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MR imaging findings in cerebrospinal gnathostomiasis.

Human gnathostomiasis is an infection caused mainly by Gnathostoma spinigerum, a nematode. Infected humans can present with various clinical manifestations. Serology is the criterion standard for diagnosing gnathostomiasis, whereas MR imaging represents a complementary tool for assessing severity and extent of disease. We report two definite cases of gnathostomiasis that were confirmed by the immunoblotting technique. MR imaging of the cervical cords showed cord enlargement and diffuse high signal intensity, mainly of the gray-white matter regions. MR imaging of the brain showed hemorrhagic tract and scattered deep intracerebral hemorrhage with diffuse, fuzzy white matter lesions with nodular enhancement. Severe gnathostomiasis was unresponsive to treatment.

Adolescent↗

Survival of infective larvae of nematode parasites of cattle during drought.

In a study originally designed to determine the seasonal origin of the high levels of availability of nematode larvae to cattle in winter and spring, plots were serially contaminated with eggs of Ostertagia ostertagi and Cooperia oncophora by naturally-infected calves at monthly intervals from February 1980 to September 1980. The availability of infective larvae was monitored by monthly pasture sampling and larval recovery. Because of the intervention of a 15 month drought, recoveries of larvae from the pastures were very low until March 1981 (autumn in Australia) when large numbers of larvae appeared on pastures contaminated in the preceding spring. Examination of dry dung pats at that time showed that significant numbers of larvae were present in pats deposited up to a year previously, and particularly in pats deposited in May, August and September. Following the resumption of normal rainfall in May 1981, larval numbers in pats rapidly declined and concentrations of larvae on the pastures increased to extremely high levels. It is suggested that survival of infective larvae in dry dung pats was enhanced by the drought, with implications for control of nematode infections of cattle, particularly in winter rainfall environments.

Animals↗

Efficacy and safety of selamectin against gastrointestinal nematodes in cats presented as veterinary patients.

A series of randomized, controlled, masked, field (veterinary patient) studies were conducted in the USA and Europe to evaluate the efficacy of selamectin, a novel macrocyclic lactone of the avermectin subclass, in the treatment of naturally acquired gastrointestinal nematode infections in cats. After confirmation of ascarid and/or hookworm infection, 298 cats of various ages and breeds were randomly assigned to treatment with selamectin (n=202) or an existing commercially approved positive-control product (n=96). Unit doses of selamectin (providing a minimum dosage of 6mgkg(-1)) were administered topically to the skin in a single spot at monthly intervals. Quantitative fecal examinations were performed on days 0 (before treatment), 30, and 60. In the selamectin-treated cats, fecal ascarid egg counts were reduced by 99.6 to 100% on day 30, and by 99.9 to 100% on day 60. Fecal hookworm egg counts were reduced by 98.3% on day 30, and by 100% on day 60 in the selamectin-treated cats. The positive-control products achieved reductions in egg counts of 96.5 to 100% (ascarids) and 98.9 to 99.9% (hookworms). These studies have shown that monthly topical administration of selamectin is safe and highly effective in the treatment of naturally acquired ascarid and hookworm infections in cats.

Ancylostomatoidea↗

Conjunctivitis due to Thelazia californiensis.

A patient with chronic conjunctivitis was found to have a parasitic nematode infection of the conjunctiva. The parasite was found within the cul-de-sac of the conjunctiva, entirely motile. The treatment of the conjunctivitis was simple removal of the organism, and periodic follow up.

Adult↗

Controlled dosage titration of febantel paste in naturally parasitized cattle.

A controlled anthelmintic trial was conducted to determine the efficacy of febantel paste (45.5%) at dosages of 2.5, 5.0, 7.5, and 10.0 mg/kg in calves harboring natural gastrointestinal nematode infections. Dosages of 5.0, 7.5 and 10.0 mg of febantel/kg of body weight were greater than 96% effective in removing adults of Haemonchus contortus, Ostertagia spp, Cooperia spp, and Oesophagostomum radiatum. The 2.5 mg/kg dosage was considered suboptimal because of low efficacy against Ostertagia and Cooperia spp. Efficacies against Trichostronglylus axei, Trichuris spp, Bunostomum phlebotomum, and Stronglyloides papillosus were difficult to determine because fewer numbers of these nematodes were recovered. Efficacies of febantel paste against immature bovine parasites ranged from 83.62% to 97.72%.

Animals↗

Efficacy of albendazole against gastrointestinal nematodes of cattle.

Forty-five calves with artificial and pasture-acquired nematode infections were medicated with albendazole at dose levels of 0, 2.5, 5.0, or 10 mg/kg of body weight. A dose level of 2.5 mg/kg removed at least 99% of adult Trichostrongylus axei, Trichostrongylus colubriformis, Cooperia oncophora, and Bunostomum phlebotomum. Burdens of Haemonchus contortus, Strongyloides papillosus, and Ostertagia ostertagi were reduced 79, 88, and 97%, respectively. At a dose level of 5.0 mg/kg, at least 95% of all adult nematodes were removed; at 10 mg/kg, at least 97% were removed. At least 99% of 4th-stage larvae of O ostertagi, T axei, C oncophora and T colubriformis and 96% of H contortus were expelled at a dose level of 2.5 mg/kg. At 5.0 and 10 mg/kg, 99 to 100% of all species of larvae were removed. Trichuris spp adults were slightly susceptible at all dose levels; larvae were susceptible (83%) only at 10 mg/kg.

Animals↗

Critical evaluation of oxfendazole as a swine anthelmintic.

Sixty feeder pigs with mixed naturally acquired nematode infections were medicated with oxfendazole, a new benzimidazolecarbamate compound, at dose levels of 0, 3, 9, and 18 mg/kg of body weight. The dosage of 3.0 mg/kg administered once in the feed proved as efficacious as larger dosages and the same dosage administered 2 or 3 times in the removal of adult Ascaris suum, Oesophagostomum dentatum, and Metastrongylus pudendotectus. Trichuris suis adults were less susceptible. Anthelmintic efficacy was based upon comparative nematode egg counts, appearance of eggs, and recovered nematode burdens at necropsy. Signs of toxicosis were not seen in pigs given any one of the medicated feed schedules.

Animals↗

Contracaecum sp. infection in Hoplias malabaricus (moncholo) from rivers and marshes of Colombia.

Nematode infection indices were recorded in Hoplias malabaricus captured in six different rivers and a marsh belonging to the North Coast Basin of Colombia, and from the Amazon River, during February 2003-December 2004. Preliminary morphological analysis of nematodes indicated the presence of Contracaecum sp. Parasites were mostly found in the intestinal mesenteries and a very low percentage in muscle. Parasite prevalence in all sampling locations at the north of Colombia was 100%, whereas in the Amazon River it was 6.12%. The mean intensity in the different stations were as follows: Magdalena River at the City of Magangué (58.92+/-7.59), Magdalena river at the city of Zambrano (128.9+/-7.08), Sinú River (53.88+/-4.92), Dique Channel (207.3+/-59.52), Cauca River (77.26+/-9.35), Atrato River (21.11+/-2.6), San Jorge River (39.5+/-7.13), and Totumo Marsh (62.5+/-6.38). In average, all specimens of Hoplias malabaricus from the north coast basin of Colombia were infected with a mean intensity of 77.82+/-4.81 (1-466 parasites per host) whereas in fish from the Amazon River this value was significantly lower (intensity 1.0+/-0.0). Size and weight correlated significantly with parasite intensity in fish collected from sampling locations at the north of Colombia (R=0.240, P<0.001 and R=0.199, P=0.008, respectively). Moreover, a significant, but low and negative correlation was found between condition factor and parasite intensity (R=-0.159, P=0.034), suggesting a possible impact of parasites on fish health. These results suggest, for the first time, that the parasitism in Moncholo is a widespread phenomenon in Colombian rivers and could represent a risk factor for human consumers.

Animals↗

Therapeutic and protective efficacy of doramectin injectable against gastrointestinal nematodes in cattle in New Zealand: a comparison with moxidectin and ivermectin pour-on formulations.

Two similar studies were conducted in New Zealand to compare the therapeutic and persistent activity of doramectin injectable, moxidectin pour-on, ivermectin pour-on and oxfendazole oral drench when administered to nematode-infected cattle which were then grazed on common pastures. On day 0 (treatment day), 40 cattle were weighed, faecal sampled and allocated on the basis of day--3 faecal egg counts (FEC) to four treatment groups. Cattle were then treated with either doramectin by subcutaneous (s.c.) injection, moxidectin and ivermectin by topical application, or oxfendazole orally using label-recommended dosages. Oxfendazole treatment served primarily as a control to monitor reinfection without persistent activity. Faecal samples for nematode egg counts and coprocultures for larval differentiation were collected six times between day 0 and day 56 and all cattle were reweighed on day 56. Doramectin reduced pretreatment FEC by 99.1% in the first study and by 100% in the second study when assessed at 14 days posttreatment. Corresponding reductions for moxidectin were 80.8% and 85.2%, for ivermectin 86.0% and 80% and oxfendazole 78.3% and 100%, respectively. Posttreatment rise in FEC indicated that reinfection of moxidectin-treated animals occurred at the same time as oxfendazole controls in both trials. Posttreatment rise in FEC with ivermectin pour-on was similar to moxidectin and oxfendazole in one study, but in the other study ivermectin pour-on delayed the rise by 14-21 days. The rise in FEC for doramectin was delayed for 14-21 days in one study and at least 21 days in the other. The better parasite control provided by doramectin resulted in greater weight gains for cattle over the 56-day period as compared to moxidectin pour-on, ivermectin pour-on and oxfendazole in both trials. Gains of doramectin treated cattle were significantly (p < 0.05) greater than those of ivermectin and moxidectin groups in one trial and the oxfendazole group only in the other.

Administration, Oral↗

Use of reseeded pastures as an aid in the control of gastrointestinal nematodes.

The degree of nematode infectivity of a previously contaminated pasture which was reseeded after harvesting of a soya bean crop was determined by use of four tracer lambs and four tracer calves. The eight tracers were put to graze for 14 days and housed for another 14 days before being slaughtered, when faeces and the intestinal tracts were examined for worm eggs and parasites. With the exception of one animal, which was found to be harbouring 20 Cooperia punctata, the tracers had no adult or immature nematodes. The implications of the use of such pastures are discussed in relation to their possible role in parasite control and anthelmintic resistance in Brazil.

Animals↗

Evaluation of less than recommended dosages of levamisole phosphate for the treatment of gastrointestinal nematodes of cattle.

The anthelmintic activity of 3 dosages of injectable levamisole phosphate was evaluated in 84- to 145-kg calves from a herd of cattle with a history of heavy gastrointestinal nematode infections. Trichostrongylid egg counts in the calves varied from 450 to 700/g of feces. The anthelmintic was administered subcutaneously to 3 groups of 10 calves each, at the rate of 8 mg/kg of body weight (current manufacturer's recommendation), 6 mg/kg, and 4 mg/kg. A 4th group of 10 calves was utilized as untreated control calves. At necropsy, comparison of worm burdens between treated and untreated calves indicated apparent reductions (at 8 mg/kg, 6 mg/kg, and 4 mg/kg, respectively) for the various nematodes to be: Haemonchus placei adults-99.9, 100, and 98.3%; H placei L4-91.0, 94.0, 98.0%; O ostertagia late L4-93.8, 86.7, and 96.3%; Trichostrongylus axei adults-99.1, 100, and 100%; Cooperia spp adults-99.8, 99.5, and 99.5%; and Oesophagostomum radiatum adults-100, 100, and 100%. Statistical evaluation, by one-way analysis of variance, of the mean number of each species recovered showed significant (P less than 0.05) differences in the worm burdens between treated and untreated calves, but differences in efficacy between any 2 of the 3 drug dosages were not significant.

Animals↗

Accelerated rejection of Nematospiroides dubius intestinal worms in mice sensitized with adult worms.

After oral administration of infective third stage larvae (L3) of Nematospiroides dubius to young mice, intestinal worms persist for many weeks. However, in mice injected parenterally with N. dubius adult worms, the intraluminal intestinal infection arising after L3 administration can be terminated within 3 to 4 weeks. This accelerated rejection is seen in sensitized BALB/c mice (and (CBA/H X BALB/c)F1 mice) and in particular females, but has not been demonstrated in sensitized CBA/H mice. In female BALB/c mice, small numbers of living worms are more effective at sensitization than dead worms, intraperitoneal and subcutaneous implantations are both effective, and products from adult worms incubated in vitro (i.e. "excretory/secretory" (ES) products) will sensitize but only with very high doses in adjuvant. Using appropriate isolated antigen preparations, comparative immunoparasitological analyses in different mice should provide clues on the nature of host-protective immunities against intestinal nematode infections which are potentially chronic. From the present studies, two groups which differ most dramatically in the consequences of adult worm sensitization are young male CBA/H versus older female BALB/c mice.

Animals↗

[Internal parasites of cattle in select Western Pomerania farms].

Internal parasites of cattle in select Western Pomerania farms. The studies were carried out in five farms, on 84 calves and 153 cows. The prevalence and intensity of the Coccidia and gastro-intestinal nematodes infection were determined by means of the Willis-Schlaafs and McMaster's methods. The Coccidia composition in the examined animals was determined by morphological features of the oocysts and the sporulation time. The following four Eimeria species were isolated: E. bovis, E. aubernensis, E. zürni and E. ellipsoidalis. Two methods were used for detection of Cryptosporidium sp. - the Ziehl-Neelsen staining technique and coproantigen test. In cows, the overall prevalence was Eimeria sp. ranged from 5.5 to 23.4%, gastro-intestinal nematodes ranged from 12.7 to 42.6%. In calves, the overall prevalence Eimeria sp. was ranged from 10.0 to 36.8% oocysts and Cryptosporidium sp. 22.8%.

Animal Husbandry↗

The evolution and maintenance of polymorphism in the major histocompatibility complex.

Lambs with the G2 allele at the ovine major histocompatibility complex (mhc) class II locus DRB1 has previously been shown to have lower faecal nematode egg counts than lambs with the I allele at this locus. This association has been confirmed in separate cohorts from the same farm. Other alleles within the mhc have also shown associations with nematode resistance in other breeds of sheep. Therefore, variation in the mhc is responsible for part of the observed genetic variation in resistance to nematode infection. In addition to the specific effect of particular alleles, heterozygotes are also more resistant than homozygotes. This heterozygote advantage is capable of maintaining the high levels of polymorphism observed within the mhc.

Alleles↗

Control of internal parasites in dairy replacement heifers by two treatments in the spring.

Eleven dairy replacement heifers (mean body weight, 262.0 kg) were given two treatments with levamisole in the spring to reduce worm egg output and consequent pasture contamination with infective nematode larvae during the summer/autumn grazing season. The treatments were given 3 weeks and 76 weeks after the heifers were moved from confinement to permanent pastures in may 1979, at which time they were 5 to 12 months old. Treated heifers gained significantly (P < 0.01) more weight than a group of 11 control heifers (mean body weight, 262.4 kg) and outweighed them by mean values of 9.2, 19.7, 31.0, and 39.5 kg at the end of July, August, September, and October, respectively. Control heifers had highest egg counts (47-51 eggs/g) from July to September, but there was a 2-month delay before treated heifers attained peak concentrations (42 eggs/g). This delay occurred at a critical time of the year (July, August), when environmental conditions were favorable for the rapid development of eggs to infective larvae. When the egg count for treated heifers peaked at the end of September, environmental conditions were no longer favorable for optimal development of free-living stages.

Animals↗

Dermal responses to Ostertagia ostertagi in Ostertagia ostertagi- and Cooperia punctata-inoculated calves.

Calves harboring patent Ostertagia ostertagi or Cooperia punctata were given intradermal injections of O ostertagi 3rd-stage larval antigen. The initial injections were followed 30 days later by a 2nd series of injections. Skin thickness was measured at injection sites for 72 hours after injection. Selected injection sites including saline solution control sites were biopsied at 30 minutes, at 3, 24, 48, and 72 hours, and at 30 days after injection. After the 1st series of injections, there was a clear distinction in dermal reactions between O ostertagi-inoculated calves and C punctata-inoculated calves; after 24 hours, reactions were not seen in the C punctata-inoculated calves. Marked dermal reactions occurred in the O ostertagi-inoculated calves. The reactions at 30 minutes and 3 hours were characterized by slight-to-extensive infiltration of neutrophils and dermal edema. The 24-hour cellular reaction was principally due to neutrophil and eosinophil infiltration with edema and necrosis. Reactions at 48 to 72 hours were due to eosinophils and perivascular accumulations of macrophages and lymphocytes. Necrosis, neutrophils, and edema were present in foci where fragments of nematodes were located. On reinjection, a clear distinction in dermal reactions between calves was not seen based on the type of nematode infection. Thirty days after dermal inoculation, large nodules developed at the site of the initial antigen injection. The nodules were characterized by marked intradermal proliferation of lymphocytes in a follicular pattern with occasional macrophages and rare multinucleated giant cells.

Animals↗

Kinetics of expulsion of the nematode, Nippostrongylus brasiliensis, in mast-cell deficient W/WV mice.

Mucosal mast-cell hyperplasia is frequently observed in intestinal nematode infections and it has been suggested that mast-cell responses to parasite antigens are involved in worm expulsion (self cure). To evaluate the importance of this mechanism, the course of infection and expulsion of Nippostrongylus brasiliensis was compared in mast-cell deficient W/WV and normal (+/+) mice. Initial infectivity rates were similar, but the subsequent kinetics of expulsion of adult worms differed principally in that the onset of expulsion in mast-cell deficient mice appeared to occur 24-36 h later than that in normal mice. Expulsion was complete by the 14th day post infection in both W/WV and normal mice. Worm fertility (as estimated by faecal egg output) also differed in W/WV and normal mice, with maximal egg output in W/WV mice occurring 24 h later than that in normal mice. Although a few mast cells were present in the intestinal mucosa and tongue of W/WV mice, their numbers did not change during the course of infection with N. brasiliensis. In contrast, worm expulsion in normal mice was associated with a moderate increase in numbers of intestinal mast cells, commencing at the onset of expulsion and peaking several days after expulsion was completed.

Animals↗