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At least 19 recordsLinked to original sources

[Contribution to the experimental haemophilus infection (haemophilus parahemolyticus, haemophilus parasuis) in specific pathogen-free piglets. 1. microbiology, experimental arrangement, results].

Experimental infections were applied to specific pathogen free (SPF) piglets and store pigs, using five haemophilus (H.) parahaemolyticus and two H.-parasuis strains. Different germs counts and modes of application were chosen for each of the animals involved (intratracheal, intranasal, and subcutaneous routes). Clinical and pathologico-anatomic changes typical of haemorrhagic-necrotising pleuropneumonia were obtained from all germ counts and methods of application. Only one of the test animals could be successfully infected to exhibit manifestations of pneumonia or serositis when H. parasuis was used. The high pathogenicity of H. parahaemolyticus, as recorded from the above experiments, was in agreement with the growing incidence of that haemophilosis recordable for some time from pig stock.

Animals↗

[Invasive Haemophilus infections in adults].

From 1976 to 1985, 27 adult invasive Haemophilus infections were observed at the University Medical Center in Lausanne. Only 5 cases (19%) were caused by Haemophilus influenzae type b, while 12 cases (44%) were due to Haemophilus species other than H. influenzae. Two out of 24 strains tested were ampicillin-resistant. The infections were meningitis in 8, pneumonia in 7, endocarditis in 5, sepsis of unknown origin in 4, epiglottitis in 2, and one gynecological infection. Except for the latter three patients, each case was associated with one or more underlying conditions. Seven patients died (26%), in three of whom death was directly related to the infectious process. This report and a review of the literature show that adult invasive Haemophilus infections are not uncommon and may be serious. Associated underlying diseases and advanced age are generally present. In contrast to infections occurring in children, invasive Haemophilus infections in adults are not restricted to encapsulated Haemophilus influenzae type b strains.

Adult↗

[Clinical results of a multicenter study of Haemophilus infection].

2379 cases of infections due to Haemophilus are reported in a one year long French multicenter study. There were 1368 low respiratory and 540 high respiratory infections, 22 epiglottitis, 86 meningitis, and 68 septicemia (bacteremia). Four hundred and one times, we considered that the bacteria was not the cause of the infection. For each type of infection, we studied the distribution according to the age, the sex and the period of the year, the eventual associations and the involved serotypes. The lethality was low (22), mainly due to a particular deficiency. At last, we compared the different methods to obtain the pathologic products from the upper bronchial tract.

Adolescent↗

[Pathology of Haemophilus infections: current situation in pediatrics].

Haemophilus influenzae is the main pathogen in community-acquired infections in children. Prior to the introduction of H. influenzae type b immunization (Hib), capsular type b H. influenzae was the most invasive type of H. influenzae, and was the major cause of meningitis in children in France and many developing countries. The introduction of a Hib vaccine program results in rapid and dramatic decline in the incidence of Hib infections in children. The resistance rate to beta-lactam antibiotics is slowly increasing with beta-lactamase production. Third generation cephalosporins are used for the treatment of invasive infection (meningitis etc.). The empiric treatment of otitis and respiratory tract infections in children is the combination of clavulanic acid and amoxicillin or third generation cephalosporins.

Anti-Bacterial Agents↗

[Clinical manifestations, diagnosis and treatment of Haemophilus influenzae infection].

Haemophilus influenzae is a small, nonmotile, non-spore-forming bacterium, and a strict parasite of humans found principally in the upper respiratory tract. The production of capsule is of major significance to clinicians since it is an important virulence factor. We described six antigenically distinct capsular types, designated a-f. Spread from one individual to another occurs by airborne droplets or by direct contagion with secretions. Haemophilus influenzae produces at least two factors that inhibit the ciliary activity of human epithelial cells in vitro. One of this has been shown to be lipopolysaccharide and the other factor is of low molecular weight, most likely a heat-stable glycopeptide. Type b strains are distinguished by the production of capsular polysaccharide composed of repeating units of ribosyl-ribitol phosphate, account for greater than 95 percent of systemic infections in children. Two contrasting patterns of Haemophilus influenzae disease can be identified. The first and the most serious in its consequences is invasive infection such as meningitis, septic arthritis, epiglottitis, and cellulitis in which bacteremia is a prominent feature; these infections are usually caused by type b strains and occur in young children. The second category includes less serious but numerically more common infections, that occur as a result of contiguous spread of Haemophilus influenzae within the respiratory tract; e.g. otitis media, sinusitis. These latter infections are usually, but not invariably, caused by unencapsulated strains. A provisional diagnosis of meningitis, epiglottitis, facial cellulitis, or septic arthritis will usually be prompted by the history and clinical findings. Confirmation requires microbiologic studies. Cultures of blood, CSF and other normally sterile fluids are diagnostic and therefore under the appropriate circumstances mandatory. Whenever feasible, specimens obtained for culture should also the gram-strained. Detection of capsular antigen in serum, CSF or concentrated urine using immunoelectrophoresis, latex agglutination or enzyme linked immunosorbent assay may be diagnosed and can be found in up to 90 percent of culture proved cases of meningitis. Without treatment, infection due to Haemophilus influenzae can be rapidly fatal, particularly by meningitis and epiglottitis. There is currently a trend to use certain parenteral third generation cephalosporins as initial therapy when lifethreatening Haemophilus influenzae infection is known or suspected in children beyond the neonatal period, commonly used agents included cefotaxime or ceftriaxone. Antibiotic therapy is only one facet of the management of the child with Haemophilus influenzae infection, and critical attention must also be given to supportive therapy. In the ambulatory setting, ampicillin or amoxicillin for 10 days is often satisfactory for the less severe Haemophilus influenzae infections. Cephalosporins are often chosen for treatment of adults, with pneumonia when Haemophilus influenzae is documented.

Haemophilus Infections↗

Expression of peptidoglycan-associated lipoprotein is required for virulence in the human model of Haemophilus ducreyi infection.

Haemophilus ducreyi expresses a peptidoglycan-associated lipoprotein (PAL) that exhibits extensive homology to Haemophilus influenzae protein 6. We constructed an isogenic PAL mutant (35000HP-SMS4) by the use of a suicide vector that contains lacZ as a counterselectable marker. H. ducreyi 35000HP-SMS4 and its parent, 35000HP, had similar growth rates in broth and similar lipooligosaccharide profiles. 35000HP-SMS4 formed smaller, more transparent colonies than 35000HP and, unlike its parent, was hypersensitive to antibiotics. Complementation of the mutant in trans restored the parental phenotypes. To test whether expression of PAL is required for virulence, nine human volunteers were experimentally infected. Each subject was inoculated with two doses (41 to 89 CFU) of live 35000HP and one dose of heat-killed bacteria on one arm and with three doses (ranging from 28 to 800 CFU) of live 35000HP-SMS4 on the other arm. Papules developed at similar rates at sites inoculated with the mutant or parent but were significantly smaller at mutant-inoculated sites than at parent-inoculated sites. The pustule formation rate was 72% (95% confidence interval [CI], 46.5 to 90.3%) at 18 parent sites and 11% (95% CI, 2.4 to 29.2%) at 27 mutant sites (P < 0.0001). The rates of recovery of H. ducreyi from surface cultures were 8% (n = 130; 95% CI, 4.3 to 14.6%) for parent-inoculated sites and 0% (n = 120; 95% CI, 0.0 to 2.5%) for mutant-inoculated sites (P < 0.001). H. ducreyi was recovered from six of seven biopsied parent-inoculated sites and from one of three biopsied mutant-inoculated sites. Confocal microscopy confirmed that the bacteria present in a mutant inoculation site pustule lacked a PAL-specific epitope. Although biosafety regulations precluded our testing the complemented mutant in humans, these results suggest that expression of PAL facilitates the ability of H. ducreyi to progress to the pustular stage of disease.

Adult↗