It is known that desynchronosis and physical stress to the point of fatigue are powerful stressors for the body. Studies indicate a depleting effect of the combined stress factors on the adaptive reserves of the organism, especially when the joint exposure is prolonged. However, the adaptive value of the training process in various activities is also well known. In this regard, it seems important to study these two aspects of adaptation when combined effects of light desynchronosis and physical overwork on the body. Р urpose of this study was to study the features of adaptive reactions of rats under conditions of light desynchronosis and physical overwork. Materials and methods . An experimental study was performed on 60 mature male rats of the Wistar breed. For the induction of experimental desynchronosis, the animals of the experimental groups were kept for 10 days in artificial bright illumination (150 LX) or full darkening (2-3 LX). The model of physical overfatigue used the method of forced swimming of rats to complete fatigue in their own modification. At the end of the swim test, all the animals were withdrawn from the experiment and underwent one-step-long decapitation under CO2 with anesthesia. In decapitated animals, to collect serum, the blood was collected in a clean, dry vial. In the blood serum of rats, the biochemical standard method was used to determine the level of lactate. Using the ELISA method and the reagent kit “IBL” (Germany), the concentrations of corticosterone and serotonin were determined. The histological analysis of the stress-realizing organs was carried out according to a standard procedure using light microscopy using the Axioskop 40 microscope from CarlZeiss (Germany). Results. It was found that physical fatigue in rats after daily swimming activities (5 days) was accompanied by a decrease in the level of corticosterone in the blood serum and destructive changes in the adrenal and femoral muscles in comparison with intact animals. In comparison with the intact group, dark deprivation and physical activity did not alter the content of corticosterone, serotonin, and lactate in the blood and caused minor destructive processes in the adrenal glands. Light deprivation and fatigue lowered the level of corticosterone in the blood, caused destructive changes in the adrenal glands and muscles, and increased serotonin levels in serum, but did not change the level of lactate. Conclusions. The features of adaptive reactions of rats under conditions of light desynchronosis and physical overfatigue are determined by the nature of deprivation or the direction of the phase shift (deprivation of light or darkness). Dark deprivation followed by physical overfatigue causes the development of the resistance phase of the general adaptation syndrome, and light deprivation followed by physical overwork is the phase of exhaustion.
The morphology and immunological phenotype of plastic-adherent cells from human colostrum were studied in an in vitro short-term culture (6–7 days) using antibodies to CD3, CD31, CD34, CD45, CD68, vimentin, and osteocalcin. In 20% of the analyzed cultural flasks, nearly equal proportion of fibroblast-like cells and rounded cells was observed. In the 80% of the flasks, cells of regular shape were detected with the presence of single fibroblasts. The diameter of flattened cells ranged from 10 to 100 μm. All plastic-adherent cells did not express CD3 and showed weak binding (w) to the antibodies against CD31, CD34, and CD45. At the same time, we identified adherent cells that readily bound the antibodies against CD68, vimentin, and osteocalcin. According to the literature data, the CD68 + CD3–CD31wCD34wCD45w immunological phenotype of the majority of the adherent cells from the colostrum allows them to be classified as monocytes/macrophages. High expression of stromal antigens—vimentin and osteocalcin—in 40–45% of the adherent cells in the culturing medium lacking any osteogenic supplements (β-glycerophosphate, ascorbic acid, and dexamethason) implies the presence of osteoblasts in the colostrum, which differentiate from mesenchymal stem cells under the action of humoral factors contained in breast milk.
Local and system influence the Repleri gel implants on the base of hyaluronic acid used to correct age-related changes in skin has been studied. Human stromal stem cells with CD44 membrane receptor to hyaluronic acid migrates in vitro into gel structure and maturates morphologically in fibroblast-like forms stained positively with acid phosphatase. Repleri gels implantation in the group of women with local and system age-related changes in homeostasis has positive local effect connected with full deletion of nasolabial fold in facial skin. Repleri gels injection has been decreasing during 1 year the system indices of real biological age as compared with chronological (passport) one. Lipoproteins and aspartate aminotransferase concentrations diminished statistically in women blood. An effect revealed may be considered as potential way of anti-age therapy of not only skin but parenchymal organs. At the same time, a long-term control of homeostasis distant indices in women with serious changes in parenchymal organs is necessary after local Repleri gels injection because of organism’s hormonal reactions.
The weekly in vitro degradation of fibrous-porous non-woven polylactide scaffolds made by aerodynamic formation in a turbulent gas flow has been studied with 37 °С in model RPMI-1640 medium imitated body fluid of organism. Lactate monomers released into solution exponentially and reached slowly a maximum value the end of the observation (5th week of dissolution). At the same time, reducing the concentrations of calcium and inorganic phosphorus ions in solutions contacted with tested samples (10×10×1 mm2) testified about chemical elements adsorption on artificial material. Ions exchange with biological fluids may be a basis of regulated bioactivity of fibrous-porous non-woven biodegradable material in application to intercellular matrix bioengineering for regenerative medicine