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1.
Vet Parasitol ; 168(1-2): 84-92, 2010 Feb 26.
Article in English | MEDLINE | ID: mdl-19906489

ABSTRACT

A broad scale study was carried out in 2008 to evaluate the distribution and species-specific occurrence of cyathostomin populations in horse yards from Europe. In total 102 properties and 3123 horses were included in Italy (60 yards and 1646 animals), United Kingdom (22 yards and 737 animals) and Germany (20 yards and 740 animals). Individual faecal samples were examined with a McMaster technique while pooled samples were subjected to the microscopic examination of in vitro cultured larvae and to a Reverse Line Blot (RLB) assay able to molecularly identify the most diffused 13 species of cyathostomins. All yards were positive for the presence of cyathostomins both at the McMaster technique and at the microscopic examination of cultured larvae. One thousand and nine hundred thirty-one horses (61.8%) showed a positive faecal egg count, i.e. 1110 (67.4%), 463 (62.8%) and 358 (48.3%) from Italy, UK and Germany respectively. Out of the 1931 positive animals 1133 (36.3%) showed a faecal egg count per gram >150, specifically 694 (42.2%) from Italy, 237 (32.2%) from UK and 202 (27.3%) from Germany. The molecular results showed that all 13 species that can be detected by the RLB were found in each of the three countries, with a range of 3-13 species present in individual yards. The five most prevalent were Cylicocyclus nassatus, Cylicostephanus longibursatus, Cyathostomum catinatum, Cylicocyclus goldi and Cyathostomum pateratum. The relevance of these results and related biological and epidemiological features are discussed, together with their significance for both future studies of cyathostomins and further intervention programs aiming to control the spread of anthelmintic-resistant populations.


Subject(s)
Horse Diseases/epidemiology , Horse Diseases/parasitology , Host-Parasite Interactions/physiology , Strongylida Infections/veterinary , Animals , Europe/epidemiology , Feces/parasitology , Horses , Larva , Parasite Egg Count , Prevalence , Species Specificity , Strongylida , Strongylida Infections/epidemiology , Strongylida Infections/parasitology
2.
Parasit Vectors ; 2 Suppl 2: S2, 2009 Sep 25.
Article in English | MEDLINE | ID: mdl-19778463

ABSTRACT

BACKGROUND: A large survey was carried out in 2008 in Europe to evaluate the efficacy of fenbendazole (FBZ), pyrantel (PYR), ivermectin (IVM) and moxidectin (MOX), i.e. the major anthelmintic molecules used in current practice against cyathostomins affecting horses. A total of 102 yards and 1704 horses was studied in three countries: 60 yards and 988 horses from Italy, 22 and 396 from the UK, 20 and 320 from Germany. The survey consisted of Faecal Egg Count Reduction Tests (FECRTs) with a faecal egg count reduction (FECR) categorization of (I) resistance present if FECR <90% and the lower 95% confidence limit (LCL) <90%, (II) resistance suspected if FECR >/= 90% and/or LCL <90% and (III) no resistance if FECR >/= 90% and LCL >90%. The calculation of FECR data was performed employing bootstrap analysis of group arithmetic means. RESULTS: The testing of FBZ on a total of 80 yards resulted in resistance present on more than 80% of the UK and German yards and on significantly fewer in Italy, i.e. in 38% (p < 0.01). PYR, IVM and MOX were tested on a total of 102 yards. For PYR resistance present was found in 25% of the yards with no significant differences between countries. For IVM resistance present was encountered in one Italian and two UK yards (3%), resistance present to MOX was not found in any yard in any country. CONCLUSION: The results indicate that single and/or multiple drug resistance in equine cyathostomins is present in the three countries, is widespread particularly for FBZ and/or PYR and in one UK yard multiple resistance present was detected to FBZ, PYR and IVM. Macrocylic lactones proved to be the most effective drugs, with some evidence of resistance to IVM and highest activity of MOX, despite a single case of reduced efficacy in Germany. These data call for the development and implementation, among practitioners, owners and managers, of further plans to reduce the expansion of the anthelmintic resistant populations and to use those anthelmintics that remain effective in a manner that preserves their efficacy as long as possible.

3.
Parasit Vectors ; 2 Suppl 2: S3, 2009 Sep 25.
Article in English | MEDLINE | ID: mdl-19778464

ABSTRACT

BACKGROUND: For the control of worm infections, the strategic use of anthelmintics, often accompanied by additional farm and/or pasture management procedures, is currently applied on most horse farms in industrialized countries. However, the particular effects of the specific worm control procedures are often unclear and have only been investigated to a limited extent. We examined faecal egg count (FEC), faecal egg count reduction (FECR) and questionnaire data on farm and pasture management procedures. The aim of this study was to determine whether specific worm control practices reported to be applied in European horse farms affect worm prevalence. RESULTS: This study involved 20 German, 26 Italian and 16 UK horse farms for each of which FEC were performed on a minimum of 16 horses. In total, 2029 horse faecal samples were quantitatively analysed for helminth eggs, resulting in 56.3% of the faecal samples being positive for strongylid eggs. The prevalence in the 742 German horse samples (48.1%) was significantly lower than that in the 737 Italian (61.1%) and the 550 UK (60.9%) samples. As expected, a significant effect of horse age on the infection prevalence was observed, with adult horses showing lower prevalences and lower mean FEC than foals and yearlings. The majority of the participating farms were stud farms (n = 29), followed by riding stables (n = 27) and racehorse stables (n = 6). The prevalence of strongyle infection by farm type differed between countries. While in Germany, horses on riding farms were significantly less often strongyle positive, in the UK horses on stud farms showed the lowest strongyle prevalences, whereas in Italy, no significant difference between farm types were seen. On all farms, horses received routine/preventive anthelmintic treatment. An effect of treatment frequency on strongyle prevalence was only encountered with adult horses. On farms performing more than one annual treatment, faecal samples were significantly less often positive. Furthermore, by comparing the FECR results of individual horses with their pre-treatment FEC, it was found that high pre-treatment FEC were associated with a significantly higher probability for a FECR below 90%. CONCLUSION: Overall, age-dependent strongyle infection patterns and general worm control approaches were found to be similar on horse farms in the three countries. Also, a negative association of pre-treatment FEC and treatment efficacy was consistently found in all countries. However, mean strongyle prevalences and frequencies of anthelmintic treatments were considerably different. In addition to the age-dependent prevalence patterns, the finding of a possible negative association between high FEC and reduced FECR might argue for a focus on horses showing high pre-treatment FEC when monitoring anthelmintic treatment efficacy in the field.

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