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Cat-scratch fever.

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Bartonella Infections↗

HHV-8 (KSHV) is not associated with bacillary angiomatosis.

AIMS: Bacillary angiomatosis is a rare pseudoneoplastic angioproliferative lesion occurring in patients with AIDS. This condition has been associated with Bartonella henselae and Bartonella quintana infections. Human herpesvirus 8 (HHV-8) is thought to be the causative agent of Kaposi's sarcoma, a vasoproliferative neoplasm, also commonly found in patients with AIDS. The presence of HHV-8 in a cohort of patients with bacillary angiomatosis was investigated. METHODS: Eight cutaneous cases of biopsy confirmed bacillary angiomatosis were assessed for HHV-8 using standard solution phase polymerase chain reaction (PCR). RESULTS: No case of bacillary angiomatosis harboured HHV-8 DNA. CONCLUSIONS: HHV-8 was not demonstrated in the lesions of bacillary angiomatosis and therefore does not appear to play a role in the pathogenesis of this pseudoneoplastic angioproliferative disorder. This finding might be useful in the distinction of bacillary angiomatosis from Kaposi's sarcoma, because lesions from patients with Kaposi's sarcoma almost always contains HHV-8 DNA.

AIDS-Related Opportunistic Infections↗

Histological evidence of disease in wild stoats (Mustela erminea) in England.

Forty-four free-living stoats were collected from five game estates in England and examined for evidence of disease. All the macroscopic lesions were attributable to the trauma associated with being trapped or shot. There were no significant microscopic lesions in 27 (61 per cent) of the stoats. There was evidence of nematode parasitism in the intestines of six stoats (14 per cent), and in the lungs of five stoats (11 per cent), and of pulmonary granulomatous inflammation or microgranulomas in five stoats. In two of the stoats, blood-filled cavities in the liver were suggestive of peliosis hepatis, possibly associated with infection by Bartonella species or with sublethal exposure to anticoagulant rodenticides.

Animals↗

Molecular and cellular basis of bartonella pathogenesis.

The genus Bartonella comprises several important human pathogens that cause a wide range of clinical manifestations: cat-scratch disease, trench fever, Carrion's disease, bacteremia with fever, bacillary angiomatosis and peliosis, endocarditis, and neuroretinitis. Common features of bartonellae include transmission by blood-sucking arthropods and the specific interaction with endothelial cells and erythrocytes of their mammalian hosts. For each Bartonella species, the invasion and persistent intracellular colonization of erythrocytes are limited to a specific human or animal reservoir host. In contrast, endothelial cells are target host cells in probably all mammals, including humans. Bartonellae subvert multiple cellular functions of human endothelial cells, resulting in cell invasion, proinflammatory activation, suppression of apoptosis, and stimulation of proliferation, which may cumulate in vasoproliferative tumor growth. This review summarizes our understanding of Bartonella-host cell interactions and the molecular mechanisms of bacterial virulence and persistence. In addition, current controversies and unanswered questions in this area are highlighted.

Animals↗

Dendrocytes in verruga peruana and bacillary angiomatosis.

Verruga peruana and bacillary angiomatosis are two cutaneous diseases characterized by angiomatous growths linked to the presence of rickettsia-like organisms. These lesions are currently considered to be endothelial hyperplasias and to share many features. By immunohistochemistry and computerized image analysis, we studied the presence of factor-XIIIa-positive dendrocytes in these lesions and compared our data with similar research in capillary angiomas and normal skin. Other cell lines were studied by Ulex europaeus and by antibodies to the L1 antigen and to the von Willebrand factor. Dendrocytes were identified in the three types of angiomatous growth. They were numerous and appeared plump, but no more dendritic than in normal skin. Verruga peruana and bacillary angiomatosis should therefore be viewed as combined growths of endothelial cells and dendrocytes. The biological link between these two types of cells is emphasized.

Adult↗

Prevalence of rickettsia felis-like and Bartonella Spp. in Ctenocephalides felis and Ctenocephalides canis from La Rioja (Northern Spain).

Our aim was to determine the presence of Rickettsia spp. and Bartonella spp. in Ctenocephalides felis and Ctenocephalides canis from La Rioja (Spain). A total of 88 specimens were tested by polymerase chain reaction (PCR) using gltA and ompB genes as targets for Rickettsia spp., and 16S rRNA and ribC genes for Bartonella spp. Rickettsia felis-like (28.4%), Bartonella clarridgeiae (6.8%), and Bartonella henselae (3.4%) were detected in Ctenocephalides spp. Other Bartonella sp. different from B. clarridgeiae and B. henselae could also be present in fleas from La Rioja.

Animals↗