Pathogenicity of chuzan virus, a new member of the Palyam subgroup of genus Orbivirus for cattle.
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Biomedical subjects
Publications and source records attributed to Y Kono.
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Five virus strains with identical antigenic properties were isolated from 3 RBC suspensions obtained from 2 healthy sentinel calves and from 2 pools of Culicoides oxystoma in cultures of a hamster lung cell line (HmLu-1). The virus was tentatively named Chuzan virus. The Chuzan virus was classified as a new member of the Palyam subgroup of the genus Orbivirus on the basis of its physicochemical, morphologic, and antigenic properties.
An epizootic of congenital abnormalities of calves was observed in the Kyushu district of Japan from November 1985 through April 1986. The main clinical signs of the disease were impairment of mobility and signs of impairment of the nervous system. Opisthotonos was pronounced, and almost all calves were unable to suckle by themselves. The main macroscopic pathologic changes were hydranencephaly and cerebellar hypoplasia. Although an etiologic agent was not isolated from the calves, serotest results of precolostral serum samples indicated that 128 of 139 (92%) abnormal calves had antibody for Chuzan virus, a new virus belonging to the Palyam subgroup of the Orbivirus genus; 34 healthy calves in the epizootiologic area did not have antibody for the virus. The presence of Chuzan virus in Kyushu in 1985 was confirmed serologically.
Horse erythrocytes treated with equine infectious anemia virus hemagglutinin were found to be lysed after incubation with fresh horse serum at 37 degrees C. Fresh guinea pig serum induced more efficient hemolysis than horse serum. Direct immunofluorescence test revealed the adsorption of complement factors on the surface of the erythrocytes. Calcium and magnesium ions were necessary for the hemolysis to take place. Antibody against equine infectious anemia virus enhanced the virus-induced complement-mediated hemolysis. These observations indicated that the classical pathway of complement activation was responsible for this virus-induced hemolysis and suggest the possibility that virus antigen, anti-viral antibody and complement may play an important role in the genesis of the anemia of horses infected with the equine infectious anemia virus.
Horse erythrocytes treated with equine infectious anemia virus hemagglutinin were phagocytized by cultivated horse leukocytes (mainly macrophage-like cells and partly polymorphonuclear cells) after incubation with fresh horse serum but not with inactivated horse serum. The phagocytosis began as soon as the erythrocytes were added to the leukocyte cultures, and the majority of the reaction proceeded within 30 minutes. Addition of antiserum showed a slightly suppressing but no enhancing effect on the phagocytosis. Phagocytosis seemed to be caused by the recognition of the third complement component on the affected RBC with the receptors on phagocytes, but not by the recognition of immunoglobulin. Since cultivated leukocytes were able to phagocytize erythrocytes which were treated with a quantity as small as 1/16 units of hemagglutinin, and since the hemagglutinin-antibody complex also could bind to erythrocytes and induced them to become phagocytized, the reaction appears to play an important role in the mechanisms of anemia and formation of sideroleukocytes in horses infected with the equine infectious anemia virus.
We have established four cell lines in vitro from peripheral leukemic cells of four independent enzootic bovine leukosis (EBL) cattle. All cell lines exhibited differentiated B-cell characters. Two of them produced infectious bovine leukemia virus (BLV), but the others did not. Nonproducer cell lines contained single copies of defective BLV proviral genomes with the same integration profiles as the uncultured cells. On the other hand, numerous proviral copies were detected in producer cell lines. One of the producer cell lines, BL407, whose original uncultured cell contained complete and defective proviral genomes retained the original two copies and had increased only complete genomes in different integration sites after long term culture. These findings suggest that the monoclonal leukemic cells from EBL cases are preferentially established in vitro irrespective of their proviral structures, and the producer B-lymphoid cells amplify their proviral copies by reinfection with viruses re-expressed from the cells during in vitro cultivation.
The energy metabolism of kidney and renal function were studied in rats following an IV injection of living Escherichia coli. Energy charge (ATP + 0.5 ADP/ATP + ADP + AMP) decreased throughout the period studied. Total and ouabain-sensitive Na-K ATPase activity of renal cortex homogenate decreased markedly at 3 hr followed by gradual recovery. Polyulia was seen at 3 and 6 hr followed by oliguria at 12 hr after E. coli injection. PSP excretion test showed a marked decrease throughout the time course. In contrast, creatinine clearance decreased only at 12 hr. From these results, it was clarified that the renal insufficiency following bacteremia occurs in two different stages; the early stage with a high urinary output accompanied by decreased Na-K ATPase activity suggesting deterioration of proximal tubular functions and the late stage with oliguria in which glomerular filtration is severely depressed. In both stages, renal energy metabolism is markedly disturbed.
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