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1.
Front Immunol ; 15: 1370255, 2024.
Article in English | MEDLINE | ID: mdl-38803499

ABSTRACT

Theileria equi (T. equi) is an apicomplexan parasite that causes severe hemolytic anemia in equids. Presently, there is inadequate knowledge of the immune responses induced by T. equi in equid hosts impeding understanding of the host parasite relationship and development of potent vaccines for control of T. equi infections. The objective of this study was to evaluate the host-parasite dynamics between T. equi merozoites and infected horses by assessing cytokine expression during primary and secondary parasite exposure, and to determine whether the pattern of expression correlated with clinical indicators of disease. Our findings showed that the expression of pro-inflammatory cytokines was very low and inconsistent during both primary and secondary infection. There was also no correlation between the symptoms observed during primary infection and expression of the cytokines. This suggests that the symptoms might have occurred primarily due to hemolysis and likely not the undesirable effects of pro-inflammatory responses. However, IL-10 and TGF-ß1 were highly expressed in both phases of infection, and their expression was linked to antibody production but not moderation of pro-inflammatory cytokine responses.


Subject(s)
Horse Diseases , Interleukin-10 , Theileria , Theileriasis , Transforming Growth Factor beta1 , Animals , Horses , Theileriasis/immunology , Theileriasis/parasitology , Interleukin-10/metabolism , Interleukin-10/immunology , Theileria/immunology , Transforming Growth Factor beta1/metabolism , Horse Diseases/immunology , Horse Diseases/parasitology , Merozoites/immunology , Antibodies, Protozoan/immunology , Antibody Formation/immunology , Cytokines/metabolism , Host-Parasite Interactions/immunology
2.
Vet Parasitol Reg Stud Reports ; 51: 101033, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38772649

ABSTRACT

The Garrano is a semi-feral horse breed native to several mountains in the northern Iberian Peninsula. Despite being endangered, this unique breed of pony has managed to survive in the wild and continues to be selectively bred, highlighting their remarkable resilience and adaptability to harsh environments. Wildlife plays a critical role in the survival of tick vectors in their natural habitats and the transfer of tick-borne pathogens, as they can serve as reservoir hosts for many agents and amplifiers for these vectors. The semi-feral lifestyle of the Garrano horses makes them particularly vulnerable to exposure to numerous tick species throughout the year. Therefore, the aim of this study was to investigate the occurrence of Anaplasma, Ehrlichia, Babesia, Theileria, and spotted fever rickettsiae in the Garrano horse ticks to obtain a knowledge of circulating agents in this host population. The collected ticks (n = 455) were identified as Rhipicephalus bursa. DNA specimens were organized in pools of 5 ticks, for molecular screening. Pools PCR results confirmed the presence of Candidatus Rickettsia barbariae (n = 12 for the ompB gene, n = 11 for the ompA gene and n = 6 for the gltA gene), Babesia bigemina (n = 1), Babesia caballi (n = 3), Theileria equi (n = 15) and Theileria haneyi (n = 1).These results confirm the circulation of an emerging rickettsial spotted fever group member, Candidatus R. barbariae, in R. bursa ticks. Our findings demonstrated that Candidatus R. barbariae co-circulates with B. bigemina and T. equi, which are vectored by R. bursa. We are reporting for the first time, the detection of T. haneyi among R. bursa ticks feeding in the Garrano horses in Portugal. Surveillance studies for tick-borne infections are essential to provide information that can facilitate the implementation of preventive and control strategies.


Subject(s)
Babesia , Horse Diseases , Rhipicephalus , Theileria , Animals , Horses/parasitology , Portugal/epidemiology , Rhipicephalus/microbiology , Rhipicephalus/parasitology , Horse Diseases/parasitology , Horse Diseases/epidemiology , Theileria/isolation & purification , Theileria/genetics , Babesia/isolation & purification , Babesia/genetics , Tick-Borne Diseases/veterinary , Tick-Borne Diseases/parasitology , Tick-Borne Diseases/microbiology , Tick-Borne Diseases/epidemiology , Female , Anaplasma/isolation & purification , Anaplasma/genetics , Theileriasis/epidemiology , Theileriasis/parasitology , Rickettsia/isolation & purification , Rickettsia/genetics , Tick Infestations/veterinary , Tick Infestations/parasitology , Tick Infestations/epidemiology , Ehrlichia/isolation & purification , Ehrlichia/genetics , Babesiosis/epidemiology , Babesiosis/parasitology
3.
Res Vet Sci ; 173: 105272, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38718543

ABSTRACT

Understanding gastrointestinal parasite distribution is crucial for effective control programs in horses. This study reports the prevalence of helminth infections in horses and selected risk factors (i.e., breed, age, climate, season) by analyzing 19,276 fecal samples from the Laboratory of Veterinary Clinical Parasitology, in Curitiba, Southern Brazil. The analyses were carried out from 2008 to 2019, coming from 153 stud farms located in 60 municipalities of nine Brazilian states. The parasite prevalence was 73.3%, with 72.1% present in the adult population and 80.6% in young horses. Strongyles were present in 100% horse farms. Strongyles had a prevalence of 72.1% with a mean FEC of 453.53 (+/- 717.6). Parascaris spp. had a prevalence of 5.8% and a FEC of 17.11 (+/- 149.2). The tropical wet/monsoon climate (Am) showed the lowest FEC for strongyles and Parascaris spp. when compared to the other climates. In the logistic regression analysis, young horses exhibited 4.6 times higher odds ratio (OR) (3.9-5.5) of Parascaris spp. and 1.2 (1.1-1.4) times higher OR of strongyles egg shedding when compared to adults (P < 0.001). Summer presented a higher risk for Parascaris spp. and Strongyles eggs when compared to the other seasons (P < 0.001). Mangalarga Marchador, Criollo, and Crossbred breeds were identified with higher OR of Parascaris spp. egg shedding than Thoroughbred. The extensive prevalence of strongyles across ages, seasons, breeds, and climates alerts for the risk of clinical manifestations in equines raised on pastures designing optimal health management and parasite control strategies worldwide.


Subject(s)
Gastrointestinal Diseases , Helminthiasis, Animal , Horse Diseases , Age Factors , Brazil/epidemiology , Climate , Coinfection/epidemiology , Coinfection/parasitology , Coinfection/veterinary , Feces/parasitology , Gastrointestinal Diseases/diagnosis , Gastrointestinal Diseases/epidemiology , Gastrointestinal Diseases/parasitology , Gastrointestinal Diseases/veterinary , Helminthiasis, Animal/diagnosis , Helminthiasis, Animal/epidemiology , Horse Diseases/diagnosis , Horse Diseases/epidemiology , Horse Diseases/parasitology , Parasite Egg Count/veterinary , Prevalence , Retrospective Studies , Risk Factors , Seasons , Animals
4.
Vet Parasitol Reg Stud Reports ; 50: 101019, 2024 05.
Article in English | MEDLINE | ID: mdl-38644042

ABSTRACT

The aims of the present study were to identify strongyles in the feces of Thoroughbred horses based on larval morphology; to detect Strongylus vulgaris using molecular diagnosis and compare results to those of feces culture; and to determine the association between the presence of S. vulgaris with corresponding animal information (age range, gender, and anthelmintic use). Feces of horses kept in six Training Centers in Rio de Janeiro State, that showed the presence of ≥500 eggs per gram of feces (EPG) were subjected to strongyle identification. Of the 520 fecal samples collected, 35 had an EPG ≥ 500. After fecal culture for L3 larvae identification, DNA was extracted, subjected to PCR to amplify the ITS2 region DNA fragment of S. vulgaris, and sequenced. A total of 3500 larvae were analyzed. Most were classified as small strong (99.7%), with an emphasis on the type A subfamily of Cyathostominae. Forms of S. vulgaris only corresponded to 0.2%. In all, 25 samples showed amplified S. vulgaris DNA products and 11 showed nucleotide sequences with high sequence identity. Fecal culture and PCR results showed poor agreement (kappa = 0.105) for S. vulgaris diagnosis. Age, gender, anthelmintic use, and anthelmintic administration interval were not statistically significant. The present study showed the presence of S. vulgaris in the feces of horses kept in Rio de Janeiro Training Centers, mainly seen via PCR, which has emerged as the most effective tool for diagnosis. This study made it possible to identify strongyles that infect horses in the region, emphasizing upon the necessity for constant monitoring of the animals.


Subject(s)
Feces , Larva , Strongyle Infections, Equine , Strongylus , Animals , Horses , Feces/parasitology , Brazil , Strongylus/isolation & purification , Male , Strongyle Infections, Equine/diagnosis , Strongyle Infections, Equine/parasitology , Female , Horse Diseases/diagnosis , Horse Diseases/parasitology , Parasite Egg Count/veterinary , Polymerase Chain Reaction/veterinary , DNA, Helminth/analysis , Anthelmintics/therapeutic use
5.
Res Vet Sci ; 173: 105277, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38678846

ABSTRACT

Equine piroplasmosis caused by Theileria equi is a febrile, tick-borne disease of equids. However, there is limited literature about the genotyping of T. equi in India. Blood samples were collected from 202 horses and subjected to microscopy and PCR to detect T. equi. Initially, a universal screening primer pair targeting 18S ribosomal RNA genes common for Babesia caballi and T. equi was employed to amplify the DNA of both parasites. Thereafter additional primers were employed for species-specific detection resulting in amplification of approximately 435 bp specific for T. equi. T.equi was detected in 9.9% and 20.79% of horses screened by microscopy and PCR, respectively. The representative samples confirmed positive by PCR were sequenced, submitted to NCBI (OR651254, OR687254, OR685656, OR650830, OR650834), and used for genotype characterization and phylogenetic analysis. Employing Genetool and MEGA X software, the T. equi Indian isolates and across the globe were compared, and the results demonstrated 99.05-100% and 95.86-100% homologies, respectively. All the T. equi Indian isolates belonged to genotype A. Phylogeny based on the EMA-1 gene of five isolates (OR731831, OR731833, OR731829, OR731830, OR731832) were also characterized by sequencing and support the previous findings. Genotypes C and D, as well as genotypes B and E, exhibited lower levels of evolutionary divergence compared to other genotypes. The EMA-1 gene exhibited limited diversity and might not be the most suitable target for assessing variability within T. equi populations. The findings also reveal a significant association (p < 0.01) between T. equi infection and the presence of ticks.


Subject(s)
Genotype , Horse Diseases , Phylogeny , Theileria , Theileriasis , Animals , Theileria/genetics , Theileria/isolation & purification , Theileria/classification , Horses , Theileriasis/parasitology , Theileriasis/epidemiology , Horse Diseases/parasitology , Horse Diseases/epidemiology , India/epidemiology , RNA, Ribosomal, 18S/genetics , Polymerase Chain Reaction/veterinary , DNA, Protozoan/genetics
6.
Vet Parasitol ; 328: 110182, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38603925

ABSTRACT

Anthelmintic performance against equine cyathostomins can be evaluated by two different non-terminal measures; the Fecal Egg Count Reduction Test (FECRT) and the Egg Reappearance Period (ERP). Most available FECRT and ERP data have been determined in populations of young horses, and very little information is available from mature and senior horses. Furthermore, it is unknown how commonly occurring equine endocrine disorders such as Insulin dysregulation (ID) and Pituitary pars intermedia dysfunction (PPID) may interfere with these measurements, but it has been suggested that horses with these conditions could be more susceptible to parasitic infections. A research population of senior horses and horses with or without PPID, ID, or both were enrolled in this study. All strongylid egg count positive horses were included in an ivermectin (200 µg/kg) efficacy study. These were distributed among the following groups: ID: six, PPID: three, PPID and ID: seven, and healthy controls: three. Strongylid fecal egg counts were determined on the day of ivermectin administration, at two weeks post deworming, and on weekly intervals until eight weeks post treatment. Determination of FECRT and ERP were carried out following World Association for the Advancement of Veterinary Parasitology guidelines. Results revealed high ivermectin efficacy with mean egg count reduction at 99.7% or above in all groups at two weeks post treatment. Egg reappearance was documented at six and seven weeks in the ID and PPID/ID groups, respectively, whereas the PPID and healthy control groups both had ERP at 8 weeks. Statistical analysis found no significant differences in egg count levels between groups during the study. The expected ERP for ivermectin is 8-10 weeks, meaning that two of the groups displayed shortened ERPs. However, due to the small group sizes, these data should be interpreted with caution. Nonetheless, results do indicate a need for further investigation of the possible influence of endocrine disorders on anthelmintic performance in horses.


Subject(s)
Feces , Horse Diseases , Ivermectin , Parasite Egg Count , Animals , Horses , Ivermectin/therapeutic use , Ivermectin/pharmacology , Horse Diseases/drug therapy , Horse Diseases/parasitology , Parasite Egg Count/veterinary , Feces/parasitology , Female , Endocrine System Diseases/veterinary , Endocrine System Diseases/drug therapy , Male , Anthelmintics/therapeutic use , Anthelmintics/pharmacology , Antiparasitic Agents/therapeutic use , Antiparasitic Agents/pharmacology
7.
Vet Parasitol ; 328: 110176, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38603926

ABSTRACT

Pituitary pars intermedia dysfunction (PPID) is the most common endocrine disorder of older horses. Immune dysfunction in horses with PPID could increase susceptibility to infectious diseases, including strongyle infections; however, few data are available. The aim of this study was to determine if horses with PPID had increased strongyle faecal egg counts (FEC) compared with control horses, over a fourteen-week period in Victoria, Australia. Clinical signs and plasma adrenocorticotropic hormone (ACTH) concentrations were used to categorise horses into PPID (n=14) or control (n=31) groups. Faecal samples were collected for FEC determination prior to anthelmintic treatment, and fortnightly post-treatment for each horse. Generalised linear mixed modelling, using a gamma distribution, was used to compare differences between groups in the repeated measures study. The confounding variable of age was controlled for as a fixed effect. Following anthelmintic treatment, mean FEC was greater for the PPID group compared to the control group on day 56 (405 ± 756 eggs per gram [EPG] vs 40 ± 85 EPG, p=0.05) and day 70 (753 ±1598 EPG vs 82 ±141 EPG, p=0.04). There were no differences in mean FEC between groups on days 84 and 98. Cumulative FEC (day 14 to day 98) was significantly greater for the PPID horses than control horses (2118 ± 4016 EPG vs 798 ± 768 EPG, p<0.0001). Group egg reappearance period was shorter for PPID horses (day 56 post-anthelmintic treatment) compared to control horses (day 70) and 30% of the PPID horses reached a FEC threshold of >200 EPG on day 42, compared to 0% of control horses (p=0.02). These results suggest that the rate of a re-established patent infection between groups could be different due to a comprised immune response in PPID horses or differences in the host-parasite relationship regarding encysted stage larvae. However, despite differences between groups, some horses with PPID consistently had no detectable or low FEC (<200 EPG) during the study period. These findings highlight the importance of individual FEC monitoring to determine if anthelmintic treatment is required, in line with sustainable parasite management practices.


Subject(s)
Anthelmintics , Feces , Parasite Egg Count , Pituitary Diseases , Pituitary Gland, Intermediate , Strongyle Infections, Equine , Animals , Horses , Parasite Egg Count/veterinary , Feces/parasitology , Pituitary Diseases/veterinary , Pituitary Diseases/parasitology , Anthelmintics/therapeutic use , Female , Strongyle Infections, Equine/parasitology , Strongyle Infections, Equine/drug therapy , Male , Horse Diseases/parasitology , Horse Diseases/drug therapy , Adrenocorticotropic Hormone/blood , Victoria
8.
Parasit Vectors ; 17(1): 160, 2024 Mar 28.
Article in English | MEDLINE | ID: mdl-38549117

ABSTRACT

BACKGROUND: Equine piroplasmosis is caused by two tick-borne protozoan parasites, Theileria equi and Babesia caballi,, which are clinically relevant in susceptible horses, donkeys, and mules. Moreover, equine piroplasmosis significantly constrains international trading and equestrian events. Rapidly diagnosing both parasites in carrier animals is essential for implementing effective control measures. Here, a rapid immunochromatographic test for the simultaneous detection of antibodies to T. equi and B. caballi was evaluated using samples from horses and donkeys collected in Greece, Israel, and Italy. The results were compared with an improved competitive enzyme-linked immunosorbent assay (cELISA) for detecting antibodies to both parasites using the same panel of samples. METHODS: Blood samples were collected from 255 horses and donkeys. The panel consisted of 129 horses sampled at four locations in northern Greece, 105 donkeys sampled at four locations in Sicily, and 21 horses sampled at two locations in Israel. The rapid test and the cELISA were performed according to the manufacturer's instructions, and the results were subjected to a statistical analysis to determine the sensitivity and specificity of both tests and their association. RESULTS: The immunochromatographic test provided a result within 15 min and can be performed in the field, detecting both pathogens simultaneously. The overall coincidence rate between the rapid test and the cELISA for detecting antibodies against T. equi was 93% and 92.9% for B. caballi. The rapid test's sensitivity, specificity, positive predictive value (PPV), and negative predictive value (NPV) for T. equi were above 91.5%. Sixteen samples were positive for both parasites in the rapid test and eight in the cELISA. Either test had no significant association between T. equi and B. caballi detection. The detection rates of both parasites were significantly higher in Italy than in Greece or Israel and in donkeys than in horses. The agreement for T. equi between the results of both tests was high in Greece (93.8%) and Italy (95.2%) and moderate in Israel (76.2%). For B. caballi, the specificity and NPV of the rapid test were high (94.2% and 98.3%, respectively), although the sensitivity and PPV were moderate (69.2% and 39.1%, respectively) due to the small sample size. However, for B. caballi, the sensitivity was higher with the rapid test. CONCLUSIONS: The rapid test detected T. equi and B. caballi simultaneously in the field, potentially replacing laborious cELISA testing and is recommended for import/export purposes. The test can also be helpful for the differential diagnosis of clinical cases, since seropositivity may rule out equine piroplasmosis since it does not indicate current or active infection.


Subject(s)
Babesia , Babesiosis , Cattle Diseases , Horse Diseases , Theileria , Theileriasis , Ticks , Horses , Animals , Cattle , Equidae , Babesiosis/parasitology , Theileriasis/parasitology , Antibodies , Ticks/parasitology , Sicily , Horse Diseases/parasitology
9.
Acta Trop ; 254: 107195, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38548212

ABSTRACT

A clinical case of an adult horse with invasive, ulcerative, proliferative, pyogranulomatous disease of the skin (tumor) in the shoulder region is presented. The mass had a granulomatous and crater-shaped appearance, with serosanguinous discharge and the presence of fistulas with caseous material. The tumor was removed by surgery and sent to the laboratory for diagnosis. Histopathology was performed using Grocott-Gomori methenamine silver stain. The presence of necrotic material, fibrosis, infiltrated cells, and brown-colored hyphae, characteristic of members of the genus Pythium, were observed. To identify the infecting species, conventional PCRs for the amplification of the ITS-1 was carried out. Histopathological and PCR tests confirmed infection by a Pythium insidiosum strain closely associated with previous records from the US and Central America. Our report represents the first molecularly confirmed case of equine pythiosis in Mexico.


Subject(s)
Horse Diseases , Pythiosis , Pythium , Animals , Pythiosis/diagnosis , Pythiosis/microbiology , Pythiosis/pathology , Horses , Pythium/isolation & purification , Pythium/genetics , Pythium/classification , Horse Diseases/parasitology , Horse Diseases/microbiology , Horse Diseases/diagnosis , Mexico , Polymerase Chain Reaction , DNA, Ribosomal Spacer/genetics , Male , Histocytochemistry , Skin/pathology , Skin/microbiology , Skin/parasitology
10.
Vet Parasitol ; 328: 110168, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38547830

ABSTRACT

Cyathostomins are globally important equine parasites, responsible for both chronic and acute pathogenic effects. The occurrence of mixed infections with numerous cyathostomin species hinders our understanding of parasite epidemiology, host-parasite dynamics, and species pathogenicity. There have been few studies of cyathostomin species occurring in horses in Ireland, where temperate climatic conditions with year-round rainfall provide suitable conditions for infection of grazing animals with bursate nematodes. Here, we amplified and sequenced the ITS-2 region of adult worms harvested at post-mortem from eleven adult horses between August 2018 and June 2020, and recorded species prevalence and abundance of worms recovered from the caecum, right ventral colon and left dorsal colon, using both BLAST and IDTAXA for taxonomic attribution. Phylogenetic relationships and community composition were also recorded and compared with other relevant studies, including a global meta-analysis. Overall, our results agree with previous studies that there does not seem to be a major difference in cyathostomin species occurrence in equids in different geographical regions. We confirmed the results of other workers in relation to the difficulties in discriminating between Cylicostephanus calicatus and Coronocyclus coronatus on the basis of ITS-2 sequences.


Subject(s)
Horse Diseases , Phylogeny , Animals , Horses , Ireland/epidemiology , Horse Diseases/parasitology , Horse Diseases/epidemiology , Strongyloidea/classification , Strongyloidea/isolation & purification , Strongyloidea/genetics
11.
Res Vet Sci ; 171: 105236, 2024 May.
Article in English | MEDLINE | ID: mdl-38531238

ABSTRACT

Leishmaniasis and toxoplasmosis are two of the most common parasitic zoonoses. Leishmaniasis is endemic to 98 countries around the world, whereas toxoplasmosis is widely distributed throughout the world, causing significant health expenditure. Horses can play a relevant role in the transmission of the disease, being a silent reservoir, as clinical signs are not common. Serum samples from 166 horses living in eastern Spain (Mediterranean basin) were analysed to determine the presence of antibodies against Leishmania spp. and T. gondii by ELISA (Enzyme-linked Immunosorbent Assay.) The risk factors evaluated were the geographical area and the relative humidity and average temperature, and epidemiological factors such as sex, reproductive status, age, breed, morphotype, living with other domestic animals, use and access to the outdoors. Seroprevalence of Leishmania spp. and T. gondii infection was found 28.92%, and 16.27% respectively, whereas co-infection of the two parasites was found only in two males. Leishmania seroprevalence was high in castrated males and several mesodolichomorphic equine breeds used for teaching, as well as in outdoor animals. The most elevated seroprevalence was found in winter with higher levels of rainfall, whereas high seroprevalence of T. gondii was found in crossbreeding animals and those used for breeding. High seroprevalence of Leishmania spp. and T. gondii was found in horses of the Mediterranean basin. These data suggest that horses can act as a silent reservoir and that this species has high potential for transmission to humans, outdoor animals and in geographical areas with high average rainfall.


Subject(s)
Horse Diseases , Leishmania , Leishmaniasis , Toxoplasma , Toxoplasmosis, Animal , Humans , Male , Horses , Animals , Seroepidemiologic Studies , Prevalence , Spain/epidemiology , Toxoplasmosis, Animal/epidemiology , Toxoplasmosis, Animal/parasitology , Antibodies, Protozoan , Leishmaniasis/epidemiology , Leishmaniasis/veterinary , Animals, Domestic , Risk Factors , Horse Diseases/epidemiology , Horse Diseases/parasitology
12.
Vet Parasitol ; 327: 110152, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38430622

ABSTRACT

Tapeworm infection in horses can cause serious health concerns, and recent data have documented treatment failures in the most common species, Anoplocephala perfoliata. The threat of anthelmintic resistance in A. perfoliata is of particular concern because of poor diagnostic performance of standard egg counting techniques for detecting this parasite. This study compared the performance of three diagnostic techniques 1) Mini-FLOTAC, 2) Cornell-Wisconsin, and 3) Proudman and Edwards used to detect and quantify A. perfoliata eggs in naturally infected horses. Eighteen adult female horses from the University of Kentucky's historic parasitology herd were included in this study. Fecal samples were collected from all horses at five collection time points two weeks apart and analyzed with the three techniques. A total of 90 samples were collected and 270 counts determined in the study. The proportions of positive samples determined by the three techniques were significantly different from each other (p<0.05): Mini-FLOTAC (16%), Cornell-Wisconsin (47%), and Proudman and Edwards (70%). The Proudman and Edwards technique counted consistently higher numbers of tapeworm eggs compared to the other two techniques throughout the study [p < 0.05]. Total raw counts of tapeworm eggs across the study for each technique were 16, 88, and 410 for the Mini-FLOTAC, Cornell-Wisconsin, and Proudman and Edwards, respectively. This study demonstrated that the Proudman and Edwards technique was superior in diagnosing A. perfoliata infection. Future work needs to assess this technique's potential for Fecal Egg Count Reduction Testing (FECRT).


Subject(s)
Cestoda , Cestode Infections , Horse Diseases , Animals , Horses , Female , Horse Diseases/diagnosis , Horse Diseases/parasitology , Parasite Egg Count/veterinary , Parasite Egg Count/methods , Ovum , Cestode Infections/diagnosis , Cestode Infections/veterinary , Cestode Infections/parasitology , Feces/parasitology
13.
BMC Vet Res ; 20(1): 70, 2024 Feb 24.
Article in English | MEDLINE | ID: mdl-38395874

ABSTRACT

BACKGROUND: Mixed strongylid infections significantly impact equine health and performance. Traditional microscopy-based methods exhibit limitations in accurately identifying strongylid species. Nemabiome deep amplicon sequencing approach previously succeeded in describing the strongylid communities in livestock including equids. However, there are no available studies that describe the structural communities of strongylid parasites in horses in Thailand. Therefore, this study was undertaken encompassing the ITS-2 rDNA metabarcoding assay to characterize strongylid species within horse fecal samples collected from a cohort of yearlings at the largest domesticated stud farm in Thailand. In addition, to investigate the capability of ITS-2 rDNA in assessing the phylogenetic relationships among the identified strongylid species. RESULTS: The study identified 14 strongylid species in the examined equine populations, each with varying prevalence. Notably, Cylicocyclus nassatus and Cylicostephanus longibursatus were identified as the predominant species, with Strongylus spp. conspicuously absent. The phylogenetic analysis of 207 amplicon sequence variants (ASVs) displayed a complex relationship among the investigated cyathostomin species, with some species are positioned across multiple clades, demonstrating close associations with various species and genera. CONCLUSION: The ITS-2 nemabiome sequencing technique provided a detailed picture of horse strongylid parasite species in the studied population. This establishes a foundation for future investigations into the resistance status of these parasites and enables efforts to mitigate their impact.


Subject(s)
Horse Diseases , Nematoda , Humans , Animals , Horses , Horse Diseases/epidemiology , Horse Diseases/parasitology , Thailand/epidemiology , Phylogeny , Strongyloidea/genetics , Feces/parasitology , DNA, Ribosomal , Parasite Egg Count/veterinary
14.
Vet Parasitol Reg Stud Reports ; 48: 100987, 2024 02.
Article in English | MEDLINE | ID: mdl-38316512

ABSTRACT

Ticks are important ectoparasites in equids, causing economic losses in animal husbandry in Iran and worldwide. This study was aimed to determine frequency and species diversity of hard ticks in equids in Ardabil province, during the four seasons in 2021. A total of 240 equids (187 horses, 53 donkeys) were randomly selected and examined. Ixodid ticks were collected from body surface of examined animals and identified. Of all examined equids, 32.5% horses, and 4.58% donkeys were infested with a total number of 412 ixodid ticks. Tick indices (tick number per animal) were 4.62. There was significant difference between prevalence and different age groups of infested animals. The highest prevalence of hard ticks was found in ≥3 years-old equids in the region. Of all examined ticks (412), three genera including Hyalomma spp., Rhipicephalus spp. .and Dermacentor spp. with four species. i.e. Hyalomma anatolicum (73.05%), H. marginatum (17.23%), Rhipicephalus bursa (7.76%) and Dermacentor marginatus (1.94%) were identified. Ixodid ticks' infestations occurred throughout the year with the highest prevalence in spring. The findings indicated that the equids had a high species diversity and ixodid tick infestation, necessitating additional research to identify any possible tick vectors for the hemoparasite transmission in equids of this region.


Subject(s)
Horse Diseases , Ixodidae , Rhipicephalus , Tick Infestations , Animals , Horses , Tick Infestations/epidemiology , Tick Infestations/veterinary , Tick Infestations/parasitology , Seasons , Iran/epidemiology , Equidae , Horse Diseases/epidemiology , Horse Diseases/parasitology
15.
Acta Parasitol ; 69(1): 813-818, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38424400

ABSTRACT

PURPOSE: Piroplasmosis is responsible for anemia, fever, loss of physical activity and even death in equines. In epidemiological studies, accurate diagnostic tests are essential for detecting asymptomatic carriers. This study aimed to investigate the prevalence of infection in asymptomatic horses from Lorestan province, western Iran by developing a multiplex PCR. METHODS AND RESULTS: Blood samples were examined by microscopy and multiplex PCR targeting the SSU rRNA gene of Theileria equi and Babesia caballi. Out of the total of 165 horses, 19 (11.51%) and 31 (18.78%) cases were positive for piroplasms by microscopy and PCR, respectively. The detection rates of both genera were significantly higher in multiplex PCR compared to microscopy (p < 0.0001). Compared with multiplex PCR, the sensitivities of microscopy for the detection of Babesia were only 28.5%. The prevalence of T. equi infection was significantly higher in summer (p = 0.035). The prevalence of B. caballi was significantly higher in males (p = 0.038). CONCLUSION: Findings indicate that the multiplex PCR described here is a sensitive technique for the detection of piroplasm DNA in carriers. Furthermore, asymptomatic carriers must be considered as an important source of infection for equids living in this region.


Subject(s)
Babesia , Babesiosis , Horse Diseases , Microscopy , Multiplex Polymerase Chain Reaction , Theileria , Animals , Horses , Horse Diseases/parasitology , Horse Diseases/diagnosis , Horse Diseases/epidemiology , Iran/epidemiology , Babesiosis/epidemiology , Babesiosis/diagnosis , Babesiosis/parasitology , Babesia/genetics , Babesia/isolation & purification , Babesia/classification , Multiplex Polymerase Chain Reaction/methods , Multiplex Polymerase Chain Reaction/veterinary , Theileria/genetics , Theileria/isolation & purification , Theileria/classification , Male , Female , Microscopy/methods , Prevalence , DNA, Protozoan/genetics , Theileriasis/epidemiology , Theileriasis/diagnosis , Theileriasis/parasitology , Sensitivity and Specificity
16.
Int J Parasitol Drugs Drug Resist ; 24: 100528, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38422764

ABSTRACT

This study assessed the anthelmintic resistance in strongylid nematodes against commonly used anthelmintic (AH) drugs in a French galloping racehorse stud farm from March to December 2023. Faecal egg count reduction tests (FECRTs) were conducted in three different groups of Thoroughbred yearlings (a group of 6 males, a group of 13 females and a group of 8 females and 3 males) following the new World Association for the Advancement of Veterinary Parasitology (WAAVP) guidelines. The efficacy of fenbendazole was tested in two groups once during the monitoring period (in March), the efficacy of ivermectin in 3 groups twice (in March-April and in November-December) and the efficacy of pyrantel in one group once (in May-June). For each FECRT, the 90% confidence interval of the percentage faecal egg count reduction was calculated using the hybrid Frequentist/Bayesian analysis method. The resistance in strongylids was observed to fenbendazole, pyrantel and ivermectin in all the groups in which these drugs were tested. The number of animals in each group was sufficient to reach ≥80% power for the resistance test. The results highlight the first case of triple AH resistance in strongylids in France. Further studies involving more farms and equids are required to assess the prevalence of AH resistance in France and refine recommendations for owners.


Subject(s)
Anthelmintics , Horse Diseases , Animals , Female , Male , Anthelmintics/pharmacology , Bayes Theorem , Drug Resistance , Farms , Feces/parasitology , Fenbendazole/pharmacology , Horse Diseases/drug therapy , Horse Diseases/epidemiology , Horse Diseases/parasitology , Horses , Ivermectin/pharmacology , Parasite Egg Count/veterinary , Pyrantel/pharmacology
17.
Infect Genet Evol ; 119: 105571, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38365128

ABSTRACT

Equine piroplasmosis is a tick-borne disease caused by Theileria equi and Babesia caballi in horses. Because of its impact on horse industry, control of this disease is crucial for endemic countries. The control of equine piroplasmosis may be influenced by the genotypic diversity of T. equi and B. caballi. Mongolia, a country with a thriving livestock industry, is endemic for T. equi and B. caballi. However, nationwide epidemiological surveys have not been conducted to determine the current status of infections and genetic diversity of these two parasite species. Therefore, the objective of this research was to investigate the infection rates and genotypes of T. equi and B. caballi in horses across Mongolia. Blood samples were collected from 1353 horses in 15 of Mongolia's 21 provinces, and their DNAs were analyzed with T. equi- and B. caballi-specific PCR assays. Additionally, blood smears were prepared from 251 horses, stained with Giemsa, and examined under a light microscope to identify T. equi and B. caballi. The microscopy revealed that 30 (11.9%) and 4 (1.6%) of the 251 horses were positive for T. equi and B. caballi, respectively. By contrast, PCR assays detected the T. equi and B. caballi in 1058 (78.2%) and 62 (4.6%) horses, respectively. Phylogenetic analysis of 18S rRNA sequences from 42 randomly selected T. equi-positive DNA samples detected the genotypes A and E. On the other hand, the rap-1 sequences from 19 randomly selected B. caballi-positive DNA samples occurred in clades representing the genotypes A and B1, as well as in a distinct clade closely related to the genotype A. Our findings confirm the widespread occurrence of T. equi and B. caballi infections in Mongolian horses, highlighting the need for a comprehensive control approach.


Subject(s)
Babesia , Babesiosis , Horse Diseases , Theileria , Theileriasis , Cattle , Horses/genetics , Animals , Babesia/genetics , Theileria/genetics , Babesiosis/parasitology , Theileriasis/epidemiology , Theileriasis/parasitology , Phylogeny , Horse Diseases/epidemiology , Horse Diseases/parasitology , DNA, Protozoan/genetics , Genetic Variation
18.
Vet Parasitol ; 326: 110111, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38218052

ABSTRACT

A relatively new method to study the species richness and diversity of nematode parasites in grazing animals is to perform deep sequencing on composite samples containing a mixture of parasites. In this work, we compared species composition of strongyles in two groups of horses as a function of egg count and age, based on a DNA barcoding approach. Faecal egg counts and larval cultures were obtained from nearly 300 horses, i.e., domestic horses (n = 167) and trotters (n = 130) sampled nationwide. The second internal transcribed spacer region (ITS2) of strongyle nematodes in the larval cultures was first amplified using barcoded universal primers and then sequenced on the PacBio platform. Subsequently, bioinformatic sequence analysis was performed using SCATA to assign operational taxonomic units (OTU). Finally, species occurrence and composition were assessed using R. ITS2 sequences were found in the majority (89%) of larval samples. Sequencing yielded an average of 140 (26 to 503) reads per sample. The OTUs were assigned to 28 different taxa, of which all but three could be identified as species. The average relative abundance of the seven most abundant species (all Cyathostominae) accounted for 87% of the combined data set. The three species with the highest prevalence in both horse groups were Cyathostomum catinatum, Cylicocyclus nassatus and Cylicostephanus calicatus, and they were frequently found in different combinations with other species regardless of horse group. Interestingly, this result is largely consistent with a previous Swedish study based on morphological analysis of adult worms. In addition, two migratory strongylids (Strongylus vulgaris and S. edentatus) occurred in few domestic horses and trotters. Except for C. minutus and C. nassatus, which decreased with age, and C. catinatum and S. vulgaris, which increased, no specific trends were observed with respect to horse age. Taken together, these results are broadly consistent with data obtained before the introduction of selective targeted treatment in Sweden in 2007. All in all, our results suggest that this treatment strategy has not led to a significant change in strongyle nematode community structure in Swedish horses. The study also confirms that nemabiome analysis in combination with diversity index analysis is an objective method to study strongyle communities in horses.


Subject(s)
Anthelmintics , Horse Diseases , Intestinal Diseases, Parasitic , Parasites , Strongyle Infections, Equine , Horses , Animals , Strongyle Infections, Equine/drug therapy , Strongyle Infections, Equine/epidemiology , Strongyle Infections, Equine/parasitology , Anthelmintics/therapeutic use , Strongyloidea/genetics , Strongylus , Feces/parasitology , Larva , Intestinal Diseases, Parasitic/veterinary , Horse Diseases/drug therapy , Horse Diseases/epidemiology , Horse Diseases/parasitology , Parasite Egg Count/veterinary
19.
Prev Vet Med ; 223: 106100, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38198900

ABSTRACT

Grazing equids are constantly exposed to three clinically important gastrointestinal parasites (small strongyles/cyathostomins, Anoplocephala spp. and Parascaris spp.). Knowledge of the local seasonal dynamic of these parasitic infections is important for constructing a sustainable parasite control program with a rational number of anthelmintic treatments. However, studies describing these patterns are sparse in France. In this context, a two-year study was carried out to assess i) the seasonal dynamic and variability of strongyle faecal egg counts (FEC) and infective larvae (L3) counts on pastures, and ii) the prevalence of Anoplocephala spp. and Parascaris spp. and the dynamic evolution of their presence. During 2021 and 2022 grazing seasons, monthly individual faecal egg counts (FEC) and diarrhea scores (DS) were determined on 428 equids divided into 33 groups. A monthly body condition score (BCS) was also attributed to animals ≥3 years old and a monthly bodyweight was estimated for each animal <3 years old. At the group level, the strongyle L3 counts on grazed pastures were carried out at least in spring, summer and autumn. Eggs of strongyles were observed in 97% of equids. In 64% of the groups, the peaks of FEC were noted in September and October. At the individual level, the maximum strongyle FEC was related to age, group of breeds, number of grazed plots and number of anthelmintic treatments. No negative association was observed between strongyle FEC and BCS or average daily weight gain. In the pastures, cyathostomin larvae were found almost exclusively. Over the two years, the peaks of cyathostomin L3 counts occurred in 87% of the groups between September and November and ranged from 635 to 87,500 L3 kg-1 dry herbage. The variability of the maximum cyathostomin L3 count in each group was explained by the year and the number of grazed plots. Eggs of Anoplocephala spp. were observed in 12% of equids. Eggs of Parascaris spp. were noted in 34% of one year-old animals, 9% of two years-olds and 2% of olders. Anoplocephala spp. and Parascaris spp. eggs were observed every month with a peak in the percentage of shedders in groups in October for Anoplocephala spp. and May-June for Parascaris spp.This study highlights the prevalence of each parasite, the variability in cyathostomin egg excretion and L3 counts amongst groups and individuals and the factors involved in this variation These local epidemiological data will help us to re-think a newer strategy against these parasites.


Subject(s)
Anthelmintics , Ascaridoidea , Horse Diseases , Intestinal Diseases, Parasitic , Parasites , Humans , Horses , Animals , Horse Diseases/parasitology , Seasons , Prevalence , Parasite Egg Count/veterinary , Intestinal Diseases, Parasitic/epidemiology , Intestinal Diseases, Parasitic/veterinary , Anthelmintics/therapeutic use , Feces/parasitology , France/epidemiology
20.
Int J Parasitol Drugs Drug Resist ; 24: 100517, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38064906

ABSTRACT

This study quantified the extent of anthelmintic resistance (AR) in ascarid and strongylid nematodes against commonly used anthelmintics in Australian Thoroughbred horses. Faecal egg count reduction tests (FECRTs, n = 86) and egg reappearance period (ERP) tests were conducted on 22 farms across Australia. Faecal egg counts (FECs) were determined using the modified McMaster technique, and percent faecal egg count reduction (%FECR) was calculated using the Bayesian hierarchical model and hybrid Frequentist/Bayesian analysis method. The results were interpreted using old (published in 1992) and new (2023) research guidelines of the World Association for the Advancement of Veterinary Parasitology (WAAVP). The species composition of strongylid nematodes was detected utilising a DNA-metabarcoding method using pre- and post-treatment samples. Resistance was observed in strongylid nematodes to commonly used single-active and combination anthelmintics, including ivermectin (IVM %FECR range: 82%-92%; 95% lower credible interval (LCI) range: 80%-90%), abamectin (ABM: 73%-92%; 65%-88%), moxidectin (MOX: 89%-91%; 84%-89%), oxfendazole (OFZ: 0%-56%; 0%-31%) and its combination with pyrantel (OFZ + PYR: 0%-82%; 0%-78%). Resistance in Parascaris spp. was observed to IVM (10%-43%; 0%-36%), ABM (0%; 0%) and MOX (0%; 0%). When the new thresholds recommended by the WAAVP were used, AR was detected in six additional FECRTs for strongylids and three more tests for Parascaris spp., introducing resistance to OFZ and OFZ + PYR in the latter. Shortened ERPs (4-6 weeks) of strongylids were observed in 31 FECRTs in which AR was not detected at 2 weeks post-treatment for all the anthelmintics tested. Among cyathostomins, Cylicocyclus nassatus, Cylicostephanus longibursatus and Coronocyclus coronatus were the most prevalent species at 2 weeks post-treatment, whereas the main species appearing at five weeks following treatments with macrocyclic lactones were Cylicocyclus nassatus, Cylicostephanus longibursatus and Cylicocyclus ashworthi. After treatment with OFZ + PYR, the latter three, plus Coronocyclus coronatus and Cyathostomum catinatum, were detected at 5 weeks post-treatment. Overall, the study highlights the prevalence of AR in both ascarids and strongylid nematodes against commonly used anthelmintic products to control worms in Australian horses. The results indicate that ML combination products provided acceptable efficacy at 2 weeks. However, ERP calculations suggest that products work less effectively than previously measured. It is suggested to regularly monitor the efficacy of the anthelmintics and consider changing the worm control practices to better manage worms and AR in Australian horses.


Subject(s)
Anthelmintics , Horse Diseases , Animals , Anthelmintics/pharmacology , Australia/epidemiology , Bayes Theorem , Drug Resistance , Feces/parasitology , Horse Diseases/drug therapy , Horse Diseases/parasitology , Horses , Parasite Egg Count/veterinary , Strongyloidea/genetics
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