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[Bartonella infection].

Bartonella species have been recently recognized as an important human pathogen associated with a wide spectrum of diseases. Four members of the genus are known to cause human infection: Bartonella baciliformis, B. henselae, B. quintana and B. elizabethae. B. baciliformis, the first identified Bartonella species, is the agent of two disease entities, Oroya fever and verruga peruana., B. henselae and B. quintana are two species involved in producing bacteremic syndromes (relapsing fever, trench fever, endocarditis), chronic lymphadenopathy in immunocompetent patients (cat-scrath disease) and chronic vascular lesions in immunocompromised hosts (bacillary angiomatosis and bacillary peliosis hepatis-recognized as new opportunistic infections in HIV-infected patients).

Animals↗

Laboratory diagnosis of Bartonella infections.

Bartonella species are pathogens of emerging and reemerging significance, causing a wide array of clinical syndromes. In North America and Europe, they are increasingly recognized as a cause of culture negative endocarditis, neuroretinitis, and disease among homeless, HIV-infected, and other immunosuppressed individuals. In South America, bartonellosis continues to plague those in endemic regions and poses a significant threat to travelers in these areas. As the clinician is increasingly faced with these illnesses, which may be difficult to diagnose, laboratory techniques to confirm or refute the diagnosis are becoming increasingly important. Culture methods have improved over the past decade demonstrating increased sensitivity, but still require prolonged periods before isolation of the organism. Specimen handling, media selection, and growth conditions all may affect results and must be optimized in order to provide the highest likelihood of recovering the organism. Pure culture of the bacteria not only provides morphologic information, but also provides material for further diagnostic testing. Work with liquid media, which may provide a more rapid means of cultivation has shown some promise and should continue to be pursued. Improved blood culture techniques were a primary factor in the discovery of Bartonella endocarditis and continued improvements will likely demonstrate further clinical insights. Serologic testing for B henselae infections has become the cornerstone of clinical diagnosis, replacing the skin test that was poorly standardized and posed a potential risk to the patient. Immunofluorescence assays have been well characterized and validated in clinical trials, however they are not universally available. Vero cell cocultivated antigens appear to provide higher sensitivity and specificity when compared with agar-derived antigens. IFA assays are inherently difficult to perform, requiring significant expertise to provide reproducible results. On the contrary, enzyme immunoassays offer ease of use and a high level of reproducibility, however ideal antigens for use in the diagnosis of Bartonella infections have not been clearly identified. Continued work to define antigenic targets of the human response to infection and incorporation of these into a widely available EIA will provide a cost-effective tool for the clinician and epidemiologist alike. Due to the close phylogenetic relationship of B henselae and B quintana, differentiation between these species by serologic means may prove difficult. Molecular techniques including PCR offer high sensitivity and specificity, rapid availability of information, and the ability to differentiate Bartonella organisms at the highest level. Results of studies to date are promising and as methods are refined it will be important to conduct clinical studies to define the role of these assays. In disseminated Bartonella infections such as bacillary angiomatosis, peliosis, endocarditis, and urban trench fever, PCR currently offers the ability to establish the diagnosis when other tests may be unrevealing. For CSD, this technique should be used as a confirmatory technique when the diagnosis is unclear by other means. PCR analysis of blood specimens offers a minimally invasive approach to diagnosis, but clinical data are scarce and further studies are needed. As DNA microarrays move into the clinical arena, specific hybridization probes may allow improved identification and differentiation of Bartonellae at the molecular level.

Antibodies, Bacterial↗

Bartonella infections: diverse and elusive.

Children with young cats, HIV-infected patients with low CD4 counts, and lice-infested homeless people are among those with an increased risk. Clinical presentation varies with the infecting Bartonella species and the host. Treatment for cat-scratch disease is supportive; macrolide therapy is an appropriate choice for other Bartonella infections.

AIDS-Related Opportunistic Infections↗

Prevalence of Bartonella infection among human immunodeficiency virus-infected patients with fever.

Bartonella infection can be difficult to diagnose, especially when it manifests as bacteremia, which is usually accompanied by nonspecific symptoms, such as fever. Therefore, we hypothesized that Bartonella infection represents an underrecognized cause of febrile illness. To determine the prevalence of Bartonella infection among patients presenting with fever, we evaluated 382 patients in San Francisco. Overall, 68 patients (18%) had evidence of Bartonella infection detected by culture, indirect fluorescent antibody testing, or polymerase chain reaction (PCR). Twelve patients (3%) had either Bartonella henselae or Bartonella quintana isolated from specimens of blood, tissue, or both or had DNA detected in tissue; all 12 had concomitant human immunodeficiency virus (HIV) infection. Bartonella antibodies were detected in 17% of febrile patients, including 75% of culture-positive or PCR-positive patients. In a nested, matched case-control study aimed at identifying clinical features of febrile illness associated with Bartonella infection, only bacillary angiomatosis and elevated alkaline phosphatase levels were associated with Bartonella infection (P< or =.03 for both). The prevalence of Bartonella infection among patients with late-stage HIV infection and unexplained fever is much greater than has previously been documented.

AIDS-Related Opportunistic Infections↗

Granulomatous hepatitis and necrotizing splenitis due to Bartonella henselae in a patient with cancer: case report and review of hepatosplenic manifestations of bartonella infection.

Bacillary angiomatosis and the related disorders of bacillary peliosis hepatis and bacillary splenitis are manifestations of infection with Bartonella henselae and Bartonella quintana in immunocompromised persons. B. henselae infection, but not B. quintana infection, is linked to contact with cats and is presumed to cause visceral cat-scratch disease. We reports a case of visceral infection by B. henselae in an adult patient with cancer who was receiving chemotherapy and had had no contact with a cat or dog. The patient--whose illness was eventually diagnosed on the basis of findings of histologic, polymerase chain reaction, and serological studies--was treated with doxycycline and rifampin, and the infection resolved. In addition, 41 cases of documented or suspected bartonella infection of the liver, spleen, or both in immunocompetent or immunocompromised hosts are reviewed.

Antineoplastic Agents↗

[Bartonella infection in humans].

BARTONELLA BACILLIFORMIS: Among the 3 species of Bartonella known to be human pathogens, B. bacilliformis causes Carriun's disease, which manifests an acute phase (Oroya fever) and a chronic phase marked by benign skin eruption with wart like macules of vascular origin. Until 1993, B. bacilliformis was considered to be the only species in Bartonella genus. In 1993, species formally in the Rochalimaea genus were designated as Bartonella species. BARTONELLA QUINTANA: This species causes trench fever. It is also the causal agent in cases of bacillary angiomatosis, septicemia, endocarditis with negative blood cultures, and chronic nodal infections, particularly in immunosuppressed patients. Trench fever is transmitted by body lice and is becoming more prevalent, particularly in the homeless. BARTONELLA HENSELAE: This agent causes bacillary angiomatosis, visceral peliosis, septicemia, endocarditis and cat-scratch disease. Transmitted by cats, and perhaps by lice, cat-scratch disease is one of the most frequent zoonoses. OTHER SPECIES: The spectrum of Bartonella infections has continued to widen these last 5 years. The role of B. elizabethae and C. clarridgeiae as human pathogens remains to be defined [abstract corrected]

Bartonella Infections↗

Disseminated Bartonella infection with granulomatous hepatitis in a liver transplant recipient.

Disseminated infection with Bartonella spp with granulomatous hepatitis was diagnosed in a liver transplant recipient presenting with fever of unknown origin. Pathological findings on liver biopsy were atypical, with scant granulomas seen only after a second biopsy. The patient responded promptly to antibiotic therapy. Infections caused by Bartonella spp should be considered in transplant recipients with fever of unknown origin.

Adult↗

Culture-negative endocarditis: contribution of bartonella infections.

Two cases of bartonella endocarditis are described: one in a 55 year old homeless alcoholic man, caused by Bartonella quintana; the other in a 41 year old male with a history of exposure to cat fleas, caused by B henselae. Serological testing and polymerase chain reaction of the excised valves were used to identify the organisms. False positive serology for chlamydia was detected in one case.

Adult↗

Bartonella infections and HIV disease.

Successful assessment and treatment of Bartonella in HIV-seropositive people depends on nursing's fundamental role in the management of these bacterial infections. Bartonella species are responsible for a variety of infections, including cat scratch disease and bacillary angiomatosis, which can be debilitating to people living with AIDS. This paper provides an overview of the clinical presentation and nursing management of Bartonella infection in PLWAs. The author discusses common diagnostic procedures, treatment strategies, and the nurse's role in caring for patients with a Bartonella infection.

Adult↗

Image cytometry and topographical analysis of proliferation of endothelial cells in vitro during Bartonella (Rochalimaea) infection.

Bartonella quintana and Bartonella henselae are clinically associated with proliferative neovascular lesions. The effect of Bartonella infection on human endothelial cells was evaluated in vitro by quantitative image analysis. Particular emphasis is placed on reporting the methodologies employed. Human umbilical vein endothelial cells were infected in vitro with the two Bartonella species. Cell proliferation (cell density), cell morphology (cell surface, form and elongation factors) and spatial reorganization (global topographical analysis and hierarchical cluster detection) were monitored over a 3-day period of infection. Firstly, infection stimulated endothelial cell proliferation. Secondly, infection induced obvious morphological changes; infected cells became larger, more elongated and spindle-shaped. Cytoskeletal reorganization was confirmed by staining of F actin. Thirdly, infection altered the spatial organization of cells within the monolayer; this could not have been due solely to the morphological modifications they experienced. This model demonstrates that Bartonella infection provoked endothelial cell proliferation, topographical rearrangements and morphological changes because of modifications of the cytoskeleton. These experimental findings provide a physiopathological explanation to the abnormal angiogenesis observed in bacillary angiomatosis.

Bartonella↗

Prevalence of Bartonella infection in wild African lions (Panthera leo) and cheetahs (Acinonyx jubatus).

Bartonella species are emerging pathogens that have been isolated worldwide from humans and other mammals. Our objective was to estimate the prevalence of Bartonella infection in free-ranging African lions (Panthera leo) and cheetahs (Acinonyx jubatus). Blood and/or serum samples were collected from a convenience sample of 113 lions and 74 cheetahs captured in Africa between 1982 and 2002. Whole blood samples available from 58 of the lions and 17 of the cheetahs were cultured for evidence of Bartonella spp., and whole blood from 54 of the 58 lions and 73 of the 74 cheetahs tested for the presence of Bartonella DNA by TaqMan PCR. Serum samples from the 113 lions and 74 cheetahs were tested for the presence of antibodies against Bartonella henselae using an immunofluorescence assay. Three (5.2%) of the 58 lions and one (5.9%) of the 17 cheetahs were bacteremic. Two lions were infected with B. henselae, based on PCR/RFLP of the citrate synthase gene. The third lion and the cheetah were infected with previously unidentified Bartonella strains. Twenty-three percent of the 73 cheetahs and 3.7% of the 54 lions tested by TaqMan PCR were positive for Bartonella spp. B. henselae antibody prevalence was 17% (19/113) for the lions and 31% (23/74) for the cheetahs. The prevalence of seropositivity, bacteremia, and positive TaqMan PCR was not significantly different between sexes and age categories (juvenile versus adult) for both lions and cheetahs. Domestic cats are thus no longer the only known carriers of Bartonella spp. in Africa. Translocation of B. henselae seronegative and TaqMan PCR negative wild felids might be effective in limiting the spread of Bartonella infection.

Acinonyx↗

Rheumatic manifestations of Bartonella infection in 2 children.

We describe 2 patients with very unusual rheumatological presentations presumably caused by Bartonella infection: one had myositis of proximal thigh muscles bilaterally, and the other had arthritis and skin nodules. Both patients had very high levels of antibody to Bartonella that decreased in association with clinical improvement. Bartonella infection should be considered in the differential diagnosis of unusual myositis or arthritis in children.

Anti-Bacterial Agents↗

Molecular epidemiology of bartonella infections in patients with bacillary angiomatosis-peliosis.

BACKGROUND: Bacillary angiomatosis and bacillary peliosis are vascular proliferative manifestations of infection with species of the genus bartonella that occur predominantly in patients infected with the human immunodeficiency virus. Two species, B. henselae and B. quintana, have been associated with bacillary angiomatosis, but culture and speciation are difficult, and there has been little systematic evaluation of the species-specific disease characteristics. We studied 49 patients seen over eight years who were infected with bartonella species identified by molecular techniques and who had clinical lesions consistent with bacillary angiomatosis-peliosis. METHODS: In this case-control study, a standardized questionnaire about exposures was administered to patients with bacillary angiomatosis-peliosis and to 96 matched controls. The infecting bartonella species were determined by molecular techniques. RESULTS: Of the 49 patients with bacillary angiomatosis-peliosis, 26 (53 percent) were infected with B. henselae and 23 (47 percent) with B. quintana. Subcutaneous and lytic bone lesions were strongly associated with B. quintana, whereas peliosis hepatis was associated exclusively with B. henselae. Patients with B. henselae infection were identified throughout the study period and were epidemiologically linked to cat and flea exposure (P< or =0.004), whereas those with B. quintana were clustered and were characterized by low income (P=0.003), homelessness (P = 0.004), and exposure to lice (P= 0.03). Prior treatment with macrolide antibiotics appeared to be protective against infection with either species. CONCLUSIONS: B. henselae and B. quintana, the organisms that cause bacillary angiomatosis-peliosis, are associated with different epidemiologic risk factors and with predilections for involvement of different organs.

Angiomatosis, Bacillary↗

Bartonella henselae infection in cats: evaluation during primary infection, treatment, and rechallenge infection.

Bartonella henselae infection was established in eight cats of various ages by experimental inoculation. All cats remained persistently bacteremic until they were treated 4 to 7 weeks after primary inoculation. Antibody titers increased and peaked between 4 and 12 weeks for all cats. Treatment with doxycycline for 1 week was effective in suppressing bacteremia in all cats but was effective in clearing infection from only four cats. Amoxicillin, given subsequently, was effective in clearing the infection from three of the remaining cats. One kitten that remained bacteremic was treated unsuccessfully with enrofloxacin, and its bacteremia was finally cleared when it was treated with a clavulanate-amoxicillin combination. After the bacteremia was cleared, with a corresponding reduction in serum antibody titers, all eight cats were rechallenged with B. henselae. None of the cats became bacteremic after secondary challenge, and all had higher and more rapid increases in serum antibody titers than after primary inoculation. The cats became resistant to reinfection following recovery from infection, indicating that immunoprophylaxis in cats might be beneficial in helping to reduce their public health risk.

Angiomatosis, Bacillary↗

New world origins for haemoparasites infecting United Kingdom grey squirrels (Sciurus carolinensis), as revealed by phylogenetic analysis of bartonella infecting squirrel populations in England and the United States.

Phylogenetic analyses of bartonella have suggested divergence between bartonellae that infect mammals native to the Old and New Worlds. We characterized bartonella isolated from Eastern grey squirrels (Sciurius carolinensis) in the United States and from grey and red squirrels (Sciurus vulgaris) in the United Kingdom by nucleotide sequence comparison (gltA and groEL). Isolates from grey squirrels in the United States and the United Kingdom were identical, and most similar to Bartonella vinsonii, a species associated with New World rodents. A single and novel bartonella genotype was obtained from all 12 red squirrel isolates. Although grey squirrels were first introduced into the United Kingdom over 125 years ago, they continue to be infected solely by the bartonella associated with grey squirrels native to the United States. These results illustrate that exotic species may be accompanied by the introduction and maintenance, over many generations, of their microparasites.

Animals↗