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Biomedical subjects

A Bingen

Publications and source records attributed to A Bingen.

35 records · Page 2Linked to original sources

Frog virus 3 induces a fatal hepatitis in rats.

To define its pathogenesis, the acute degenerative hepatitis caused by frog virus 3 (FV3) has been reproduced in the rat, thus facilitating a greater number of biologic explorations than in the mouse. The histologic and ultrastructural study proves a massive hepatocellular necrosis perfectly compatible with the fatal outcome of the illness 30 hours after the inoculation of one LD100. Critical analysis of the FV3 rat hepatitis induces us to advance three arguments for excluding the direct role of the virus in hepatocytolysis. (1) The hepatocyte is neither the sole nor the first intrahepatic target of the virus. The endothelial barrier and especially the Kupffer cells are completely necrosed several hours prior to the appearance of the first signs of parenchymal cell disturbances. Morphologic observations and, in particular, the evolution in the site and chronology of the cytolysis are confirmed by the variation in the activity of cathepsin D, glutamic pyruvic transaminase, and lactic dehydrogenase in serum. (2) There is a close correlation between the structural alterations in the hepatocyte nuclei and the inhibition in the synthesis of the liver macromolecules. But the discovery of a rat strain sensitive to the virus and another more resistant strain provides evidence that there is no relationship between the sensitivity to the lethal power of the FV3 and the metabolic disorders. (3) The ways in which the FV3 spreads throughout the organism do not explain why the liver is the sole organ attacked. A second etiopathogenic factor, only found in the liver, must be invoked. The possible role of the plasma complement, strongly activated, is suggested, along with that of other toxic substances which can no longer be cleared. The metabolic inhibition directly connected with the FV3 would thus result not in producing the hepatocytolysis but in rendering any cellular regeneration impossible.

Animals↗

[Isolation and culture of human Kupffer cells].

The dissociation of human adult liver parenchyma by collagenase followed by cell separation with centrifugal elutriation allows the Kupffer cells to be isolated. These cells, which may be maintained in culture, retain their main morphological and functional features.

Cell Separation↗

Phagocytic properties displayed by mouse hepatocytes after virus induced damage of the sinusoidal lining.

Frog virus 3 (FV 3) inoculated intravenously into mice damages sinusoidal cells and produces a decrease in the carbon uptake capacity of the liver. Histological and ultrastructural examinations have shown that in FV 3 infected animals part of the inoculated carbon is taken up by the hepatocytes and can be located inside cytoplasmic vesicles or dense bodies. The hepatocytes are also able to phagocyte latex particles of 312 nm in diameter. These observations demonstrate that once the Kupffer cells and the endothelial lining are damaged, hepatocytes can display phagocytic properties.

Animals↗

[A novel model of experimental toxic hepatitis/acute degenerative hepatitis induced by frog virus 3 (FV3) in the mouse (author's transl)].

The i.p. or i.v. injection of frog virus 3 (FV3) in mice produces a hepatitis which leads to the death of the animals within 24 h. This hepatitis is of a purely toxic nature since the virus does not develop at 37 degrees C. The toxic effect of the virus, which can be differentiated from the infectious effect, involves one or more structural proteins. The first pathological changes occur during the first few hours after the injection in the vicinity of the nuclei of the liver parenchyma cells in the form of changes in the chromatin and nucleoplasm. The inhibition of the synthesis of cellular macromolecules and of the function of nuclear enzymes points to the fact that it is the nucleus that is first and foremost attacked. Necrosis and biochemical disturbances in the vicinity of the cytoplasm appear later on. Premedication of the mice with a water-soluble silymarin salt leads to a distinct rise in the survival rate of the animals. The protective function of silymarin is dependent on the dose and on the duration of the premedication. The LD50 of FV3 in those mice which had previously been given silymarin, is approximately three times that of the animals which received no premedication.

Animals↗

[Rat Kupffer cells cultures and their applications to experimental hepatology (author's transl)].

Non-parenchymal cells were obtained by perfusion of rat liver with 0.05% collagenase followed by incubation at 37 degrees C of liver fragments in collagenase in a rotating water-bath. Kupffer cells were separated from endothelial cells by centrifugal elutriation and could be kept alive for several days. They had the same morphology as in vivo and retained the same properties of phagocytosis and pinocytosis. Rat Kupffer cells cultures could be used to investigate a number of unsolved problems of hepatic pathophysiology.

Animals↗