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Biomedical subjects

M Maurin

Publications and source records attributed to M Maurin.

At least 37 records · Page 2Linked to original sources

Q fever.

Q fever is a zoonosis with a worldwide distribution with the exception of New Zealand. The disease is caused by Coxiella burnetii, a strictly intracellular, gram-negative bacterium. Many species of mammals, birds, and ticks are reservoirs of C. burnetii in nature. C. burnetii infection is most often latent in animals, with persistent shedding of bacteria into the environment. However, in females intermittent high-level shedding occurs at the time of parturition, with millions of bacteria being released per gram of placenta. Humans are usually infected by contaminated aerosols from domestic animals, particularly after contact with parturient females and their birth products. Although often asymptomatic, Q fever may manifest in humans as an acute disease (mainly as a self-limited febrile illness, pneumonia, or hepatitis) or as a chronic disease (mainly endocarditis), especially in patients with previous valvulopathy and to a lesser extent in immunocompromised hosts and in pregnant women. Specific diagnosis of Q fever remains based upon serology. Immunoglobulin M (IgM) and IgG antiphase II antibodies are detected 2 to 3 weeks after infection with C. burnetii, whereas the presence of IgG antiphase I C. burnetii antibodies at titers of >/=1:800 by microimmunofluorescence is indicative of chronic Q fever. The tetracyclines are still considered the mainstay of antibiotic therapy of acute Q fever, whereas antibiotic combinations administered over prolonged periods are necessary to prevent relapses in Q fever endocarditis patients. Although the protective role of Q fever vaccination with whole-cell extracts has been established, the population which should be primarily vaccinated remains to be clearly identified. Vaccination should probably be considered in the population at high risk for Q fever endocarditis.

Animals↗

Bacillary angiomatosis in immunocompromised patients.

OBJECTIVES: To report seven cases of bacillary angiomatosis; to evaluate the most useful diagnostic tools; to analyse the clinical and epidemiological features associated with Bartonella quintana or Bartonella henselae infections. DESIGN: Clinical, diagnostic and epidemiological evaluation of 37 speciated bacillary angiomatosis cases in the literature, including the seven patients in our study. METHODS: Pathological examination of tissue samples, including Warthin-Starry staining and immunohistology; titre of antibodies to Bartonella sp.; detection of Bartonella sp. in blood and biopsy materials by culture or PCR; and statistical analysis of clinical and epidemiological features associated with B. quintana or B. henselae bacillary angiomatosis cases. RESULTS: Seven immunocompromised patients (six with AIDS and one patient with acute leukaemia) had bacillary angiomatosis confirmed by histology. B. quintana was cultured in three patients, whereas B. henselae DNA was amplified by PCR in the remaining four patients. Serum from only one patient reacted with Bartonella antigens. Amongst the 14 B. quintana and 23 B. henselae bacillary angiomatosis cases now reported in the literature, lymphadenopathies were significantly more frequent in B. henselae-infected patients, and neurological disorders of the central nervous system in B. quintana-infected patients. Risk factors were contact with cats, and homelessness or poor socioeconomic status in B. henselae and B. quintana bacillary angiomatosis cases, respectively. CONCLUSIONS: Although diagnosis of bacillary angiomatosis often remains solely based upon histology, culture or PCR-based methods are useful for the detection of Bartonella sp., and allow identification of the species involved, which is necessary to further characterize clinical and epidemiological features associated with B. quintana or B. henselae infections.

AIDS-Related Opportunistic Infections↗

Use of 16S rRNA gene sequencing to identify Lactobacillus casei in septicaemia secondary to a paraprosthetic enteric fistula.

Human infections caused by Lactobacillus spp. are rarely reported in the literature. Underlying conditions are frequently reported, and identification of lactobacilli to the species level remains rare. A case of Lactobacillus casei septicaemia secondary to a vascular graft infection is reported. The 16S rRNA sequencing technique was used to definitively identify Lactobacillus casei.

Aged↗

Three-dimensional modelling of the motion range of axial rotation of the upper arm.

Computer simulation of human movements and postures suffers generally from the lack of reliable data, such as data on joint limits. In this paper, the motion range of axial rotation of the upper arm was investigated. An original surface regression fitting method using an orthogonal homogeneous polynomial basis has been presented. The method was used to fit both maximum internal and external upper arm axial rotation surfaces based on the experimental data from seven male subjects of ages 23-34. Under the assumption of normal distribution, the sample mean and the confidence limits for population mean of both internal and external upper arm axial rotation limits were derived. It has been shown that the axial motion range of the upper arm depends strongly on the position of the upper arm in the shoulder sinus cone and varies on average from 94 to 157 degrees. The present work can be considered as an extension of the shoulder kinematic data base established by Engin and Chen (1986), Journal of Biomechanical Engineering 108, 215-221.

Adult↗

A guinea pig model for Q fever endocarditis.

A new model of experimental endocarditis, using electrocoagulation of native aortic valves, was used for the study of Q fever endocarditis. In the 20 guinea pigs electrocoagulated and inoculated with Coxiella burnetii Nine Mile phase I strain, 10 presented with infective endocarditis. Of these, 7 died spontaneously. All guinea pigs with endocarditis presented with blood cultures positive for C. burnetii, and C. burnetii antigen was found in their cardiac valves. Positive blood cultures or valvular immunopositive cells were not identified in either nonelectrocoagulated or noninoculated controls. This experimental model demonstrates that Q fever in an animal with previously damaged valves results in endocarditis. It could provide a new tool for the investigation of pathophysiology and antibiotic therapy for Q fever endocarditis.

Animals↗

In vitro susceptibilities of 27 rickettsiae to 13 antimicrobials.

The MICs of 13 antibiotics (doxycycline, thiamphenicol, rifampin, amoxicillin, gentamicin, co-trimoxazole, ciprofloxacin, pefloxacin, ofloxacin, erythromycin, josamycin, clarithromycin, and pristinamycin) were determined for 27 available rickettsial species or strains. We used two in vitro cell culture methods described previously: the plaque assay and the microplaque colorimetric assay. Our results confirm the susceptibilities of rickettsiae to doxycycline, thiamphenicol, and fluoroquinolones. Beta-lactams, aminoglycosides, and cotrimoxazole were not active. Typhus group rickettsiae were susceptible to all macrolides tested, whereas the spotted fever group rickettsiae, R. bellii, and R. canada were more resistant, with josamycin, a safe alternative for the treatment of Mediterranean spotted fever, being the most effective compound. Strain Bar 29, R. massiliae, R. montana, R. aeschlimannii, and R. rhipicephali, which are members of the same phylogenetic subgroup, were more resistant to rifampin than the other rickettsiae tested. Heterogeneity in susceptibility to rifampin, which we report for the first time, may explain in vivo discrepancies in the effectiveness of this antibiotic for the treatment of rickettsial diseases. We hypothesize that rifampin resistance and erythromycin susceptibility may reflect a divergence during the evolution of rickettsiae.

Animals↗

Bartonella infections: diagnostic and management issues.

Bartonella species are emerging pathogens. Renewed interest in this group of bacteria has been highlighted by the recent description of new species, which are pathogenic for humans (Bartonella elizabethae and Bartonella clarridgeae), and their association with an increasing number of clinical manifestations, the more prevalent being cat scratch disease, bacillary angiomatosis, and culture-negative endocarditis.

Journal Article↗

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↗

Bacteriostatic and bactericidal activity of levofloxacin against Rickettsia rickettsii, Rickettsia conorii, 'Israeli spotted fever group rickettsia' and Coxiella burnetii.

Levofloxacin, the L-isomer of ofloxacin, is approximately twice as active as ofloxacin against most Gram-positive and Gram-negative bacteria, and has improved intracellular pharmacokinetic and pharmacodynamic properties. The present work deals with the in-vitro activity of levofloxacin against the obligate intracellular bacteria Rickettsia rickettsii, Rickettsia conorii, 'Israeli spotted fever group rickettsia' (Israeli SFGR) and Coxiella burnetii. Fluoroquinolones, including ofloxacin, have previously been shown to be bacteriostatic against Rickettsia spp. and C. burnetii in vitro. They are reliable alternatives to tetracycline therapy for Mediterranean spotted fever, scrub typhus and acute Q fever. Levofloxacin was bacteriostatic against R. rickettsii, R. conorii and the Israeli SFGR at concentrations of 0.5-1 mg/L, as determined by both a plaque assay and a dye uptake assay. It was also bacteriostatic against C. burnetii isolates, including the Nine Mile, Priscilla and Q212 strains, at concentrations of 0.5-2 mg/L, as determined using the shell vial assay. Overall, levofloxacin could inhibit rickettsial growth at concentrations equal to or half of those necessary for growth inhibition by ofloxacin. Levofloxacin was not bactericidal against C. burnetii at concentrations up to 4 mg/L.

Anti-Infective Agents↗

Coxiella burnetii: the 'query' fever bacterium. A model of immune subversion by a strictly intracellular microorganism.

Although substantial progress occurred in the knowledge of Coxiella burnetii during the past years, the pathophysiology of Q fever is still obscure. Emerging evidence from clinical investigations suggested that certain disorders of cell-mediated immunity play a pivotal role in Q fever and especially in its chronic form. This review analyses the potential strategies that C. burnetii, a strictly intracellular pathogen, use to divert microbicidal mechanisms of macrophages and to depress protective T-cell mediated immunity. The role of monocytes in the induction of Q fever is specifically discussed.

Humans↗

Guinea pig model for Staphylococcus aureus native valve endocarditis.

We present a new experimental model of Staphylococcus aureus infective endocarditis in guinea pigs. Permanent aortic valve damage was produced by electrocoagulation after catheterization of the right carotid artery, which allowed avoidance of the intracardiac catheter to produce cardiac vegetations. Our model closely mimics pathological mechanisms of native valve endocarditis.

Animals↗

Serological cross-reactions between Bartonella and Chlamydia species: implications for diagnosis.

Diagnosis of Chlamydia or Bartonella infections continues to rely mainly on serology. However, serological cross-reactions between members of these genera have recently been described. Sera from eight patients originally diagnosed as having Chlamydia pneumoniae endocarditis reacted with both Chlamydia sp. and Bartonella quintana antigens (microimmunofluorescence technique). Adsorption of sera with B. quintana or C. pneumoniae antigens removed anti-C. pneumoniae antibodies, whereas adsorption with C. pneumoniae antigens did not change antibody titers to B. quintana. Western blot analysis confirmed the presence of cross-reacting antigens and showed antibody patterns in all sera to be compatible with a Bartonella infection. These patients were therefore probably suffering from Bartonella-induced rather than Chlamydia-induced endocarditis. In contrast, sera from 10 patients presumed to be suffering from C. pneumoniae pneumonia did not display anti-B. quintana antibodies, although cross-reacting antigens were revealed by Western blotting. This work highlights the possibility that cases of infective Bartonella endocarditis are erroneously diagnosed as chlamydial infections.

Adsorption↗

Bartonella (Rochalimaea) quintana infections.

Bartonella (formerly Rochalimaea) quintana is the etiological agent of trench fever, a disease extensively reported during the World Wars. Recent molecular biology approaches have allowed dramatic extension of the spectrum of Bartonella infections. B. quintana is now also recognized as an etiological agent of fever and bacteremia, endocarditis, bacillary angiomatosis, and chronic lymphadenopathy. Human immunodeficiency virus-infected patients and/or homeless people are the most vulnerable to infection. Poverty and louse infestation were the main epidemiological factors associated with B. quintana infections during wartime. Although poverty and chronic alcoholism have been associated with modern cases of trench fever and bacteremia due to B. quintana in Europe and the United States, vectors for B. quintana have not been clearly identified and B. quintana has not been isolated from modern-day lice. Microscopic bacillary angiomatosis lesions are characterized by tumor-like capillary lobules, with proliferating endothelial cells. In vitro experiments have shown that B. quintana survives within endothelial cells and stimulates cell proliferation. These observations, together with the finding that lesions may regress when antibiotic therapy is administered, strongly suggest that B. quintana itself stimulates angiogenesis. Bartonella infections are characterized by a high frequency of relapses after brief courses of antibiotic therapy. It is to be noted that in vitro, although Bartonella species are highly susceptible to antibiotics, only the aminoglycosides have proved to be bactericidal. However, the most effective antibiotic regimen for Bartonella infections remains to be established.

Angiomatosis, Bacillary↗

Optimum treatment of intracellular infection.

The intracellular location of some micro-organisms has been early recognised as a critical point to explain failure of antibiotic therapy to eradicate such pathogens from infected hosts. Most often parasites invade 'professional' phagocytic cells, including neutrophils, monocytes and macrophages, by resisting the intracellular bactericidal phagolysosomal pathway. Alternatively, they may invade 'non-professional' phagocytic cells (cells with fewer phagocytic and bactericidal abilities) such as endothelial cells, or even cells without lysosomes such as erythrocytes. The intracellular activity of an antibiotic depends on several factors including its ability to reach the eukaryotic cell membrane, its subcellular localisation as compared to that of the parasite, the possibility that the intracellular milieu may partially inactivate its activity, and the susceptibility of the intracellular form of the parasite. In vitro and animal models have been developed to investigate antibiotic activity against intracellular pathogens. However, it should be emphasised that only data obtained from patients give reliable information to define the optimum antibiotic regimen.

Alphaproteobacteria↗

MICs of 28 antibiotic compounds for 14 Bartonella (formerly Rochalimaea) isolates.

We assessed in vitro the antibiotic susceptibilities of 14 Bartonella isolates of the species B. quintana, B. vinsonii, B. henselae, and B. elizabethae. Columbia agar base supplemented with 5% horse blood was used as the antibiotic assay medium. Bacterial growth could be evaluated within 5 days after incubation of the plates at 37 degrees C in a 5% carbon dioxide atmosphere. The MICs at which 90% of isolates are inhibited (MIC90s) were 0.06 microgram/ml for penicillin G and amoxicillin and 0.25 microgram/ml for ticarcillin and cefotaxime. The MIC90s of oxacillin and cephalothin were 4 and 16 micrograms/ml, respectively. The MIC90s ranged from 1 to 4 micrograms/ml for aminoglycosides. Erythromycin, doxycycline, and rifampin displayed MIC90s of 0.12, 0.12, and 0.25 microgram/ml, respectively. MIC90s were 1 and 5 micrograms/ml for trimethoprim-and sulfamethoxazole, respectively, 64 micrograms/ml for fosfomycin, and 16 micrograms/ml for colistin and vancomycin. The study confirms the high levels of in vitro susceptibility of Bartonella agents to antibiotics.

Anti-Bacterial Agents↗

[Infections of cutaneous wounds].

Infection of cutaneous wounds can be defined as proliferation of microorganisms at an interruption in the mucocutaneous covering. The phenomenon depends on an association of local and general factors which disturb the balance in host-pathogen interactions, in favor of the latter. In addition to infections by nonspecific pyogenic germs, whether posttraumatic or postsurgical, there are specific infections where the wound is the departure point for a systemic infection. Even today, tetanus and gaseous gangrene should be apprehended and systematically prevented. Similarly, the high incidence of infection of bite or scratch wounds (animal or human) should suggest prophylactic antibiotic treatment as well as evaluation of the risk of rabies in the case of animal bites or scratches. In any case, even if antibiotic treatment must be undertaken as an emergency measure, previous bacteriological investigation should be carried out if possible since it permits subsequent adaptation in case of failure of the initial antibiotic treatment.

Animals↗