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Comparative seroreactivity to Bartonella henselae and Bartonella quintana among cats from Israel and North Carolina.

Bartonella henselae, the predominant cause of cat scratch disease, and Bartonella quintana, the cause of trench fever, are closely related Bartonella species that induce cross-reactivity when cat or human sera are tested using an indirect immunofluorescence antibody (IFA) test. Cats are the natural reservoir for B. henselae, whereas a mammalian reservoir host for B. quintana has not been identified. Serum samples from 114 cats from Israel and 114 cats from North Carolina were tested by IFA for seroreactivity to B. henselae and B. quintana antigens. Similar numbers of cats from Israel [45 (39.5%)] and from North Carolina [46(40.4%)] were seroreactive to both antigens, however, as compared to cats from North Carolina [8 (7%)], a significantly (P = 0.001) larger number of cats from Israel were seroreactive to B. quintana antigen only [23 (20.2%)]. In addition, mean antibody titers were lower to B. henselae than to B. quintana (P = 0.0001) in the cats from Israel, whereas similar mean titers to both antigens were identified in cats from North Carolina. Absorption of serum using whole B. henselae organisms resulted in a significantly greater (P = 0.0001) decrease in antibody titer to B. henselae between absorbed and non-absorbed sera, as compared to the decrease in antibody titer following absorption with whole B. quintana organisms. There was a similar decrease in antibody titer in sera from cats experimentally infected with B. henselae and in cats naturally exposed to Bartonella species from Israel and North Carolina. Our results indicate that absorption of serum will, in most instances, distinguish species-specific reactivity by IFA to B. henselae from cross-reactivity to B. quintana in cats experimentally infected with B. henselae. The data support the conclusion that B. henselae is the principal Bartonella species responsible for seroreactivity against B. henselae and B. quintana in naturally exposed cats from Israel or North Carolina. It also suggests that in Israel, cats are exposed to one or more antigenically different Bartonella species, sub-species or strains, that seroreact by IFA more intensely with B. quintana antigen.

Animals↗

Current knowledge of Bartonella species.

Bartonella species are now considered emerging pathogens. Of the 11 currently recognized species, four have been implicated in human disease, although only two have been encountered in Europe. Bartonella quintana infections are now being diagnosed among the urban homeless and deprived, manifesting as trench fever, and Bartonella henselae has been shown to be the causative agent of cat scratch disease. Both species also cause a variety of HIV-associated infections, including bacillary anglomatosis. However, perhaps the most significant presentation of bartonellae infection is culture-negative endocarditis. The epidemiologies of Bartonella infections are poorly understood; most Bartonella henselae infections are probably acquired from infected cats, either directly by contact with a cat or indirectly via fleas. No animal reservoir has been implicated for Bartonella quintana; however, infection can be transmitted via the human body louse. Diagnosis of Bartonella infections can be made using histological or microbiological methods. The demonstration of specific antibodies may be useful in some instances, although certainly not in all. Cultivation of Bartonella is difficult, as the bacteria are extremely fastidious. Polymerase chain reaction-based or immunological methods for the detection of bartonella in infected tissues have proven useful. Clinical relapse is often associated with Bartonella infections despite a wide range of prescribed regimens. Only aminoglycosides display in vitro bactericidal activity against intracellular Bartonella species; therefore, they are recommended for treatment of Bartonella infections.

AIDS-Related Opportunistic Infections↗

Genome rearrangements, deletions, and amplifications in the natural population of Bartonella henselae.

Cats are the natural host for Bartonella henselae, an opportunistic human pathogen and the agent of cat scratch disease. Here, we have analyzed the natural variation in gene content and genome structure of 38 Bartonella henselae strains isolated from cats and humans by comparative genome hybridizations to microarrays and probe hybridizations to pulsed-field gel electrophoresis (PFGE) blots. The variation in gene content was modest and confined to the prophage and the genomic islands, whereas the PFGE analyses indicated extensive rearrangements across the terminus of replication with breakpoints in areas of the genomic islands. We observed no difference in gene content or structure between feline and human strains. Rather, the results suggest multiple sources of human infection from feline B. henselae strains of diverse genotypes. Additionally, the microarray hybridizations revealed DNA amplification in some strains in the so-called chromosome II-like region. The amplified segments were centered at a position corresponding to a putative phage replication initiation site and increased in size with the duration of cultivation. We hypothesize that the variable gene pool in the B. henselae population plays an important role in the establishment of long-term persistent infection in the natural host by promoting antigenic variation and escape from the host immune response.

Animals↗

[Seroepidemiology of Bartonella henselae infection in a risk group].

BACKGROUND: Bartonella henselae infections are closely related to a number of clinical conditions of growing interest in our environment. As cats are the reservoir, and their bites and scratches are the main transmission mechanism, we attempted to study the seroepidemiology of the infection caused by this microorganism in a risk group of patients (cat owners) and a control group (blood donors). PATIENTS AND METHODS: October 1977. Measurement of antibody titres to B. henselae at different dilutions (breakpoint > or = 1:64) by indirect immunofluorescence (IFI) in 83 cat owners and 85 blood donors. Also, an epidemiologic investigation was carried out (age, sex, alcohol, intake, common cat exposure, cat bite or cat scratch, number and age of cats, bite or presence of fleas, use of repellents, clinical picture consistent with cat scratch disease [CSD]). RESULTS: Twenty-four cat owners (28.9%) and five blood donors (5.9%) had titres > or = 1:64 (OR: 6.51; 95% CI: 2.32 to 22.9). Also, the logistic regression analysis showed an association with daily alcohol intake and the previous antecedent of lymph node enlargement of unknown origin among cat owners. CONCLUSIONS: A high prevalence of antibodies to B. henselae was demonstrate among cat owners.

Adult↗

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↗

Bartonella henselae associated with Parinaud's oculoglandular syndrome.

Bartonella henselae was recovered from the conjunctival scraping of a 38-year-old woman who presented with a 2-week history of tender preauricular lymphadenopathy and a 1-day history of a red left eye. Dry adherent colonies were observed on agar plates at 21 days of incubation, and the isolate was identified through conventional and molecular tests. Polymerase chain reaction (PCR) amplification of a specific region of the 16S rRNA gene and confirmation by a separate PCR reaction with hybridization of the product with a B. henselae-specific probe confirmed the isolate as B. henselae. This is the first reported isolation of the causative agent of cat scratch disease from ocular tissue in a patient with Parinaud's oculoglandular syndrome.

Adult↗

Characterization of Bartonella clarridgeiae flagellin (FlaA) and detection of antiflagellin antibodies in patients with lymphadenopathy.

Cat scratch disease (CSD) is a frequent clinical outcome of Bartonella henselae infection in humans. Recently, two case reports indicated Bartonella clarridgeiae as an additional causative agent of CSD. Both pathogens have been isolated from domestic cats, which are considered to be their natural reservoir. B. clarridgeiae and B. henselae can be distinguished phenotypically by the presence or absence of flagella, respectively. Separation of the protein content of purified flagella of B. clarridgeiae by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and immunoblot analysis indicated that the flagellar filament is mainly composed of a polypeptide with a mass of 41 kDa. N-terminal sequencing of 20 amino acids of this protein revealed a perfect match to the N-terminal sequence of flagellin (FlaA) as deduced from the sequence of the flaA gene cloned from B. clarridgeiae. The flagellin of B. clarridgeiae is closely related to flagellins of Bartonella bacilliformis and several Bartonella-related bacteria. Since flagellar proteins are often immunodominant antigens, we investigated whether antibodies specific for the FlaA protein of B. clarridgeiae are found in patients with CSD or lymphadenopathy. Immunoblotting with 724 sera of patients suffering from lymphadenopathy and 100 healthy controls indicated specific FlaA antibodies in 3.9% of the patients' sera but in none of the controls. B. clarridgeiae FlaA is thus antigenic and expressed in vivo, providing a valuable tool for serological testing. Our results further indicate that B. clarridgeiae might be a possible etiologic agent of CSD or lymphadenopathy. However, it remains to be clarified whether antibodies to the FlaA protein of B. clarridgeiae are a useful indicator of acute infection.

Amino Acid Sequence↗

A child with Bartonella henselae osteomyelitis of the right humerus.

We present a case of a 22-month-old child with swollen upper part of the right arm and osteolytic lesion of the right humerus, which resembled a neoplastic process. Epidemiological history revealed no scratch marks on the skin or cutaneous papule or pustule. Presumptive diagnosis of hematogenous osteomyelitis was established, but treatment with fusidic acid was unsuccessful. Histological examination of the bioptic specimen of the soft tissue swelling showed a lymph node morphology, with numerous granulomas with central stellate necrosis. Indirect immunofluorescence assay for Bartonella henselae yielded positive results. New treatment included 15 days of trimetoprime and sulfamethoxazole, followed by azithromycin for 5 days. Four months later, swelling resolved and osteolytic lesion almost completely healed with formation of surrounding sclerosis. In conclusion, cat-scratch disease without positive epidemiological history and primary cutaneous papule or pustule may be a serious diagnostic problem, but can be solved by serological and histological examination.

Animals↗

Parinaud syndrome caused by Bartonella henselae: case report.

The authors report a case of Parinaud syndrome (conjunctivitis with pre-auricular satellite adenitis) caused by Bartonella henselae, the etiologic agent of Cat Scratch Disease. The etiologic assessment of this case was performed by serum indirect immunofluorescence reaction and allowed for a better therapeutics and follow up, avoiding ineffective antibiotics and surgical interventions.

Animals↗

[Infectious cervical adenopathy].

Cervical adenopathy is often found on examination, but rarely causes clinical problems. If the adenopathy persists for a longer period then three to four weeks and no infectious causes are found, further investigations are needed, especially to exclude a malignancy. The chronic infectious adenopathies are discussed: mycobacterial (tuberculous and atypical), toxoplasmosis, cat-scratch disease and actinomycosis.

Actinomycosis, Cervicofacial↗

[Evaluation of isolation media for the detection of Bartonella henselae--isolation of Bartonella henselae from domestic cats].

Bartonella henselae is a causative agent of cat scratch disease. We preliminarily tested four media for the bacterial growth, including agar plates with sheep, horse or rabbit blood, and chocolate agar. Of these media, rabbit blood and chocolate agar plate were found to be more excellent for the growth than the medium with sheep or horse blood. Blood samples from 60 domestic cats in Yamaguchi Prefecture were then cultured using 7% rabbit blood agar plates and BACTEC9050 (BD), automated blood culture microbial detection system. B. henselae was isolated from six of the 60 (10%) blood samples. Tiny colonies of B. henselae were visible on the agar medium after one week of culture at 35 degrees C in the 5% CO2 atmosphere. BACTEC 9050 detected B. henselae in one of the 10 blood samples and it took two weeks to detect the bacteria automatically, though gram stain failed to show organisms in the blood culture bottle. In conclusion, rabbit blood or chocolate agar and incubation of agar media more than one week and of BACTEC more than two weeks are recommended for the detection of B. henselae.

Agar↗

Necrotizing and suppurative lymphadenitis in Leishmania major infections.

The pathology of lymph nodes and subcutaneous nodules in 6 patients with cutaneous leishmaniasis (Oriental sore) due to Leishmania major is described in this paper. In 3 patients enlarged epitrochlear lymph nodes were found to be associated with primary skin lesions in the forearm. The lymph node in one patient showed a necrotizing granulomatous reaction that simulated tuberculous lymphadenitis. Leishmania parasites were, however, found in sections of the node, and staining for mycobacteria was negative. The second patient presented with an abscess and a discharging sinus in the epitrochlear region. Parasites were found in smears of the pus and cultures for bacteria were negative. The lesion healed with antimonial therapy. In the third patient the lesion resembled cat-scratch disease and showed stellate abscesses and granulomas. Leishmania parasites were also identified in the sections. Sections of a subcutaneous nodule from the fourth patient showed a necrotizing granuloma. The lesion healed spontaneously and the patient became leishmanin-positive. In two other patients fine needle aspiration of the subcutaneous nodules showed parasites, granuloma and necrosis. We concluded that L. major disseminates from the primary cutaneous lesion via the lymphatics to the subcutaneous tissues and the regional lymph nodes. The subcutaneous nodules and lymphadenopathy may persist long after the primary lesion had healed. The primary lesion is sometimes inconspicuous. Necrotizing and suppurative lymphadenitis due to L. major have to be distinguished from other causes of necrosis and suppuration such as tuberculosis and cat-scratch disease.

Adolescent↗

Benign lymphoproliferative disorders.

OBJECTIVE: To provide a review of three benign lymphoproliferative disorders commonly encountered in nursing practice: (1) infectious mononucleosis, (2) cat scratch disease, and (3) sarcoidosis. DATA SOURCES: Research studies, review articles, and book chapters pertaining to benign lymphoproliferative disorders. CONCLUSIONS: Benign lymphoproliferative disorders may be associated with infections, autoimmune disorders, hypersensitivity reactions, and unknown causes. Most of these disorders are self-limiting; however, some are associated with significant morbidity and mortality. IMPLICATIONS FOR NURSING PRACTICE: Benign as well as malignant lymphoproliferative disorders will be encountered with increasing frequency by nurses in ambulatory settings. Nurses need to have a basic knowledge of these disorders that present a diagnostic and management challenge.

Adult↗

Intracellular location of Bartonella henselae cocultivated with Vero cells and used for an indirect fluorescent-antibody test.

Bartonella henselae, the major causative agent of cat scratch disease, was cocultivated with Vero cells on chamber slides and visualized by indirect immunofluorescence by using a patient serum containing specific antibodies. Confocal microscopy localized the granular B. henselae-specific fluorescence mainly around the nuclei of Vero cells. By transmission electron microscopy, these granules were identified as clusters of multiple intracellular organisms. Fixed slides with the monolayers of Vero cells with intracellular B. henselae were used for an indirect fluorescent-antibody test to investigate the seroprevalence of specific immunoglobulin G in 100 serum samples from blood donors. Seventy-four serum samples were negative; 19, 3, and 4 were positive at dilutions of 1:64, 1:128, and 1:256, respectively. In our population, a serum titer of 1:256 or greater should stimulate further investigations. Moreover, elucidation of the mechanism by which B. henselae enters the cells may help to understand the pathogenesis of cat scratch disease.

Animals↗

16S/23S rRNA intergenic spacer regions for phylogenetic analysis, identification, and subtyping of Bartonella species.

Species of the genus Bartonella are currently recognized in growing numbers and are involved in an increasing variety of human diseases, mainly trench fever, Carrion's disease, bacillary angiomatosis, endocarditis, cat scratch disease, neuroretinitis, and asymptomatic bacteremia. Such a wide spectrum of infections makes it necessary to develop species and strain identification tools in order to perform phylogenetic and epidemiological studies. The 16S/23S rRNA intergenic spacer region (ITS) was sequenced for four previously untested species, B. vinsonii subsp. arupensis, B. tribocorum, B. alsatica, and B. koehlerae, as well as for 28 human isolates of B. quintana (most of them from French homeless people), six human or cat isolates of B. henselae, five cat isolates of B. clarridgeiae, and four human isolates of B. bacilliformis. Phylogenetic trees inferred from full ITS sequences of the 14 recognized Bartonella species using parsimony and distance methods revealed high statistical support, as bootstrap values were higher than those observed with other tested genes. Five well-supported lineages were identified within the genus and the proposed phylogenetic organization was consistent with that resulting from protein-encoding gene sequence comparisons. The ITS-derived phylogeny appears, therefore, to be a useful tool for investigating the evolutionary relationships of Bartonella species and to identify Bartonella species. Further, partial ITS amplification and sequencing offers a sensitive means of intraspecies differentiation of B. henselae, B. clarridgeiae, and B. bacilliformis isolates, as each strain had a specific sequence. The usefulness of this approach in epidemiological investigations should be highlighted. Among B. quintana strains, however, the genetic heterogeneity was low, as only three ITS genotypes were identified. It was nevertheless sufficient to show that the B. quintana population infecting homeless people in France was not clonal.

Animals↗

Bartonella henselae induces NF-kappaB-dependent upregulation of adhesion molecules in cultured human endothelial cells: possible role of outer membrane proteins as pathogenic factors.

The endothelium is a specific target for Bartonella henselae, and endothelial cell infection represents an important step in the pathogenesis of cat scratch disease and bacillary angiomatosis. Mechanisms of Bartonella-endothelial cell interaction as well as signaling pathways involved in target cell activation were analyzed. B. henselae strain Berlin-1, isolated from bacillary angiomatosis lesions of a human immunodeficiency virus-infected patient, potently stimulated human umbilical cord vein endothelial cells (HUVEC), as determined by NF-kappaB activation and enhanced adhesion molecule expression. These effects were accompanied by increased PMN rolling on and adhesion to infected endothelial cell monolayers, as measured in a parallel-plate flow chamber assay. Monoclonal antibodies against E-selectin significantly reduced PMN rolling and adhesion. In our hands, B. henselae Berlin-1 was substantially more active than the typing strain B. henselae ATCC 49882. E-selectin and ICAM-1 upregulation occurred for up to 9 days, as verified by Northern blotting and cell surface enzyme-linked immunosorbent assay. Induction of adhesion molecules was mediated via NF-kappaB activation and could be blocked by a specific NF-kappaB inhibitor. Additional studies indicated that B. henselae-induced effects did not require living bacteria or Bartonella lipopolysaccharides. Exposure of HUVEC to purified B. henselae outer membrane proteins (OMPs), however, reproduced all aspects of endothelial cell activation. In conclusion, B. henselae, the causative agent of cat scratch disease and bacillary angiomatosis, infects and activates endothelial cells. B. henselae OMPs are sufficient to induce NF-kappaB activation and adhesion molecule expression followed by enhanced rolling and adhesion of leukocytes. These observations identify important new properties of B. henselae, demonstrating its capacity to initiate a cascade of events culminating in a proinflammatory phenotype of infected endothelial cells.

Animals↗