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Results for “INFECTIOUS ABORTION”
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[The importance and value of agglutination and complement fixation test in the diagnosis of brucellosis in cattle].
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Sulfamethazine and blood transfusion in experimental treatment of bovine brucellosis.
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Vaccination of sexually mature cows with Brucella abortus strain 19 vaccine.
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Aureomycin as a treatment of acute brucellosis of cattle.
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[Diagnosis of brucellosis; relation to a case of Bang's fever].
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Isolation of a strain of infectious bovine rhinotracheitis virus from aborted fetuses.
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ABORTION EXPERIMENTALLY INDUCED IN CATTLE BY INFECTIOUS BOVINE RHINOTRACHEITIS VIRUS.
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Pathology of bovine abortion and newborn calf death caused by dual infection with Chlamydia psittaci and infectious bovine rhinotracheitis virus.
Nine aborted fetuses and one newborn calf, diagnosed as Chlamydia psittaci (C. psittaci) infection, were pathologically examined. The characteristic lesions in the liver were focal necrosis in 9 aborted fetuses and granulomatous necrotic foci in the newborn calf. Moderate numbers of intranuclear inclusion bodies were found in necrotic foci of the liver, spleen, thymus, lymph nodes, adrenal gland, kidney, lung and forestomach. Immunohistologically, a small number of C. psittaci antigens was demonstrated in necrotic foci of the liver and correlated with distribution of elementary bodies. Moderate numbers of infectious bovine rhinotracheitis (IBR) virus antigens were also detected in degenerating and necrotizing parenchymal cells in various organs and correlated with distribution of intranuclear inclusion bodies. Thus, these aborted bovine fetuses and newborn calf were interpreted as being dually infected with C. psittaci and IBR virus during pregnancy.
Diagnosis of ovine chlamydial abortions by PCR-RFLP performed on vaginal swabs.
Ovine enzootic abortion is an infectious and contagious disease clinically characterized by abortion and weak neonates, affecting sheep and goats. The etiological agent is Chlamydophila (C.) abortus, which is considered one of the most common animal pathogens of small ruminants; it has important economic implications and represents a significant zoonotic risk. Clinical diagnosis is often difficult because the clinical signs and the pathological lesions are not specific for C. abortus infection, in fact they can also be observed as a result of infections with other abortifacient agents. Moreover, the involvement of the laboratory is necessary to perform the definitive diagnosis. One hundred and seventeen vaginal swabs from sheep with clinical signs related to chlamydial infection were examined by a PCR-RFLP assay that demonstrated high specifity and sensitivity. Six samples were positive for C. abortus. Vaginal swabs are easy to handle and allow to deal with biohazardous material in safety conditions.
Bovine abortion outbreaks associated with Neospora and other infectious agents.
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Histologic, infectious, and molecular correlates of idiopathic spontaneous abortion and perinatal mortality.
The purpose of this study was to analyze the placental and neonatal tissues in fatal cases for a wide variety of infectious agents and cytokine expression. Placentas and corresponding neonatal tissues in 21 consecutive cases of idiopathic spontaneous abortion or perinatal death, before or within 2 days of birth, were tested for an infectious agent. The controls included 10 consecutive cases of fetal and placental tissues from therapeutic abortions, 5 placentas from unremarkable childbirths, and 11 placentas from cases of spontaneous abortion or perinatal death of known cause (ruptured uterus, placenta abruption, prolapsed cord). An intrauterine infection was noted in 16 of 21 (76%) of the placentas associated with neonatal mortality; in each case, the same infectious agent was found in the neonatal tissues, primarily the spleen. The most common infectious agent was enterovirus/coxsackie virus (10 cases); the histologic findings in the placenta were nonspecific. There was strong expression of TNF-alpha in the placenta and spleen of each of the cases of intrauterine infection and in none of the 26 controls. It is concluded that in utero infection and the associated cytokine up-regulation are responsible for many cases of unexplained fetal and neonatal loss.
Infectious causes of reproductive loss in camelids.
Reproductive losses in camelids are due to infertility, pregnancy loss, udder diseases and neonatal mortality caused by a variety of infectious diseases. Uterine infection and abortion represent the major complaint in camelid veterinary practice. The major infectious organisms in endometritis and metritis are E. coli and Streptococcus equi subspecies zooepidemicus. Abortion rates due to infectious diseases vary from 10% to more than 70% in some areas. Leptospirosis, toxoplasmosis and chlamydiosis have been diagnosed as the major causes of abortion in llamas and alpacas. In camels, brucellosis and trypanosomiasis represent the major causes of infectious abortion in the Middle East and Africa. Mastitis is rare in South American camelids. The prevalence of subclinical udder infection in camels can reach very high proportions in dairy camels. Udder infections are primarily due to Streptococcus agalactiae and Staphylococcus aureus. Neonatal mortality is primarily due to diarrhea following failure of passive transfer and exposure to E. coli, rotavirus, coronavirus, Coccidia and Salmonella. This paper reviews the etio-pathogenesis of these causes of reproductive losses, as well as the major risk factors and strategies to prevent their occurrence.
Immunopathology of Chlamydophila abortus infection in sheep and mice.
Chlamydophila abortus targets the placenta, causing tissue damage, inflammation and abortion (enzootic abortion of ewes). It is one of the main infectious causes of abortion in ewes, resulting in major economic losses to agricultural industries worldwide. Although ruminants and pigs are the principal hosts, humans are also susceptible to infection. Control of disease requires a host inflammatory response, which is likely to contribute to pathology and abortion. Mouse models have been widely used to provide insight into the role of specific immune cells in controlling infection and disease. The use of such model systems for investigating the mechanisms of abortion, latency, persistence, and immunity to reinfection will result in the identification of novel vaccine control strategies for sheep.
[On the hematology and serology of infectious mononucleosis with special reference to the abortive forms and their epidemiology].
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Incidence of ovine abortion by Coxiella burnetii in northern Spain.
The infectious causes of ovine abortion occurring in 148 farms in northern Spain between 1999 and 2003 were investigated. Laboratory analysis included microbiological, serological, pathological and molecular techniques. Border disease was diagnosed in 16% of the flocks, toxoplasmosis in 15%, chlamydiosis in 12%, salmonellosis in 10%, Q fever in 3%, miscellaneous infections in 7% (Yersinia spp., Listeria spp., Brucella spp.), and inflammatory lesions compatible with an infectious cause were seen in 7% of the flock. In an additional 1% of the flocks non-infectious causes were identified, and a diagnosis was not reached in 38% of the flocks. When a PCR retrospective study was carried out to investigate the possible implication of Coxiella burnetii in the cases without diagnosis, including those with inflammatory lesions, the prevalence of this pathogen increased from 3% up to 9% of the flocks, revealing the importance of this zoonotic pathogen as a small-ruminant abortifacient agent. Placenta was the most commonly positive sample, but other fetal tissues were also of value for C. burnetii DNA detection. The present results update information about the situation of abortion in sheep farms in northern Spain, and highlight the relevance of molecular diagnostic tools in routine laboratory analysis of abortions by C. burnetii.
THE VIRUS OF INFECTIOUS BOVINE RHINOTRACHEITIS AS A CAUSE OF ABORTION IN CATTLE.
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Infection after medical abortion: a review of the literature.
Medical abortion regimens have become widely used, but the frequency of infection after medical abortion is not well documented. This systematic review provides data on infectious complications after medical abortion. We searched Medline for articles written before July 2003 to determine the frequency of infection after medical abortion up to 26 weeks of gestation. We reviewed all articles and extracted data on the frequency of infection from 65 studies. The frequency of diagnosed and/or treated infection after medical abortion was very low (0.92%, N = 46,421) and varied among regimens. Results of this review confirm that, with respect to infectious complications, medical abortion is a safe and effective option for first- and second-trimester pregnancy termination. After accounting for regional variations in diagnosis, there is little difference in frequency of infection among the regimens reviewed. Future studies should report clear diagnosis and treatment standards for infection so that more precise information becomes available.