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albiventris (white-eared opossum), and seven were P. frenatus (southern four-eyed opossum). For T. cruzi, 11% were seropositive, and for T. gondii 26% were seropositive. None of the marsupials sampled here were seropositive for N. caninum. Risk factor analysis showed that free-living animals were about five-fold more likely to be infected by T. gondii than were rescued animals. Our study showed the exposure of Neotropical marsupials (D. albiventris and P. frenatus) to protozoan pathogens T. cruzi and T. gondii, while no evidence of N. caninum exposure was found. The set of results presented here may have an effect on ecology and conservation of the studied species and may also indicate possible sentinels of these pathogen circulation.We describe the diagnostics surrounding the deaths of five working dogs over six-months to provide an enhanced clinical and diagnostic understanding of canine Chagas disease. Cases were five dogs with antibodies to Trypanosoma cruzi. Medical records were reviewed for diagnostic history. Testing was performed from samples collected before or immediately after death, including measurement of cardiac troponin I, histology, PCR and serology for Leishmania spp. and T. cruzi. Four dogs had a 2 to 7-year history of T. cruzi antibodies, while one positive dog had an unknown duration of exposure. Age at death ranged from 2 to 11 years and four dogs were actively working. The cardiac troponin I was elevated in all four dogs for which it was measured, although postmortem reference ranges are not established. Histopathologic diagnoses included mild to severe, chronic, lymphoplasmacytic to histiocytic myocarditis with variable fibrosis. Notably, only one dog had T. cruzi amastigotes observed in the heart histologically. T. cruzi DNA was detected in three other hearts. Although all five dogs tested antibody-positive for T. cruzi using three independent tests, all were also indirect fluorescent antibody-positive for Leishmania spp., interpreted as cross-reaction. Chagas disease in dogs is a diagnostic challenge owing to cross-reactions and variable clinical, histologic and molecular presentations. The use and interpretation of multiple diagnostic strategies is useful in diagnosis. This study demonstrates techniques used to diagnose and characterize Chagas disease in an at-risk dog population.Platynosomum fastosum, which is distributed in tropical and subtropical regions, is the main parasite in the biliary system of domestic cats. Cats can be asymptomatic or show severe signs of cholangitis. Although the infection is reported throughout Brazil, only post-mortem studies are available from the Midwest region of the country. This cross-sectional study investigated the frequency of P. fastosum parasitism in domestic cats treated at the University Veterinary Hospital in Cuiabá city, Mato Grosso, Brazil, by three coproparasitological techniques (formalin-ether sedimentation, Faust, and Hoffmann), associating clinical, laboratory (haematological, biochemical) and ultrasonographic alterations. Based on the sample calculation, 171 cats were evaluated in the clinical and laboratory and a semi-structured epidemiological questionnaire was designed and used by the tutors. The prevalence observed was 26.90%, with no significant association with sex, reproductive status, age, hunting habit, access to the street, recent anthelmintic treatment, and the guardian's lack of knowledge regarding parasitism. Of the 171 cats evaluated, 55 (32.16%) showed clinical signs suggestive of cholangitis, with a significant association of this variable. Regarding the clinical and pathological variables, mild neutrophilia and elevated serum activity of alanine amino transferase and alkaline phosphatase was observed (but not significantly), while the mean values of eosinophils, leucocytes, total protein, albumin, and globulin were normal. The ultrasound findings were like those previously described. Thus, it was observed that P. fastosum occurs in moderate prevalence in cats from Cuiabá-MT, with a significant association with clinical signs and a regular agreement between the parasitological techniques employed.Sheep are intermediate hosts of the protozoon Toxoplasma gondii, a zoonotic parasite that that may cause abortion and reproductive losses in this species. MRT67307 Previous studies have shown that its prevalence is high in sheep herds in Brazil, but no information from the state of Espírito Santo was available. The aim of this study was to improve the epidemiological data in different regions of this state by analyzing occurrences of anti-T. gondii antibodies in young female sheep, before reproductive age, using IFAT (cutoff ≥64). In addition, variables relating to these animals and farm management were investigated for significance of associations. A total of 312 sheep, aged 3 to 12 months, on five farms in five municipalities, were sampled. Among these 312 animals, 135 (43.26%) were reactive, and 70 positive sheep (51.8%) presented high titers (more than three times the cutoff).Eight-month-old sheep presented the lowest occurrence and 7 and 11-month-old sheep, the highest. At least one animal was positive in each municipality, thus confirming the endemic status of toxoplasmosis in sheep in this region. None of the variables analyzed, relating to animals and herds, presented any association with T. gondii occurrence (p > 0.05). The number of females that were close to sexual maturity (12 months) and which were reactive to T. gondii was less than 50%. These ewes would probably be more susceptible to reproductive problems.Defence mechanisms of fish can be divided into specific and non-specific that act in concert and are often interdependent. Most fish in both wild and cultured populations are vulnerable to metazoan parasites. Endoparasitic helminths include several species of digeneans, cestodes, nematodes, and acanthocephalans. Although they may occur in large numbers, helminth infections rarely result in fish mortality. Conversely, some ectoparasites cause mass mortality in farmed fish. Given the importance of fish innate immunity, this review addresses non-specific defence mechanisms of fish against metazoan parasites, with emphasis on granulocyte responses involving mast cells, neutrophils, macrophages, rodlet cells, and mucous cells. Metazoan parasites are important disease agents that affect wild and farmed fish and can induce high economic loss and, as pathogen organisms, deserve considerable attention. The paper will provide our light and transmission electron microscopy data on metazoan parasites-fish innate immune and neuroendocrine systems.
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