Blower-driven artificial respirator for large animals.
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Biomedical subjects
Publications and source records attributed to H Ejima.
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Autoantibodies and erythrocyte membrane proteins were analyzed in a case of a dog with autoimmune hemolytic anemia (AIHA). In crisis phase, antiglobulin test was positive. The eluate from the erythrocytes of the dog with AIHA gave agglutination against autologus erythrocytes. Immunoglobulin subclasses in the eluate were revealed to be IgG and IgA by the double diffusion test. Comparing the SDS polyacrylamide gel electrophoretic patterns of erythrocyte membrane proteins between the crisis and remission phases, there was a change in the protein on protein 4.1 region. However, there were no changes in blood group typings in two phases.
Ultraviolet (UV)-irradiated whole dog blood prevented the initiation of proliferative responses in allogeneic mixed lymphocyte reactions (MLR). When dogs were given 4 weekly intravenous transfusions of UV-irradiated allogeneic donor whole blood, peripheral blood lymphocytes (PBL) of the recipients responded less significantly to donor PBL in MLR for over one week after the final transfusion. Red blood cell (RBC)-crossmatching of these dogs was negative. Dogs treated with UV-irradiated blood did not produce anti-donor PBL antibody, or IgG, IgM and C3 determined by the indirect Coombs test. These dogs also had negligible delayed type hypersensitivity (DTH) responses to donor PBL at the end of the treatment period, recognized as slightly suppression of skin graft rejection. In contrast, six dogs receiving injections of untreated allogeneic whole blood evidenced high proliferation in MLR, agglutination in RBC-crossmatching, acute rejection of skin grafts and three of them produced C3 in the Coombs test.
A high titer of cytotoxic antibody against donor lymphocytes, tentatively designated as anti-F1, was found in one cat who received 3 times of skin allograft from the same donor. The anti-F1 antibody titer was 1:16, and the antibody activity was mostly detected in the IgG fraction. A cross-absorption test using erythrocytes from F1-positive animals revealed that the F1(+) antigen recognized by anti-F1 antibody was expressed on erythrocytes as well as lymphocytes. The frequencies of F1(+) and F1(-) types in 81 healthy cats, involving all the cats used for allo-immunization in the present study, were 30.9 and 69.1%, respectively. Moreover, F1 antigen was considered to be a hereditary antigen from family studies.
The blastformation tests using concanavalin A and pokeweed mitogen were carried out on peripheral blood lymphocytes obtained from cats infected with feline immunodeficiency virus (FIV). The infected cats included those showing multiple chronic disease, those with a single mild sign, and one with no clinical sign. The infected cats showed significantly lower mitogenic responses of peripheral lymphocytes to both mitogens and lower lymphocyte counts as compared to uninfected healthy cats. These immunologic alterations in the infected cats may be closely related to the development of immunodeficiency-like disorders associated with FIV.
In order to examine the change in adrenocortical responses with age in dogs, 36 healthy beagle dogs were divided by age into 6 groups and were treated with ketamine or thiopental. The plasma cortisol concentrations were determined before and after the treatment. The concentrations prior to the induction of anesthesia were 2.23 +/- 0.44 micrograms/dl (mean +/- SD) in pups (2 to 3 months old), 4.35 +/- 2.04 micrograms/dl in adults (2 years old), and 3.40 +/- 1.25 micrograms/dl in aged dogs (8 to 10 years old). This result indicated the following order of plasma cortisol levels in dogs: pups less than aged dogs less than adults. The plasma cortisol concentrations after ketamine administration tended to increase. This suggested that the adrenocortical function in the dog was stimulated by ketamine. In the ketamine treated dogs, significant differences were demonstrated among the age groups. Namely, a significantly lower response was noted in pups compared to adults or aged dogs (p less than 0.001). On the other hand, the plasma cortisol levels after the thiopental treatment showed a temporary slight increase in aged dogs but tended to decrease in pups and adults. Thiopental was found to have a suppressive effect on the adrenocortical function in dogs in contrast to ketamine.
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