freshwater from pulmonate snails that serve as the intermediate hosts for these parasites. This study utilizes qPCR-based cercariometry to monitor and quantify cercariae from water samples collected at 5 lakes in northern Michigan. The resolution provided by qPCR facilitated assessment of the environmental and biological drivers of swimmer's itch-causing cercariae concentrations, allowing us to demonstrate that cercarial abundance is greatest at the top of the water column, in locations with prevailing on- and alongshore winds.


Subject(s)
Cercaria/genetics , Cercaria/isolation & purification , Dermatitis/parasitology , Lakes/parasitology , Real-Time Polymerase Chain Reaction , Schistosomatidae/genetics , Schistosomatidae/isolation & purification , Animals , Bird Diseases/parasitology , Environmental Exposure , Environmental Monitoring/methods , Humans , Michigan , Trematode Infections/parasitology
17.
Parasitol Res ; 117(6): 1709-1716, 2018 Jun.
Article in English | MEDLINE | ID: mdl-29696396

ABSTRACT

The present paper reports the occurrence of the seventh species in the genus Amphiorchis (Digenea: Spirorchiidae) collected from the heart of a green turtle found in Florida, USA. A taxonomic key to the species of Amphiorchis and a literature review for the genus are presented.


Subject(s)
Heart/parasitology , Schistosomatidae/isolation & purification , Trematode Infections/veterinary , Turtles/parasitology , Animals , Florida , Schistosomatidae/anatomy & histology , Schistosomatidae/classification , Turtles/classification
18.
J Parasitol ; 104(3): 322-328, 2018 06.
Article in English | MEDLINE | ID: mdl-29424659

ABSTRACT

The Magellanic Penguin ( Spheniscus magellanicus) is native to Argentina, Chile, and the Falkland/Malvinas Islands, and is a regular winter migrant in Uruguayan and Brazilian coastal waters. The species is known to be susceptible to a variety of gastrointestinal nematodes, cestodes, trematodes, and acanthocephalans, as well as renal trematodes and pulmonary nematodes. Schistosomes (Platyhelminthes, Trematoda, Schistosomatidae) and microfilariae (Nematoda, Secernentea, Onchocercidae) were histologically identified in Magellanic Penguins ( Spheniscus magellanicus) that died while under care at rehabilitation centers in southern Brazil. Phylogenetic analysis of the COI gene, ITS-1 region, 5.8S rRNA gene, ITS-2 region, and 28S rRNA gene sequences of the schistosome revealed that it is closely related to, but distinct from, a schistosome reported from the African Penguin ( Spheniscus demersus). The schistosomes from Magellanic and African Penguins were grouped with Gigantobilharzia huronensis, Gigantobilharzia melanoidis, and Dendritobilharzia pulvurenta; however, the lack of a clearly monophyletic origin precludes determining their genus. The incidental discovery of novel parasites during a study that did not specifically aim to investigate the occurrence of helminths underscores the value of histopathological examination as an exploratory diagnostic approach.


Subject(s)
Bird Diseases/parasitology , Filariasis/veterinary , Microfilariae/isolation & purification , Schistosomatidae/isolation & purification , Spheniscidae/parasitology , Trematode Infections/veterinary , Animals , Bayes Theorem , Brazil , Filariasis/parasitology , Microfilariae/classification , Microfilariae/genetics , Phylogeny , Schistosomatidae/classification , Schistosomatidae/genetics , Trematode Infections/parasitology
19.
Vet Parasitol Reg Stud Reports ; 13: 124-129, 2018 08.
Article in English | MEDLINE | ID: mdl-31014859

ABSTRACT

The Blue-winged Teal (Spatula discors) is known for engaging in long-distance North-South migrations and back in the Americas with Cuba being an important wintering ground. Teals serve as hosts for a wide range of parasite species that can be "discharged" at each end of the migration route. Here, we explore for the first time the diversity of trematodes that the Blue-winged Teal may be introducing to -or exporting from- Cuba. We found 15 digenean parasites in 65 sampled teals of which 13 represent first reports for Cuba with one species (Echinostoma revolutum) of zoonotic importance. Overall prevalence was very high (96.92%) whereas Trichobilharzia spp. resulted the most ubiquitous parasite. Highest intensities were recorded for Australapatemon sp. (arriving teals) and Levinseniella amnicolae (departing teals). Altogether, departing teals harboured the highest number of trematode species and abundance. The short development and lifespan, inside migratory birds, of adult stages of trematodes like Trichobilharzia sp., Cotylurus flabelliformis and Microphallus pygmaeus strongly suggest that the occurrence of these trematodes in the departing teals could be related to their long establishment in Cuban ecosystems. In a global scenario where parasitology, particularly wildlife parasitology, is mostly overlooked, there should be an increasing need of gathering information and increasing surveillance of wildlife diseases that might eventually become important for the health of ecosystems and of domestic animals and humans. The present study constitutes the first major attempt to explore trematode infection from S. discors in Cuba under the view of parasite flow via bird migration.


Subject(s)
Animal Migration , Bird Diseases/parasitology , Ducks/parasitology , Schistosomatidae/isolation & purification , Trematode Infections/veterinary , Animals , Animals, Wild/parasitology , Cuba , Female , Male , Prevalence , Seasons , Trematode Infections/epidemiology
20.
Parasitol Res ; 116(3): 865-870, 2017 Mar.
Article in English | MEDLINE | ID: mdl-28012027

ABSTRACT

Nasal bird schistosomes can cause bilharziosis in birds and have the potential to cause swimmer's itch in humans. We determined the prevalence of bird schistosomes in 106 mallards (Anas plathyrhynchos) from 11 water sources in Germany from 2014. Dissections were performed focusing on parasitic infections of the neural system. Infections with Trichobilharzia regenti (Horák et al. 1998) were found in 21% of the birds (n = 22), whereas Bilharziella polonica (Kowalewski 1895) were found between the brain membranes (meninges) and the brain, in the spinal cord or in the intestine of 12% of the mallards (n = 13). No significant influence of sex, age, and body condition between infected and non-infected animals was observed. Our study provides the first description of B. polonica from the neural system of birds and provides an epidemiological understanding of a parasite of human health concern.


Subject(s)
Bird Diseases/parasitology , Ducks/parasitology , Nervous System/parasitology , Schistosoma/isolation & purification , Schistosomatidae/isolation & purification , Trematode Infections/veterinary , Animals , Animals, Wild/parasitology , Germany , Humans , Schistosoma/genetics , Schistosoma/physiology , Schistosomatidae/genetics , Schistosomatidae/physiology , Trematode Infections/parasitology
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