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Biomedical subjects

G Trautwein

Publications and source records attributed to G Trautwein.

At least 73 records · Page 4Linked to original sources

Application of the indirect enzyme immunoassay for the detection of antibodies against Erysipelothrix rhusiopathiae.

Sera from swine and rats experimentally infected with Erysipelothrix rhusiopathiae and field sera from swine were investigated for antibodies against E. rhusiopathiae using the microtiter enzyme immunoassay (EIA) and, for comparison, the growth test (GT) and the agglutination test (AT). In principle there was a good correspondence between the results of EIA and those of the two other methods, but EIA and GT were more sensitive than AT. On the basis of the evaluation pattern of GT and AT on swine sera, EIA titers of 1/320 were considered as "chronic erysipelas titers". Compared with GT and AT, the EIA has some advantages: it is not influenced by contamination of the test sera, it takes only a few hours and using the microtiter system it is easy and economical to perform.

Agglutination Tests↗

Immunohistochemical identification and crossreactions of amyloid-A fibril protein in man and eleven other species.

Antisera were prepared in rabbits, sheep or chicken against purified amyloid fibril protein AA from man, mouse, stone marten, dog, cow and hamster. These antisera were tested by immunodiffusion against all purified antigens and applied to tissue sections containing amyloid from man, mouse, hamster, guinea pig, rabbit, cat, dog, mink, stone marten, pine marten, cow and horse. The binding of the antibodies to amyloid in tissue sections was assessed by the indirect immunoperoxidase method. The strongest reactions in the immunodiffusion and immunohistochemical methods were found between amyloid deposits of members of a given species and an antibody raised against protein AA from the same species. In contrast to the lack of cross-reactivity in immunodiffusion (except in the mouse-man relationship), extensive cross-reactions were observed immunohistochemically in phylogenetically related species, e.g. between stone marten, pine marten and mink, or between hamster and mouse. However, cross-reactions were also observed in combinations such as man-mouse, man-dog, man-cat, mouse-horse, and dog-cow. In addition, individual antisera showed variations in immunohistochemical reactivity with amyloid deposits of different members of one given species. Moreover, antisera prepared in rabbits reacted more restrictedly than those prepared in sheep, while rabbit antisera against any AA-protein did not react with rabbit amyloid. Finally, the widest degree of cross-reactivity including almost all mammalian species investigated was observed with a chicken antiserum to human amyloid AA protein.

Amyloid↗

Persistence of acquired immunity to Sarcocystis miescheriana infection in growing pigs.

Sixteen 8-week-old pigs were each experimentally immunized by subclinical infections with 10(3) Sarcocystis miescheriana (syn. S. suicanis) sporocysts and 8 other pigs served as non-immunized controls. Four groups of pigs (each consisting of 4 immunized plus 2 control pigs) were then challenged by infection with 3 X 10(6) sporocysts at either 40, 80, 120 or 160 days post-immunization (dpi) to determine the persistence of the protective immunity against acute sarcocystosis. Pigs challenged 40 dpi demonstrated a solid immunity to lethal challenge and disease. They survived challenge following a mild fever phase whereas both controls died from acute disease. This immunity however, did not prevent the further establishment of parasitic cysts within the host musculature following challenge. The protective immunity against acute disease persisted to 80 dpi, but was not evident thereafter. At necropsy, the clinical and pathological findings in all pigs which had been subjected to challenge were consistent with anamnestic responses of sensitized hosts to re-infection.

Animals↗

[Alteration of cartilage by microbial agents and granulocytes].

Severe polyarthritis was induced in 42 SPF piglets by subcutaneous and intraarticular infection in one joint of the bacterium Erysipelothrix rhusiopathiae (Serotype B, strain T 28), which in its chronic stage morphologically resembles human c.P. The light and electron microscopic examination of the articular cartilage and synovial membrane reveals a parallel evolution of hyaline cartilage degeneration, and activation and proliferation of synovial lining cells. The initial cartilage alteration with demasking of collagen fibrils and focal degeneration of chondrocytes in the erysipelas model is caused by direct action of the microbial agent, fibrin and few granulocytes Erysipelothrix bacteria and neutrophilic granulocytes are able to invade the superficial and intermediate cartilage layers. This model is not considered a suppurative infectious arthritis. In chronic villous erysipelas polyarthritis, which develops without the presence of neutrophils in the cartilage, the invasively growing synovial pannus dominates, which deeply destroys the pre-damaged cartilage, resulting in macroscopic focal or wide-spread cartilage erosion. We consider the poorly vascularized cartilage and the particular fibrosis suitable sites for the extremely long (up to three years) persistence of this microbial agent. The persistence of the agent is considered necessary for the persisting immunological reactions and the perpetuation of erysipelas polyarthritis. With longer duration (1-3 years) of experimental erysipelas polyarthritis the number of bacteriologically positive arthritic joint decreases. Microscopically, the causative bacteria may only sporadically identified.

Animals↗

Pathogenicity of Spiroplasma sp. strain SMCA in rabbits: clinical, microbiological, and histological aspects.

Newborn rabbits inoculated intracerebrally with early-passaged broth cultures of Spiroplasma strain SMCA (suckling mouse cataract agent) either died or developed eye disease. Death occurred 4 to 12 days after infection. Rabbits which died showed hemorrhages throughout the brain, especially in areas leading to the optic nerve, and hemorrhages in the liver. SMCA could be reisolated from brain, liver, and eyes. Rabbits with eye disease did not open their eyes during an observation time of 3 to 4 months. Pathological examination revealed marked microophthalmia and severe cataract formation characterized by complete degeneration of lens fibers and liquefaction and mineralization of the lens. Other ocular changes were chronic panophthalmitis with complete destruction of the retina. Neither eye disease nor death could be induced by inoculating SMCA subcutaneously into newborn rabbits. In adult rabbits, no disease occurred after intravenous or subcutaneous injection or after inoculation into the conjunctival sac.

Aging↗