[Organ weights of the Mongolian gerbils (Meriones unguiculatus)].
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Biomedical subjects
Publications and source records attributed to K Shichinohe.
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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.
Conventional DBA/2 male mice of about 9 weeks of age were inoculated by intraperitoneally injecting EMC virus M variant (10(4) TCID50/0.1 ml/animal) which is passaged in mice. The mice which tested positive for glycosuria and hyperglycemia were examined histopathologically 2 or 5 months after inoculation. The kidneys were examined for thickening of Bowman's capsule and the mesangial matrix. These changes were more clearly observable 5 months after inoculation than they were 2 months after inoculation.
To compare the incidence in the diabetic syndrome in mice reared under sterile and non-sterile conditions, both conventional and SPF DBA/2 N male mice were inoculated intraperitoneally with two doses (10(4) TCID50/0.1 ml or 10(5) TCID50/0.1 ml) of encephalomyocarditis (EMC) virus M variant. The incidence of diabetic symptoms was higher in mice reared under sterile conditions than under non-sterile conditions. It appeared that a difference in animal rearing conditions would affect the sensitivity to EMC virus in mice.
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Spontaneous hyperglycemia, glycosuria, hypoinsulinemia, and glucose intolerance were observed in some WBN/Kob rats, at about 9 months of age, and in all at the age of 17 months. Females did not present this pathology. Histopathologic examination of the pancreas revealed severe changes in male rats at the age of 3 months. Between 3 and 6 months of age a distinct infiltration of inflammatory cells was found around islets and among adjacent acinar cells. At the same time, marked fibrosis was seen around the pancreatic ducts and blood vessels. With advancing age the fibrous tissue gradually invaded extensive areas of the pancreas where also the islets became involved in fibrotic degeneration. At 17 months of age and later, an obvious decrease in islet number and size (less than 50 mu in diameter) was observed, even in relatively unaffected areas of the organ. Frequent bilateral cataracts began to appear at about 15 months of age. Opacities were first observed in the periphery of the lens, then increased rapidly in intensity and extended centripetally. Nineteen-month-old male rats were hypersensitive to exogenous insulin, but showed no significant decrease in blood glucose level when treated with oral tolbutamide. These results suggest that these rats suffered from a decreased insulinogenic response.
In WBN/Kob strain rats, only males spontaneously develop hyperglycemia, glycosuria, hypoinsulinemia and glucose intolerance from about nine months of age. The kidneys of male rats of this strain were histopathologically studied to evaluate the changes which appeared as complications of diabetes mellitus. Thickening of the basement membrane, increase of the mesangial matrix and fibrin-cap lesions were noted in the glomeruli. Armanni-Ebstein degeneration was occasionally found in the tubules. Linear deposition of plasma components such as IgG and albumin in the basement membrane of the glomeruli, tubules and Bowman's capsule characterized the immunohistological pattern. These findings are similar to the findings in diabetic nephropathy in humans. Since the onset of diabetes mellitus in the strain is slow and symptoms are generally mild, insulin administration is usually not necessary for survival. This strain, therefore, appears to be an important animal model for the study of complications of diabetes in humans.