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Topic:Larvae

Larvae in relation to horses refers to the immature stages of various parasitic organisms that can infect equine hosts. These larvae can originate from different species of internal and external parasites, such as gastrointestinal nematodes and bots. The presence and development of larvae in horses can lead to various health issues, including digestive disturbances, weight loss, and colic. Common parasitic larvae affecting horses include those of Strongylus vulgaris, Parascaris equorum, and Gasterophilus spp. Understanding the life cycle, transmission, and impact of these larvae is essential for effective parasite management and control in equine populations. This page compiles peer-reviewed research studies and scholarly articles that explore the biology, pathology, and management strategies related to larval parasitism in horses.
Ultramorphological and molecular characteristics of the larval stages of the horse nasal-myiasis fly, Rhinoestrus sp. (Diptera: Oestridae) from Mongolian horse in China.
Microscopy research and technique    November 8, 2017   Volume 81, Issue 2 198-206 doi: 10.1002/jemt.22965
Dong J, Bao H, Mang L.Rhinoestrus sp. (Diptera: Oestridae) is an economically important parasite that can cause severe nasal myiasis in equids and can also affect humans. The ultrastructure of all Rhinoestrus sp. larval instars from Mongolian horse was examined by light and scanning electron microscopy to characterize the features of Rhinoestrus. The structure of the anterior region, posterior region, and the spines of the third segment was analyzed for 10 specimens in each larval stage. Additionally, 34 third-instar (L3) larvae of Rhinoestrus sp. from Mongolian horse were subjected to molecular characterization by...
P-glycoproteins play a role in ivermectin resistance in cyathostomins.
International journal for parasitology. Drugs and drug resistance    October 25, 2017   Volume 7, Issue 3 388-398 doi: 10.1016/j.ijpddr.2017.10.006
Peachey LE, Pinchbeck GL, Matthews JB, Burden FA, Lespine A, von Samson-Himmelstjerna G, Krücken J, Hodgkinson JE.Anthelmintic resistance is a global problem that threatens sustainable control of the equine gastrointestinal cyathostomins (Phylum Nematoda; Superfamily Strongyloidea). Of the three novel anthelmintic classes that have reached the veterinary market in the last decade, none are currently licenced in horses, hence current control regimens focus on prolonging the useful lifespan of licenced anthelmintics. This approach would be facilitated by knowledge of the resistance mechanisms to the most widely used anthelmintics, the macrocyclic lactones (ML). There are no data regarding resistance mechani...
Adaptation of a 96-well plate larval migration inhibition test for measuring the sensitivity of cyathostomins to macrocyclic lactone anthelmintics.
Veterinary parasitology    August 18, 2017   Volume 245 55-61 doi: 10.1016/j.vetpar.2017.08.010
Beasley AM, Coleman GT, Kotze AC.The use of macrocyclic lactone drugs for control of equine cyathostomins is threatened by increasing levels of resistance. Detection of changes in drug sensitivity is important for effective and sustainable management of cyathostomins, however, at present such detection relies on the use of the faecal egg count reduction test, which is known to be an insensitive method. The present study therefore aimed to examine the use of a 96-well plate larval migration inhibition test for detection of resistance to macrocyclic lactone drugs in cyathostomins. We optimised conditions for migration of larvae...
Nematode Species Identification-Current Status, Challenges and Future Perspectives for Cyathostomins.
Frontiers in cellular and infection microbiology    June 28, 2017   Volume 7 283 doi: 10.3389/fcimb.2017.00283
Bredtmann CM, Krücken J, Murugaiyan J, Kuzmina T, von Samson-Himmelstjerna G.Human and animal health is globally affected by a variety of parasitic helminths. The impact of co-infections and development of anthelmintic resistance requires improved diagnostic tools, especially for parasitic nematodes e.g., to identify resistant species or attribute pathological effects to individual species or particular species combinations. In horses, co-infection with cyathostomins is rather a rule than an exception with typically 5 to 15 species (out of more than 40 described) per individual host. In cyathostomins, reliable morphological species differentiation is currently limited ...
Gasterophilus intestinalis (Diptera: Oestridae) in the diaphragmatic muscle: An unusual finding.
Veterinary parasitology    March 1, 2017   Volume 237 117-121 doi: 10.1016/j.vetpar.2017.02.030
Cavallero S, Pombi M, Perrone V, Milardi GL, D'Amelio S, Giuliani C, Gabrielli S.Larval forms of the bot-fly Gasterophilus are obligate parasites commonly found in the gastrointestinal tract of equids, causing intestinal myiasis. Five species are reported so far in Italy, mostly observed during necroscopy, located in different portion of gastrointestinal tract of equids: G. intestinalis, G. nasalis, G. inermis, G. pecorum and G. haemorrhoidalis. An unusual finding of larval Gasterophilus intestinalis deeply inserted into the diaphragmatic muscle is here reported. Due to the uncommon localization, to the absence of clinical signs related to myiasis and subsequent uncertaint...
Encysted cyathostomin larvae in foals – progression of stages and the effect of seasonality.
Veterinary parasitology    February 20, 2017   Volume 236 108-112 doi: 10.1016/j.vetpar.2017.02.013
Nielsen MK, Lyons ET.Cyathostomins (small strongyles) are ubiquitous in grazing horses and are known pathogens as cause of larval cyathostominosis. As part of their life cycle, cyathostomin larvae invade the mucosal walls of the large intestines and undergo encystment. Newly ingested third stage larvae are known to undergo arrested development and this can lead to an accumulation of encysted burdens over the course of a grazing season. It is believed that the host immune system plays a significant role in triggering this arrestment. Little is known about the development and progression of larval stages in foals th...
Diagnosis of resistance alleles in codon 167 of the beta-tubulin (Cya-tbb-1) gene from third-stage larvae of horse cyathostomins.
Research in veterinary science    January 25, 2017   Volume 115 92-95 doi: 10.1016/j.rvsc.2017.01.019
Ishii JB, Arenal A, Felix A, Yoshitani U, Beech R, Molento MB.Anthelmintic resistance is a serious problem for the control of equine gastrointestinal nematodes. In the present survey, 173 third stage larvae of cyathostomins were investigated from three different locations for the presence of the resistant genotype at codon 167 of the beta-tubulin gene, as this is the most prevalent mutation. The larvae from the state of Parana (n=67), Sao Paulo (n=54) and Santa Catarina (n=52), showed 61.2; 31.5 and 38.5% of the heterozygous resistant genotype - TTC/TAC, respectively. An unpublished mutation at codon 172 that results in a serine (S) to threonine (T) subs...
Detection of Strongylus vulgaris in equine faecal samples by real-time PCR and larval culture – method comparison and occurrence assessment.
BMC veterinary research    January 11, 2017   Volume 13, Issue 1 19 doi: 10.1186/s12917-016-0918-y
Kaspar A, Pfister K, Nielsen MK, Silaghi C, Fink H, Scheuerle MC.Strongylus vulgaris has become a rare parasite in Germany during the past 50 years due to the practice of frequent prophylactic anthelmintic therapy. To date, the emerging development of resistance in Cyathostominae and Parascaris spp. to numerous equine anthelmintics has changed deworming management and the frequency of anthelmintic usage. In this regard, reliable detection of parasitic infections, especially of the highly pathogenic S. vulgaris is essential. In the current study, two diagnostic methods for the detection of infections with S. vulgaris were compared and information on the occ...
Life cycle and parasitic competence of Dermacentor nitens Neumann, 1897 (Acari: Ixodidae) on different animal species.
Ticks and tick-borne diseases    December 31, 2016   Volume 8, Issue 3 379-384 doi: 10.1016/j.ttbdis.2016.12.014
Rodrigues VDS, Garcia MV, Cruz BC, Maciel WG, Zimmermann NP, Koller WW, Barros JC, Andreotti R.The objective of this study was to evaluate the life cycle and parasitic competence of Dermacentor nitens (Neumann, 1897) on different animal species. Experimental infestations were induced in five specimens each of seven species of possible hosts: rabbits, horses, sheep, cows, guinea pigs, birds and dogs. Rabbits were infested in the ear using artificial feeding chambers, and the horses, sheep, cows and dogs were infested in the ear without feeding chambers. For the infestation of guinea pigs, artificial feeding chambers were fixed on the back. Birds were infested by placing larvae on the bac...
Life cycle of Spinose ear tick, Otobius megnini (Acari: Argasidae) infesting the race horses in Nuwara Eliya, Sri Lanka.
Acta tropica    November 18, 2016   Volume 166 164-176 doi: 10.1016/j.actatropica.2016.11.026
Diyes GCP, Rajakaruna RS.Otobius megnini infests mainly domesticated and wild animals and occasionally humans. It has been identified as an agent of human and horse otoacariasis in Sri Lanka. The number of nymphal stages in the life cycle of O. megnini varies from one to three in different geographic regions. The present study determined the life cycle of O. megnini infesting the racehorses in Nuwara Eliya. A tick colony was initiated from fully engorged nymphs collected from horses and maintained at 10°C, 22°C and 28°C. Immature stages were reared on New Zealand rabbits. Only the larvae weighing more than 0.9mg (8...
The larval development of Habronema muscae (Nematoda: Habronematidae) affects its intermediate host, Musca domestica (Diptera: Muscidae).
Parasitology research    November 5, 2016   Volume 116, Issue 2 503-509 doi: 10.1007/s00436-016-5312-y
Schuster RK, Sivakumar S.Although the life cycle of the equid stomach parasite Habronema muscae was disclosed more than 100 years ago, little is known about the effect of the developing nematode larvae in its intermediate host, Musca domestica. In a series of experiments, freshly hatched M. domestica larvae were exposed to H. muscae eggs contained in a faecal sample of a naturally infected horse. In daily intervals, 50 fly larvae were removed and transferred on a parasite-free larval rearing medium where they completed their development. Hatched flies were examined for the presence of Habronema third-stage larvae. In...
Gasterophilus (Diptera, Gasterophilidae) infestation of equids in the Kalamaili Nature Reserve, China.
Parasite (Paris, France)    September 5, 2016   Volume 23 36 doi: 10.1051/parasite/2016036
Huang H, Zhang B, Chu H, Zhang D, Li K.We investigated infections with Gasterophilus spp. in three equids within the Kalamaili Nature Reserve (northern China). We conducted necropsies on 6 Przewalski's horses (Equus ferus przewalskii) and 6 Mongolian wild asses (Equus hemionus) and administered ivermectin to 10 overwintering domestic horses to expel parasites during winter periods. All 22 equids studied (100%) were infested with Gasterophilus spp. and a total of 17,225 larvae were collected. These included six species: G. haemorrhoidalis, G. inermis, G. intestinalis, G. nasalis, G. nigricornis, and G. pecorum. The mean intensity of...
Equine Cyathostominae can develop to infective third-stage larvae on straw bedding.
Parasites & vectors    August 31, 2016   Volume 9, Issue 1 478 doi: 10.1186/s13071-016-1757-1
Love S, Burden FA, McGirr EC, Gordon L, Denwood MJ.Domesticated grazing animals including horses and donkeys are frequently housed using deep litter bedding systems, where it is commonly presumed that there is no risk of infection from the nematodes that are associated with grazing at pasture. We use two different approaches to test whether equids could become infected with cyathostomines from the ingestion of deep litter straw bedding. Two herbage plot studies were performed in horticultural incubators set up to simulate three straw bedding scenarios and one grass turf positive control. Faeces were placed on 16 plots, and larval recoveries pe...
A model for the development and growth of the parasitic stages of Parascaris spp. in the horse.
Veterinary parasitology    August 28, 2016   Volume 228 108-115 doi: 10.1016/j.vetpar.2016.08.019
Leathwick DM, Sauermann CW, Donecker JM, Nielsen MK.Literature documenting the growth and development of Parascaris spp. infections was used to develop a model describing worm dynamics in the young horse. The model incorporates four main variables; the rate at which larvae migrate through host tissues to return to the small intestine, the proportion of migrating larvae which succeed in returning to the small intestine, the rate of growth in size of maturing and adult worms and the survival rate of maturing and adult worms. In addition, the number of eggs laid each day by adult female worms is calculated as a function of worm size (length) and i...
Ovicidal efficacy of fenbendazole after treatment of horses naturally infected with cyathostomins.
Veterinary parasitology    August 3, 2016   Volume 227 151-156 doi: 10.1016/j.vetpar.2016.08.004
Daniels SP, Proudman CJ.The ovicidal activity of benzimidazole (BZ) anthelmintics is unique and not seen in other drug classes. Such ovicidal efficacy is not widely reported for equine cyathostomins, nor has this activity been tested in the face of BZ resistance. Although the product label states that fenbendazole is for use against BZ-susceptible cyathostomins, susceptibility testing is rarely performed. In this field-based study, the ovicidal efficacy of fenbendazole in horses (n=39) harbouring BZ-resistant cyathostomins was compared when dosed at 7.5mg/kg body weight (BW) orally, as a single dose per os (n=21) or ...
Species composition of larvae cultured after anthelmintic treatment indicates reduced moxidectin susceptibility of immature Cylicocyclus species in horses.
Veterinary parasitology    July 26, 2016   Volume 227 77-84 doi: 10.1016/j.vetpar.2016.07.029
Kooyman FN, van Doorn DC, Geurden T, Mughini-Gras L, Ploeger HW, Wagenaar JA.For the control of cyathostomins in horses, the macrocyclic lactones (MLs), moxidectin (MOX) and ivermectin (IVM) are the most commonly used anthelmintics. However, reduced activity, observed as shortening of the egg reappearance period (ERP) has been described. Shortening of the ERP may be caused by a decreased susceptibility of immature worms for MLs. Alternatively, immature worms may develop faster into egg producing adults as a result of repeated ML treatments. The species composition of the larval cultures obtained shortly after ML and pyrantel (PYR) treatment can confirm the hypothesis o...
Equine antibody response to larval Parascaris equorum excretory-secretory products.
Veterinary parasitology    June 29, 2016   Volume 226 83-87 doi: 10.1016/j.vetpar.2016.06.036
Burk SV, Dangoudoubiyam S, Brewster-Barnes T, Howe DK, Carter CN, Bryant UK, Rossano MG.Parascaris equorum is an intestinal nematode of foals and young horses that can produce mild to severe pathology. Current diagnosis is limited to detection of patent infections, when parasite eggs are identified during fecal examinations. This study examined the use of larval P. equorum excretory-secretory (ES) products in a western blot test for diagnosis of prepatent equine P. equorum infection. Sera from adult mares negative for patent P. equorum infections, foals prior to consuming colostrum, and P. equorum infected foals were used as controls in this study. Study samples included sera fro...
Development of a recombinant protein-based ELISA for diagnosis of larval cyathostomin infection.
Parasitology    May 13, 2016   Volume 143, Issue 8 1055-1066 doi: 10.1017/S0031182016000627
Mitchell MC, Tzelos T, Handel I, McWilliam HE, Hodgkinson JE, Nisbet AJ, Kharchenko VO, Burgess ST, Matthews JB.Cyathostomins are ubiquitous nematodes of horses. Once ingested, they can spend a substantial time as encysted larvae in the intestinal wall. The larvae can comprise up to 90% of the total burden, with up to several million worms reported in individuals. These stages can emerge in large numbers to cause life-threatening colitis. Direct methods for detection of encysted larval burdens in live horses do not exist. Previously, two antigen complexes were identified as promising markers for infection. A component of these, cyathostomin gut associated larval antigen-1 (Cy-GALA-1), was identified fol...
Seasonal dynamics of spinose ear tick Otobius megnini associated with horse otoacariasis in Sri Lanka.
Acta tropica    March 21, 2016   Volume 159 170-175 doi: 10.1016/j.actatropica.2016.03.025
Diyes GC, Rajakaruna RS.Otobius megnini is a one host, nidicolous soft tick (Family Argasidae) whose larvae and nymphs parasitize the external ear canal of many wild and domestic animals and occasionally humans. The present study was conducted to determine the seasonal dynamics of O. megnini infesting stabled horses in Nuwara Eliya racecourses. Ticks were sampled biweekly for two years from May 2013 to May 2015 from the ear canal of seven thoroughbred male horses. Weather data: temperature, rainfall and humidity for the study period were obtained from the Meteorological Department, Colombo. A total of 23, 287 ticks o...
Differential expression of β-tubulin isotypes in different life stages of Parascaris spp after exposure to thiabendazole.
Molecular and biochemical parasitology    February 12, 2016   Volume 205, Issue 1-2 22-28 doi: 10.1016/j.molbiopara.2016.02.004
Tydén E, Skarin M, Andersson-Franko M, Sjöblom M, Höglund J.Anthelmintic resistance (AR) to macrocyclic lactones (ML) has been described in Parascaris of horses world-wide. In contrast, benzimidazoles (BZ) are still effective, although reduced efficacy to this drug class was recently reported. The mode of action of BZ is binding to β-tubulin, which prevents polymerisation of microtubules. In this study, β-tubulin gene expression of isotypes 1 and 2 was investigated at seven time points (0, 6, 24, 72, 96 and 120 h) during embryogenesis and in adult worms. In addition, an in ovo larval developmental test was developed to study β-tubulin gene expressio...
First serological study of equine hydatidosis in Iran.
Journal of parasitic diseases : official organ of the Indian Society for Parasitology    January 14, 2016   Volume 40, Issue 4 1567-1570 doi: 10.1007/s12639-015-0729-2
Sakhaee E, Golchin M, Amiri H, Fayed MR, Eydi J.Hydatidosis, is an important worldwide zoonotic disease caused by larval stages (metacestodes) of tapeworm parasites of the genus Echinococcus. The objective of the present study was to determine the seroprevalence of equine hydatidosis in Iran by latex agglutination test. This study also served to correlate sex and age with mentioned results in cases. Therefore, 193 serum samples were collected from clinically healthy horses at 9 race clubs in Kerman, Yazd and Golestan provinces, Iran. According to the results, antibodies against hydatidosis were detected in 6 sera (3.11 %) among 193 samples...
A Rare Case of Gastric Myiasis in a Lion Caused by Gasterophilus intestinalis (Diptera: Gasterophilidae)-Case Report.
Journal of arthropod-borne diseases    January 6, 2016   Volume 10, Issue 3 421-423 
Ganjali M, Keighobadi M.Myiasis is the infection caused by a variety of dipterous (fly) larvae in vertebrate's tissue (man and domestic or wild animals). Species of Gasterophilus are obligate parasite of horses, donkeys, zebras, elephants and rhinoceroses. There are records worldwide, but mostly, in tropical and subtropical regions. This case report describes a type of gastric myiasis caused by G. intestinalis in an old lion in a zoo in Sistan, southeast Iran. Myiasis in lions is rarely reported and this is the first report of gastric myiasis in lion.
The incidence and species composition of Gasterophilus (Diptera, Gasterophilidae) causing equine myiasis in northern Xinjiang, China.
Veterinary parasitology    January 2, 2016   Volume 217 36-38 doi: 10.1016/j.vetpar.2015.12.028
Liu SH, Li K, Hu DF.A survey was conducted on the detection of the larval Gasterophilus species in 90 equines via necropsy or after administering oral ivermectin in Xinjian, China, from 2008 to 2013. All 90 (100%) equines were infested by larval Gasterophilus, and 3723second instar larvae (L2) and 63,778 third instar larvae (L3) were collected from faecal samples and the digestive tract, a ratio of L2:L3=1:17. Over 84.45% of the animals contained ≤1500 larvae and 7.78% had >2000 larvae. The highest totals of L2 and L 3 larvae in any one animal were 1208 in Mongolian wild ass (Equus hemionus hemionus), 2491 in P...
Diversity and ecology survey of mosquitoes potential vectors in Belgian equestrian farms: A threat prevention of mosquito-borne equine arboviruses.
Preventive veterinary medicine    December 29, 2015   Volume 124 58-68 doi: 10.1016/j.prevetmed.2015.12.013
Boukraa S, de La Grandiere MA, Bawin T, Raharimalala FN, Zimmer JY, Haubruge E, Thiry E, Francis F.Emergence of West Nile Virus was recently recorded in several European countries, which can lead to severe health problems in horse populations. Europe is also at risk of introduction of mosquito-borne equine alphavirus from Americas. Prevention of these arboviruses requires a clear understanding of transmission cycles, especially their vectors. To characterize mosquito fauna, their ecology and identify potential vectors of equine arboviruses in Belgium, entomological surveys of six equestrian farms located in the Wolloon Region were conducted during 2011-2012. The harvest of mosquitoes was ba...
Effect of vacuum packing and temperature on survival and hatching of strongyle eggs in faecal samples.
Veterinary parasitology    December 18, 2015   Volume 217 21-24 doi: 10.1016/j.vetpar.2015.12.014
Sengupta ME, Thapa S, Thamsborg SM, Mejer H.Strongyle eggs of helminths of livestock usually hatch within a few hours or days after deposition with faeces. This poses a problem when faecal sampling is performed in the field. As oxygen is needed for embryonic development, it is recommended to reduce air supply during transport and refrigerate. The present study therefore investigated the combined effect of vacuum packing and temperature on survival of strongyle eggs and their subsequent ability to hatch and develop into L3. Fresh faecal samples were collected from calves infected with Cooperia oncophora, pigs infected with Oesophagostomu...
First record of Megaselia scalaris (LOEW) (DIPTERA: PHORIDAE) infesting a spinose ear tick, Otobius megnini, colony in Sri Lanka.
Tropical biomedicine    December 1, 2015   Volume 32, Issue 4 791-795 
Diyes GCP, Karunaratne WAIP, Tomberlin JK, Rajakaruna RS.Megaselia scalaris (Loew) is a cosmopolitan polyphagous small fly with the ability of exploiting variety of ecological niches. Different life history stages act as detritivore, parasite, and parasitoid of wider spectrum of plant and animal matter under natural and laboratory conditions. Here, for the first time we present the opportunistic parasitism of M. scalaris on Otobius megnini, which act as a vector of Q fever and is capable of causing paralysis, toxic conditions, otoacariasis and otitis in humans and other animals. Tick samples from the ear canals of 14 thoroughbred horses were brought...
Comparison of the larvicidal efficacies of moxidectin or a five-day regimen of fenbendazole in horses harboring cyathostomin populations resistant to the adulticidal dosage of fenbendazole.
Veterinary parasitology    October 21, 2015   Volume 214, Issue 1-2 100-107 doi: 10.1016/j.vetpar.2015.10.003
Reinemeyer CR, Prado JC, Nielsen MK.Despite widespread acknowledgement of cyathostomin resistance to adult icidal dosages of benzimidazole (BZD) anthelmintics, many strongyle control programs continue to feature regularly scheduled larvicidal treatment with fenbendazole (FBZ). However, no studies have been conducted to evaluate the efficacy of larvicidal regimens against encysted cyathostomins in a BZD-resistant (BZD-R) population. A masked, randomized, controlled clinical study was conducted with 18 juvenile horses harboring populations of cyathostomins that were considered BZD-R on the basis of fecal egg count reduction (FECR)...
Local and systemic inflammatory and immunologic reactions to cyathostomin larvicidal therapy in horses.
Veterinary immunology and immunopathology    September 25, 2015   Volume 168, Issue 3-4 203-210 doi: 10.1016/j.vetimm.2015.09.009
Nielsen MK, Loynachan AT, Jacobsen S, Stewart JC, Reinemeyer CR, Horohov DW.Encysted cyathostomin larvae are ubiquitous in grazing horses. Arrested development occurs in this population and can lead to an accumulation of encysted larvae. Large numbers of tissue larvae place the horse at risk for developing larval cyathostominosis. This disease complex is caused by mass emergence of these larvae and is characterized by a generalized acute typhlocolitis and manifests itself as a profuse protein-losing watery diarrhea with a reported case-fatality rate of about 50%. Two anthelmintic formulations have a label claim for larvicidal therapy of these encysted stages; moxidect...
Efficacy of selected anthelmintic drugs against cyathostomins in horses in the federal state of Brandenburg, Germany.
Parasitology research    September 4, 2015   Volume 114, Issue 12 4441-4450 doi: 10.1007/s00436-015-4685-7
Fischer JK, Hinney B, Denwood MJ, Traversa D, von Samson-Himmelstjerna G, Clausen PH.Cyathostomins are currently the most common internal parasites of horses. With the intensive use of anthelmintic drugs over the past decades, resistance of cyathostomins to anthelmintics is becoming a growing problem in many countries. The aim of this study was to assess the current situation on horse farms in the German federal state of Brandenburg. A pre-selected population of horses from 24 premises that had shown a prevalence of cyathostomins higher than the average in a previous study was examined for anthelmintic efficacy. Faecal egg count reduction tests (FECRTs) were performed for iver...
Duddingtonia flagrans in the control of gastrointestinal nematodes of horses.
Experimental parasitology    July 22, 2015   Volume 159 1-4 doi: 10.1016/j.exppara.2015.07.006
Buzatti A, de Paula Santos C, Fernandes MA, Yoshitani UY, Sprenger LK, dos Santos CD, Molento MB.Horses can harbor a large amount of parasites that may cause serious clinical signs even death. The aim of this study was to evaluate the predatory activity of the fungus Duddingtonia flagrans against infective larvae (L3) of gastrointestinal nematodes of horses in fecal culture. The experimental design was completely randomized with three treated groups (G1, G2 and G3) and one control (CG), using eight animals/group. The treated animals received G1: 1.5 × 10(5); G2: 3 × 10(5) and G3: 6 × 10(5) chlamydospores of D. flagrans/kg body weight during 21 days. The fungi preparation was give...