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M Sanda

Publications and source records attributed to M Sanda.

36 records · Page 2Linked to original sources

[Preventive effect of fosfomycin on the renal toxicity of cisplatin].

Cisplatin caused toxic effects in adult male rats, such as renal disturbance, decrease of platelet and WBC, increase of RBC, elevation of GPT and GOT activity, decrease of plasma protein and albumin, loss of body weight gain and lethal effect when treated intravenously with 1 mg/kg/day of cisplatin for 12 days. Fosfomycin (FOM) exerted preventive effects on the renal disturbance, the changes in blood cells and plasma protein and the lethal effect induced by cisplatin when treated with a combination of FOM and cisplatin. However, FOM did not prevent the cisplatin-induced effects on GPT and GOT activity and body weight gain. These results suggest that FOM prevents the cisplatin-induced disturbance of renal and hematopoietic function but does not the cisplatin-induced hepatic disturbance.

Alanine Transaminase↗

The effect of BCG on extravascular mononuclear cell accumulation in vivo.

BCG injection produces an increased accumulation of adoptively transferred 51Cr-labelled mononuclear cells at the site of inflammatory reactions in rats by two mechanisms. Systemic immunization induced a population of "activated" cells which, compared with controls, had an increased life span in the circulation after transfer and migrated in increased numbers to a chemotactic stimulus. These cells also were found in significantly greater than normal levels in the liver. In addition, local injection of BCG selectively attracted adoptively transferred mononuclear cells. These mechanisms help to explain local mononuclear cell accumulation which accompanies tumor rejection following intralesional or systemic BCG immunization.

Animals↗

An IgG thymolytic autoantibody in rats which has specificity for a subpopulation of T cells.

A cytotoxic anti-thymocyte IgG auto-antibody is present in Lewis rats which, in the presence of autologous complement, destroys (in vitro) 12-28 per cent of isologous or autologous thymocytes, a smaller number of lymph node cells and splenocytes, but not bone marrow or circulating lymphocytes. The labile cells in the thymus represent a finite subpopulation which is autologous antithymocyte antibody (ATS) sensitive and steroid resistant. The presence of the autoantibody is randomly distributed in outbred animals whereas in inbred Lewis rats, a strain in which the induction of some autoimmune reactions is under genetic control, the antibody is always present. In this strain, the susceptible T cells and the quantity of circulating autoantibody is significantly depressed during the productive phase of a T-cell mediated disease (adjuvant polyarthritis) and returns to normal after the disease becomes stabilized. There is a direct relationship between the amount of susceptible cells in the thymus and the amount of antibody in circulation, suggesting that the antibody could serve as a marker for a specific subpopulation of thymocytes which may have a regulatory influence on T-cell reactivity.

Animals↗

Physiologic and pharmacologic alterations of rat leukocyte chemotaxis (Cx) in vivo.

The method of adoptively transferring 51Cr-labeled rat leukocytes iv to isologous recipients was used to quantitate the extravascular accumulation of specific cell types at the site of inflammation induced by local injection of various phlogistic agents. Experiments were designed to determine whether cellular accumulation could be modified at the level of the chemotactic factor, by serum components, or by alteration of the responding cell itself. The results indicated a selective attraction of mononuclear cells to the local injection site of BCG and of neutrophils to the injection site of aggregated but not monometric gamma-globulin. Thus, leukocytic accumulation was found to be dependent upon the local generation of specific reactants that were particular to the agent employed. Leukocytic accumulation could also be modified by serum factors. Cellular accumulation was inhibited when leukocytes were exposed to serum that contained phagocytosable particles or after phagocytosis in vitro prior to adoptive transfer. Chemotaxis of lymphocytes could be induced by their preincubation with sera from adjuvant arthritic animals. These observations were confirmed by in vitro studies and by the finding that 6 days after adjuvant injection , lymphocytes but not mononuclear cells accumulated at the noninjected extremity. In the final series of experiments, it was shown that BCG immunization was capable of inducing a unique population of peritoneal mononuclear cells that after adoptive transfer had an enhanced capacity to remain in the circulation, which, in turn, resulted in a functional increase in their accumulation at an inflammatory reaction site. In conclusion, these studies indicated that the chemotactic activity of adoptively transferred cells can be modified by changes in the chemotactic stimuli, can be enhanced or depressed by serum factors, and is a function of the physiologic capability of the cell population employed.

Animals↗

In vivo chemotaxis of rat leukocytes in the presence of circulating chylomicrons.

Dietary-induced chylomicronemia was produced in rats to determine its effect on the chemotactic activity of 51Cr-labelled adoptively transferred isologous leukocytes. Rats fed a low protein high fat diet for 2 months had normal total plasma cholesterol and triglyceride levels, but increased amounts of chylomicrons. Circulating neutrophils and monocytes from animals on a normal diet were able to phagocytose chylomicrons from plasma of those animals on the special diet. Peritoneal exudate cells from the latter animals contained intracellular chylomicrons demonstratable both histologically and biochemically. Neutrophils and mononuclear cells from normal or special fed animals, when transferred to chylomicronemic recipients, had a reduced ability to accumulate at the site of a complement-dependent inflammatory reaction but circulated normally. The defective chemotactic activity observed could be duplicated when cells were allowed to ingest aggregated protein instead of chylomicrons. It was concluded that circulating leukocytes ingest chylomicrons from the plasma with a resultant reduction in their chemotactic activity. The results were discussed in relation to the increased incidence of infection in diabetes characterized by Type I and V hyperlipidemias. It was also suggested that phagocytosis of particulate substances by entrapped leukocytes in atherosclerotic lesions would induce phagocytic enzyme release which could contribute to the eventual destruction of the vascular wall.

Animals↗