Publications by authors named "E A Mel'nikova"

Aim: The search for etiopathogenetic agents to prevent the development of severe and extremely severe COVID-19 remains relevant. A placebo-controlled randomized clinical trial was conducted to evaluate the efficacy and safety of the antibody-based biological drug (Raphamin).

Materials And Methods: 785 outpatients 18-75 y.

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Aim: To study the possibility of using polymorphisms of genesTCF7L2,FABP2,KCNQ1,ADIPOQas markers for predicting the development of type 2 diabetes mellitus (T2D) in the population of Novosibirsk.

Materials And Methods: On the basis of prospective observation of a representative population sample of residents of Novosibirsk (HAPIEE), 2 groups were formed according to the case-control principle (case people who had diabetes mellitus 2 over 10 years of observation, and control people who did not developed disorders of carbohydrate metabolism). T2D group (n=443, mean age 56.

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Background: One of the main syndromes characteristic of the patients suffering from the diseases of the musculoskeletal system is postural instability. Stability training is a functional method for the restoration of postural balance in the patients presenting with the diseases of the musculoskeletal system.

Aim: The objective of the present study was to determine the predictors of the effectiveness of stability training based on biological feedback in the patients with the diseases of the musculoskeletal system.

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The effects of bone marrow multipotent mesenchymal stromal cells and their secretion products on the subpopulation composition of thymic and splenic lymphocytes were studied in female Wistar rats with experimental chronic inflammatory process in the internal genitals. Stromal cells and medium conditioned by these cells in different administration routes (intravenous or lymphotropic injection) produces different modulating effect on blood leukocyte count and on subpopulation composition of the splenic and thymic lymphocytes. The most manifest anti-inflammatory effect was observed after lymphotropic injection of multipotent mesenchymal stromal cells creating a high concentration and long persistence of the factors produced by these cells in the focus of inflammation.

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We studied the effect of a biomedical cell product (bone marrow multipotent mesenchymal stromal cells and products secreted by these cells in conditioned medium) on subpopulation composition of lymphoid cells of central and peripheral lymphoid organs of Wistar rats under normal conditions. Changes in the subpopulation composition of lymphoid organs depended on the route of administration of biomedical cell product.

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