PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “LEPTOSPIRA CANICOLA”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 109 records · Page 6Linked to original sources

[Weil's disease and necrotizing herpes pneumonia as the cause of death of a 39-year-old sewage drain worker].

Acute leptospirosis in Europe (Weil's disease) is a rare and in more than 90% of the cases undiagnosed febrile, self-limited disease. We report the case of a 39-year-old sewerage worker, who was admitted to our hospital with fever, jaundice, pain in his calves and acute renal failure. Serology revealed elevated antibody titers against Leptospira canicola, L. icterhaemorrhagica and L. sejroe. The patient developed disseminated intravascular coagulation (DIC) with diffuse gastrointestinal bleeding due to thrombocytopenia. The ECG showed atrial fibrillation with irregularly irregular rhythm. Cardiac arrest developed, most likely due to hypoxia, with a drop in the blood pressure. Despite immediate resuscitation efforts the patient developed severe hypoxic brain damage and died a few days later. Autopsy disclosed histologic signs of a generalized leptospiral infection, signs of shock and within the lungs a necrotizing herpes simplex virus pneumonia causing the death of the patient. The virus pneumonia most probably was caused by retrograde canalicular dissemination of oral secretions since herpetic tracheitis and esophagitis were found and herpetic lesions were readily identified on the lips and tongue. A medical opinion asked for by the professional association having liability for occupational safety and insurance was given, the disease being recognized as an occupational disease.

Adult↗

Enhancement of glutamic-pyruvic transaminase activity in leptospirae by addition of rabbit serum.

Glutamic-pyruvic transaminase (GPT) in leptospirae was shown to have an optimal temperature of 30 C and pH 8.0. It was activated by cofactor pyridoxal phosphate, similar to GPT from other sources. However, GPT in all leptospirae, such as Leptospira canicola, L. icterohaemorrhagiae, L. autumnalis, and L. biflexa, evidently had less activity even when pyridoxal phosphate was present, in comparison with the cultivable spirochete Reiter treponeme and Streptococcus faecalis. The low level of activity of leptospiral GPT was enhanced more than 2.5-fold by the addition of about 10% rabbit serum, whereas GPT of S. faecalis did not show such enhancement. Enhancement of leptospiral GPT was greater with rabbit serum than with bovine or horse serum.

Journal Article↗

DIFFERENTIATION OF PATHOGENIC AND SAPROPHYTIC LEPTOSPIRES WITH 8-AZAGUANINE.

Johnson, Russell C. (University of Minnesota, Minneapolis), and Palmer Rogers. Differentiation of pathogenic and saprophytic leptospires with 8-azaguanine. J. Bacteriol. 88:1618-1623. 1964.-The use of the purine analogue, 8-azaguanine, as a differential agent for the separation of pathogenic and saprophytic leptospires was investigated. Growth of strains of the saprophyte Leptospira biflexa was almost insensitive to the bacteriostatic action of 8-azaguanine at concentrations varying from 25 to 600 mug/ml; these saprophytic leptospires were serially transferred five times in media containing 225 mug without any change in growth rate or cell yield. In contrast, decreased growth rate and cell yield of the pathogenic serotypes were observed with 25 to 50 mug/ml of 8-azaguanine. Complete inhibition of growth occurred at concentrations of 100 mug/ml and above. A medium containing 225 mug/ml of 8-azaguanine was successfully used to differentiate 20 serotypes of pathogenic leptospires and 10 saprophytic strains. L. andaman CH11, L. semarang Veldrat S1 73, and L. andaman Correa, were classified with the L. biflexa strains on the basis of their growth response to 8-azaguanine.

Antimetabolites↗

Safety of a modified-live combination vaccine against respiratory and reproductive diseases in pregnant cows.

A combination vaccine (Bovi-Shield FP4 + L5, Pfizer Animal Health) containing modified-live virus (MLV) components against bovine herpesvirus-1 (BHV-1), bovine viral diarrhea virus BVDV), parainfluenza virus-3 (PI3), bovine respiratory syncytial virus (BRSV), and inactivated cultures of Leptospira canicola, grippotyphosa, hardjo, icterohaemorrhagiae, and pomona was evaluated for safety in pregnant beef and dairy animals. Heifers vaccinated prebreeding with the minimum immunizing dose (lowest antigen level initiating immunizing effects) of the vaccine's MLV BHV-1 or BVDV components and during pregnancy (approximately 200 days of gestation) with vaccine containing 10x doses of the same BHV-1 and BVDV components delivered live, healthy calves that were determined to be serologically negative (titer less than 1:2) for neutralizing antibodies to BHV-1 and BVDV prior to nursing. Additionally, in three field safety studies, previously vaccinated cows and heifers that received a field dose (vaccine containing antigen levels required for commercial sale of the MLV combination vaccine during either the first, second, or third trimester of pregnancy had abortion rates similar to those of pregnant cows and heifers vaccinated during the same stage of pregnancy with sterile water diluent.

Animals↗

[Severe leptospirosis. Description of a series of 10 cases].

Clinical aspects of 10 consecutive patients hospitalized for acute human leptospirosis, confirmed by serology using the microscopic agglutination test (MAT), between 1975 and 1988 in a 1000 beds Teaching Hospital are retrospectively analyzed. All of them were male, mean age of 55, presenting a suggestive epidemiological data to be at risk for Leptospira infection. Leptospira icterohaemorrhagiae was responsible for 8 cases and Leptospira canicola for 2. 7 patients were treated, after 3-4 days of admittance, with penicillin. 5 patients died. Cause of death was gastrointestinal haemorrhage in 3 and cardiogenic shock in 2. We discuss the clinical, biochemical, pathological and therapeutic aspects of the acute human leptospirosis.

Aged↗

The hemorrhagic fevers of Southern Africa with special reference to studies in the South African Institute for Medical Research.

In this review of studies on the hemorrhagic fevers of Southern Africa carried out in the South African Institute for Medical Research, attention has been called to occurrence of meningococcal septicemia in recruits to the mining industry and South African Army, to cases of staphylococcal and streptococcal septicemia with hemorrhagic manifestations, and to the occurrence of plague which, in its septicemic form, may cause a hemorrhagic state. "Onyalai," a bleeding disease in tropical Africa, often fatal, was related to profound thrombocytopenia possibly following administration of toxic witch doctor medicine. Spirochetal diseases, and rickettsial diseases in their severe forms, are often manifested with hemorrhagic complications. Of enterovirus infections, Coxsackie B viruses occasionally caused severe hepatitis associated with bleeding, especially in newborn babies. Cases of hemorrhagic fever presenting in February-March, 1975 are described. The first outbreak was due to Marburg virus disease and the second, which included seven fatal cases, was caused by Rift Valley fever virus. In recent cases of hemorrhagic fever a variety of infective organisms have been incriminated including bacterial infections, rickettsial diseases, and virus diseases, including Herpesvirus hominis; in one patient, the hemorrhagic state was related to rubella. A boy who died in a hemorrhagic state was found to have Congo fever; another patient who died of severe bleeding from the lungs was infected with Leptospira canicola, and two patients who developed a hemorrhagic state after a safari trip in Northern Botswana were infected with Trypanosoma rhodesiense. An illness manifested by high fever and melena developed in a young man after a visit to Zimbabwe; the patient was found to have both malaria and Marburg virus disease.

Adult↗

[Human diseases caused by leptospirae of the canicola serogroup in the Krasnodar Territory].

During the period of 34 years (1957-1990) diseases caused by leptospires of the serogroup canicola were confirmed in 2.7% of the total number of patients. The analysis revealed that in the presence of epidemic outbreaks Leptospira infection caused by bacteria of the serogroup canicola occurred 1.7 times more often than at the time when such outbreaks were absent. Periodic increases of leptospirosis caused by this serogroup were registered in individual towns and regions of the territory in different years. The analysis of 33 medical histories made it possible to state that the clinical manifestations of leptospirosis caused by bacteria of the serogroup canicola were characteristic of Leptospira infections caused not only by this serovar. As a rule, this kind of leptospirosis was registered in rural and urban areas as individual isolated cases.

Adult↗

Chemical and biological properties of endotoxin from Leptospira interrogans serovars canicola and icterohaemorrhagiae.

1. Endotoxin-like activity was extracted with phenol-chloroform-petroleum either (PCP) from Leptospira interrogans serovars icterohaemorrhagiae and canicola. Chemical analysis of leptospiral cells obtained from the PCP extract indicated the following distribution of lipopolysaccharide (LPS), protein and polysaccharide in mg/ml: 3.0, 4.5 and 1.0 for icterohaemorrhagiae and 3.3, 5.6 and 1.5 for canicola. 2. The preparations presented several biological activities: positive Limulus test (1.0 pg/ml) for icterohaemorrhagiae and canicola PCP extract and 0.5 pg/ml for E. coli O111:B4 LPS, lethality for chicken embryos (LD50 45, 25 and 1.0) for icterohaemorrhagiae, canicola and E. coli O111:B4 LPS, pyrogenicity in rabbits with an average increase in rectal temperature of 0.6 degrees C, 0.9 degrees C and 2.2 degrees C for canicola, icterohaemorrhagiae and E. coli O111:B4 LPS, reacted with complement inhibiting the lysis of sheep red blood cells, 62%, 75% and 90% for 2.0 micrograms/ml of icterohaemorrhagiae, canicola PCP extract and E. coli O111:B4 LPS. The PCP extract showed no cytotoxicity on chicken embryo fibroblasts and epithelial cells. 3. These results demonstrate that Leptospira endotoxin activity is similar to E. coli O111:B4 lipopolysaccharide.

Animals↗

Immunoreactive outer membrane proteins of Leptospira interrogans serovar Canicola strain Hond Utrecht IV.

BACKGROUND & OBJECTIVES: Leptospirosis is a severe and complex zoonotic disease prevalent in many countries including India. Current leptospiral research is focussed on the identification of the outer membrane proteins (OMPs) of the organism that could be used in developing diagnostic assays for leptospirosis. METHODS: The Leptospira interrogans serovar Canicola was grown in EMJH medium and the cells were subjected to sarcosyl detergent treatment. The sarcosyl soluble (SS) and sarcosyl insoluble (SI) fractions were analyzed by SDS-PAGE and immunoblotting to deduce their protein profile and identifying various immunodominant antigens. RESULTS: The protein profile of SS fractions indicated the presence of three major bands of 41, 32 and 25 kDa and minor bands of 85 and 46 kDa. The SI fraction in serovar Canicola revealed the presence of 112, 93, 77, 43, 36, 29 and 22.5 kDa as major bands and minor bands of 102 and 53 kDa. In immunoblotting, the SS proteins of 41, 32 and 25 kDa and SI proteins of 112, 77, 36 and 22.5 kDa were detected to be major immunogenic proteins. INTERPRETATION & CONCLUSION: In our study immunogenic proteins were extracted from SS and SI fractions and OMPs were similar to those reported in other pathogenic Leptospira strains. These OMPs being unique to all the pathogenic leptospires, can be targeted for diagnostic purpose. Further analysis of the cellular location and expression of leptospiral proteins will be useful in the annotation of genomic sequence data and in providing insight into the biology of Leptospira cells.

Animals↗