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Effect of experimentally induced trichinellosis on the infection with Erysipelothrix rhusiopathiae in rats.

Infection with Erysipelothrix rhusiopathiae in rats infested 20 days earlier with Trichinella spiralis developed more slowly, the clinical and pathoanatomic changes in the joints were expressed to a less extend, and the mortality rate was lower. The erythrocyte sedimentation rate, the precipitin formation and the phagocytic activity of the macrophages did not considerably change. Experiments carried out to elucidate this fact did not reveal any antigenic or antagonistic relationships between parasite and bacterium nor any protective effect of the host's serum. The inhibitory influence of corticosteroids on the defence forces was not completely manifested in the rats infested. This fact might be explained by interrelations depending both on the cycle of helminth development and on the non-specific immunological reactivity of the organism, the latter being stimulated by the helminth invasion.

Adrenocorticotropic Hormone

[Immunity against Erysipelothrix rhusiopathiae infection by means of active immunization using homologous neuraminidase (author's transl)].

Neuraminidase may play a role as a pathogenic factor in Erysipelothrix rhusiopathiae infection. The protective effect of active immunization with purified neuraminidase was therefore tested in an infection experiment in white mice. Mice were immunized 2, 4, 6, 8 or 10 times i.p. with Erysipelothrix neuraminidase. A control group received 10 injections with physiological saline. The infective dose varied between 7 and 7 x 10(7) cells. While all control animals infected with 7 x 10(1) germs died, the lethal effect could be reduced to 50% and 25% in animals immunized twice and 4 times, respectively. Only animals immunized 8 and 10 times were still partly protected against germ numbers of 10(3)-10(4). Germ numbers of 10(5) and more were almost always fatal even in highly immunized animals. Even a high immunization with neuraminidase could only lower the lethal by a maximum factor of 10(4) germs used.

Animals

[Neuraminidase neutralizing antibodies in pigs with chronic Erysipelothrix rhusiopathiae infection (author's transl)].

Investigating sera from pigs with chronic E. rhusiopathiae infection relative gamma-globulin values, agglutination titers, and neuraminidase-neutralizing humoral antibodies were determined at the 12th and 15th, 11th and 14th, and 3rd and 6th month after infection. We found increasing gammaglobulin values and increasing neuraminidase neutralizing antibodies but decreasing agglutination titers. Few animals don't have antibodies against neuraminidase and died during the observation period. Furthermore immunodiffusion test demonstrated precipitating lines of antibodies against living E. rhusiopathiae cells and active neuraminidase. No or very weak bands were observed against heat killed cells and heat-inactivated enzyme.

Agglutinins

Oxford Nanopore Sequencing of Clinical DNA for Identification and Comparative Genomic Analysis of Erysipelothrix piscisicarius.

The genus Erysipelothrix comprises facultative anaerobic, nonspore-forming, gram-positive bacteria that can cause skin infections and severe diseases such as septicemia and endocarditis in humans. Although E. rhusiopathiae is the primary pathogen, other species may also be involved, necessitating accurate identification. However, 16S rDNA sequencing lacks sufficient resolution to differentiate among Erysipelothrix species. In this study, we used Oxford Nanopore Technology (ONT) to directly sequence low-quality DNA extracted from heart valve tissue of a 66-year-old female patient with a fatal case of septicemia and aortic endocarditis. In contrast to 16S rDNA Illumina sequencing and matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS), which incorrectly identified the pathogen as E. rhusiopathiae, direct sequencing via ONT precisely identified E. piscisicarius as the cause of infection. About 1.47 Mb genome was retrieved from nanopore direct sequencing. Within the E. piscisicarius genome, we detected genes associated with virulence. Phylogenetic analysis showed that our strain clustered with a human-derived E. piscisicarius strain from China and swine-derived strains from Brazil. In conclusion, this study demonstrated that ONT can be used to sequence low-quality DNA extracted directly from patient specimens, obtain a draft bacterial genome, and reliably distinguish between pathogenic species.

Aged

Prevalence of Erysipelothrix rhusiopathiae in tonsils of domestic pigs and wild boars in Sweden.

Erysipelothrix rhusiopathiae (ER) causes erysipelas in multiple animal species and may persist in the environment or be carried asymptomatically. It is estimated that 30-50% of apparently healthy or convalescent pigs harbour ER in their tonsils and other lymphoid tissues. This study aimed to determine the prevalence of ER in the tonsils of healthy Swedish fattening pigs and wild boars. Tonsils were collected from 200 fattening pigs at slaughter from ten abattoirs across Sweden in 2017, with one pig per herd sampled. Wild boars (n = 180) were sampled during hunting, primarily in Östergötland County, in 2018. Cultures were performed using selective media and isolates were confirmed as ER by MALDI-TOF MS. ER was recovered from 6/200 pig tonsils (3.0%), all originating from three abattoirs in southern Sweden. ER was isolated from 76/167 (45.5%) of wild boar tonsils. Whole-genome sequencing revealed a high genetic diversity among the isolates with no dominant clones. Overall, these results indicate that Swedish pig husbandry, characterized by indoor rearing of fattening pigs, age-segregated rearing, sow vaccination, enhanced biosecurity, and restricted straw access largely prevents tonsillar colonization by ER aligning with the low occurrence of clinically diagnosed erysipelas in such herds. For wild boars, the high isolation rate suggests that wild boar could act as a reservoir and potential source of infection for domestic pigs. The potential zoonotic risk should also be considered.

Animals

Specificity in response of vaccinated swine and mice to challenge exposure with strains of Erysipelothrix rhusiopathiae of various serotypes.

Swine and mice were vaccinated with standard erysipelas adsorbate bacterins made from Erysipelothrix rhusiopathiae of serotype 2 and were subsequently exposed to pathogenic strains of E rhusiopathiae, serotypes 1, 2, 4, 9, 10, and 11. Response to challenge of immunity in swine was determined by presence of urticarial lesions at the sites of intradermal injection of culture; response in mice was determined by the quantal (live-dead) method. After vaccination with standard bacterins, swine and mice were significantly more susceptible (P less than of equal to 0.01) to infection with strains of serotypes 9 and 10 than with strains of serotypes 1, 2, 4, or 11. An adsorbate bacterin made from the challenge strain of serotype 10 induced specific immunity to homologous challenge exposure in swine but not in mice. Bacterins made from the other challenge strains induced little or no immunity.

Animals