Cellular repair processes: survival of irradiated yeast, bacteria, and phages under different postradiation conditions.
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Biomedical subjects
Publications and source records attributed to A F Mosin.
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We studied the changes in the population density of the red-backed vole (Clethrionomys rutilus Pall.) on the northern coast of the Sea of Okhotsk (60 degrees N) during three population cycles (1980-1990). A total of 3111 animals were studied, including 1006 alive voles. For evaluation of the population stress and food deficit, a complex of biochemical (blood level of glucose and liver levels of glycogen and lipids) and physiological (blood content of leucocytes, spleen weight, etc.) indices was used. At a high population density, the influence of stress continues during the reproductive period, after its termination, and, supposedly, until the beginning of a new reproductive period, while at a low population density, the consequences of stress were expressed only in the second half of the reproductive period. The signs of starvation were recorded only in some semiadult voles in a high density population. It has been confirmed that stress acts as a mechanism involved in regulation of the population density of small rodents.
Free Ca2+ concentration in thymocytes increased 0.5-1.5h after gamma-irradiation (10 Gy) as was measured by Quin-2AM fluorescent probe. Cycloheximide, a protein synthesis inhibitor, suppressed Ca2+ increase and inhibited radiation-induced thymocyte death. EL-4 thymoma cells did not exhibit any changes in free Ca2+ concentration and interphase death after gamma-irradiation. It is believed that the radiation-induced increase of free Ca2+ concentration in thymocytes may induce their death.
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The effect of starvation has been investigated on the content of glucose and lipids in the blood plasma, on the level of leucocytes in the peripheral blood and on the concentration of total lipids and glycogen in the liver. It was found that in both species of the voles, starvation within 20-22 hours sharply decreases glucose content and increases lipid content of the blood plasma. The liver glycogen becomes almost completely exhausted. These changes are more significant than those observed under similar conditions in laboratory rodents (albino mice and rats). During starvation of the voles, the level of leucocytes drastically decreases, whereas lipid content of the liver significantly increased. These changes are absent in laboratory rodents. The decrease in the content of glucose and in the level of leucocytes in the blood is more significant in C. rufocanus than in C, rutilis. On the contrary, accumulation of the lipids in the liver is more intense in the latter. The recovery of the investigated indices after refeeding is very slow. Possible significance of these re-arrangements for temperature and immune homeostases, as well as for regulation of other functions in the organism, is discussed.