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Biomedical subjects

V B Sadovnikov

Publications and source records attributed to V B Sadovnikov.

At least 19 recordsLinked to original sources

Effects of low-intensity ultrahigh frequency electromagnetic radiation on inflammatory processes.

Low-intensity ultrahigh frequency electromagnetic radiation (42 GHz, 100 microW/cm(2)) reduces the severity of inflammation and inhibits production of active oxygen forms by inflammatory exudate neutrophils only in mice with inflammatory process. These data suggest that some therapeutic effects of electromagnetic radiation can be explained by its antiinflammatory effect which is realized via modulation of functional activity of neutrophils in the focus of inflammation.

Animals↗

Cell death induced by chemical homobifunctional cross-linkers. Cross-linker induced apoptosis.

Physical association of proteins that underlies cytotoxic signal induction and transduction suggests a possibility of regulating cell response by modifying protein-protein interactions. For protein complexing, chemical cross-linking agents have been traditionally used. However, the ability of various cross-linkers to induce and modify cell responses, cell death in particular, is still obscure. We have undertaken the investigation to test the apoptosis-inducing and modifying properties of the homobifunctional cross-linkers-dimethyl suberimidate (DMS) and 1,5-bis(succinimido-oxycarbonyloxy)pentane (BSOCOP). The functional groups of these cross-linkers are different but both are able to interact with available amino groups. It was shown that bifunctional cross-linkers, unlike their monofunctional analogues, are capable of inducing cell death in transformed cells, thus indicating the crucial role of cross-linking in cell killing. DMS- and BSOCOP-treated cells were shown to undergo cell death by apoptosis, though the signaling pathways were distinct. DMS inhibited bcl-X(L) and bak but not bax gene expression, while BSOCOP potentiated bax mRNA synthesis immediately after application. Cell pre-incubation with DMS, but not with BSOCOP, resulted in an increasing sensitivity to TNF, although activities of anti-Fas cytotoxic antibodies were then inhibited. Thus, this study has demonstrated for the first time that chemical cross-linkers are capable of inducing apoptosis by themselves and modifying the TNF-dependent and Fas-mediated cell death that may have potential therapeutic significance.

Animals↗

Functional peculiarities of MAP2 in DBA/2J inbred mice as a component of genetic predisposition to seizures.

We compared the content of high molecular microtubule-associated protein-2 and its phosphorylation by cAMP- and Ca(2+)/calmodulin-dependent protein kinases in the brain of DBA/2J and C57Bl/6 inbred mice. The revealed differences in protein content and phosphorylation can be attributed to the mechanisms mediating audiogenic seizures in DBA/2J mice and to differential sensitivity of these inbred lines to seizure-inducing factors.

Animals↗

[Dimethyl suberimidate as a specific inductor of apoptosis in transformed cells].

A modification of protein-protein interactions can be considered to be a way to regulate cell death. Chemical cross-linking agents have been traditionally used for protein complexing. This study has been undertaken to test a possibility to induce and(or) to modify cell death by a homobifunctional cross-linker dimethyl suberimidate (DMS). It was shown that the protein cross-linking by DMS resulted in a death of transformed cells by apoptosis. DMS-induced apoptosis was accompanied by cell cycle perturbations and down-regulation of p21/Waf1 mRNA expression. The RT-PCR analysis of bcl-2 family genes revealed the engagement of mitochondria in DMS-induced cytotoxicity. Then, the influence of DMS treatment on TNF-dependent and Fas-mediated apoptosis was investigated. Cell pre-incubation with DMS resulted in their increasing sensitivity for the TNF cytotoxic effect, though activities of anti-Fas cytotoxic antibodies were inhibited. The effects observed are probably due to cross-linking of TNF-receptors. Thus, this study first demonstrated that a chemical cross-linker DMS in capable of inducing apoptosis in transformed cells and modifying TNF-dependent and Fas-mediated apoptosis.

Animals↗

[Apoptosis of L929 cells induced by tumor necrosis factor].

We investigated the mode of TNF-dependent death of L929 murine fibroblasts and the influence of overexpression of bcl-2 family genes on this process. Based on morphological and biochemical data it has been shown that L929 cells died after TNF treatment by apoptosis irrespective of TNF dose and protein synthesis inhibition. Analysis of bcl-2 family gene transfectants revealed a down-regulation of TNF-induced apoptosis by bcl-2 and bclX overexpression, and an up-regulation by bax gene.

Animals↗

Microwaves and cellular immunity. I. Effect of whole body microwave irradiation on tumor necrosis factor production in mouse cells.

Whole body microwave sinusoidal irradiation of male NMRI mice with 8.15-18 GHz (1 Hz within) at a power density of 1 microW/cm2 caused a significant enhancement of TNF production in peritoneal macrophages and splenic T lymphocytes. Microwave radiation affected T cells, facilitating their capacity to proliferate in response to mitogenic stimulation. The exposure duration necessary for the stimulation of cellular immunity ranged from 5 h to 3 days. Chronic irradiation of mice for 7 days produced the decreasing of TNF production in peritoneal macrophages. The exposure of mice for 24 h increased the TNF production and immune proliferative response, and these stimulatory effects persisted over 3 days after the termination of exposure. Microwave treatment increased the endogenously produced TNF more effectively than did lipopolysaccharide, one of the most potential stimuli of synthesis of this cytokine. The role of microwaves as a factor interfering with the process of cell immunity is discussed.

Animals↗

Microwaves and cellular immunity. II. Immunostimulating effects of microwaves and naturally occurring antioxidant nutrients.

The effect of 8.15-18 GHz (1 Hz within) microwave radiation at a power density of 1 microW/cm2 on the tumor necrosis factor (TNF) production and immune response was tested. A single 5 h whole-body exposure induced a significant increase in TNF production in peritoneal macrophages and splenic T cells. The mitogenic response in T lymphocytes increased after microwave exposure. The activation of cellular immunity was observed within 3 days after exposure. The diet containing lipid-soluble nutrients (beta-carotene, alpha-tocopherol and ubiquinone Q9) increased the activity of macrophages and T cells from irradiated mice. These results demonstrate that irradiation with low-power density microwaves stimulates the immune potential of macrophages and T cells, and the antioxidant treatment enhances the effect of microwaves, in particular at later terms, when the effect of irradiation is reduced.

Animals↗

Study of protein carbonyls in subcellular fractions isolated from liver and spleen of old and gamma-irradiated rats.

Age- and gamma-irradiation-dependent accumulation of oxidatively modified proteins (measured as carbonyl level) was studied in cytoplasm, mitochondria and nuclei isolated from spleen and liver of 4- and 26-month-old rats. The protein carbonyl levels significantly increased with age in all fractions studied. The carbonyl content was found to be two times higher in the nuclei than in the mitochondria and cytoplasm, which may be related to an extensive modification of lysine and arginine residues in histone molecules. Gamma-Irradiation of rats with 10 Gy caused a rise of protein carbonyls only in their cytoplasm and mitochondria, which was prevented in the animals fed with antioxidants and vitamins for a month before the irradiation. We observed an activation of histone-specific proteases in the nuclei of gamma-irradiated rats. The lack of carbonyl accumulation in the nuclear proteins isolated from tissues of gamma-irradiated animals may be explained by the degradation of oxidized histones by these proteases.

Aging↗

Neutrophils as a source of putative restriction proteases: degradation of mammalian and yeast proteins monitored by two-dimensional gel electrophoresis.

We have compared the ability of intact neutrophils to degrade a complex substrate of proteins from mammalian and yeast origin. The substrate was obtained by biosynthetic labeling, and subsequent lysis of K562 cells (leukemic cell line) and of yeast culture. The mammalian substrate consisted of 619 and the yeast substrate of 185 different polypeptides, as visualized and represented on two-dimensional gel patterns. Upon incubation of the mammalian substrate with neutrophils, the bulk of spots disappeared so rapidly that after 240 min of incubation only 21 spots were detectable. Just one spot remained unaltered in its intensity throughout the whole period of incubation. About 440 spots reveal a t1/2 shorter than 8 min. Yeast substrate is represented by a smaller number of the starting polypeptides (185) from which 55 spots "survive" the neutrophil treatment. About 30 spots have a t1/2 shorter than 8 min. We conclude that neutrophils are equipped with a potent proteolytic apparatus, and this is capable of eliminating various proteins in a highly efficient manner. The system is much less effective in eliminating proteins from distant species, like yeast. Although the cells governing and regulating the immune system are clearly of lymphoid origin, it might well be that the preimmune task of eliminating self antigens in a manner as predicted in the restriction protease hypothesis is performed by neutrophils.

Animals↗

Age- and radiation-dependent changes in carbonyl content, susceptibility to proteolysis, and antigenicity of soluble rat liver proteins.

Soluble liver proteins (SLP) from old and gamma-irradiated young rats were studied with respect to their carbonyl content, the rates of autolysis and degradation by proteinase K, and their antigenicity for mice and compared with SLP from non-irradiated young animals. A significant increase in the carbonyl level was found in SLP from old and gamma-irradiated young rats as compared to SLP from intact young rats. The rates of SLP autolysis and proteolysis by proteinase K were increased in the same animal groups but did not correlate the carbonyl level. At the same time, whereas the antigenicity for mice of SLP from old rats was significantly higher than that of SLP from young rats, the antigenicity of SLP from gamma-irradiated rats did not differ from non-irradiated animals. Enrichment of the diet with antioxidant and vitamin supplements (AVS) during one month before the irradiation caused a decrease in the radiation-induced carbonyl level in rat SLP. However, this raised antioxidant level in animal diet did not influence the rates of SLP autolysis and degradation by proteinase K and also did not alter the antigenicity of these proteins. The data allow us to suggest that the increase in autolysis, degradation by the exogenous proteinase, and antigenicity of SLP from old rats are determined not only by carbonyl formation in these proteins due to action of oxygen radicals but also by other age-specific protein modifications.

Age Factors↗