[Biocompatible properties of implantable polymeric materials].
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Biomedical subjects
Publications and source records attributed to L I Slutskiĭ.
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It is shown that the level of DNA, RNA, collagen, non-collagen proteins, hexoses and glycosaminoglycans is changed when making the experimental gastric ulcer in rats. Solcoseryl stabilises the level of DNA, RNA and collagen, stimulating the reparation processes in ulcer.
The stimulatory action of Bacillus mucilaginosus exopolysaccharide on proliferative processes in experimental gastric ulcer healing. With the drug, the levels of collagen, noncollagen proteins, glycosaminoglycans, DNA, and RNA in the ulcer tissue.
The study investigated a stimulating effect of tris-[2-hydroxyethyl] ammonium salt of iron-containing polyacryl acid on proliferative processes in the connective tissue in development of experimental gastric ulcer. The drug was found to exhibit an ulcerostatic effect, to change the levels of collagen, noncollagen proteins, glycosaminoglycan fractions, DNA and RNA.
In local treatment of patients with II-IIIA degree burns with the area of from 1.5 to 20% of body surface, the use of hydrogel on the basis of a polymeric sorbent Regencur contributed to attenuation of pain, 2-fold reduction in number of dressings, creation of favourable conditions for course of the reparative processes in burn wounds.
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It has been demonstrated in rats with experimental gastric ulcer that 1-(chloromethyl) silatrane intensifies the development of granulation-fibrous tissue and favours optimization of the ratio of collagens and glycosaminoglycans, the main connective tissue biopolymers. Furthermore, 1-(chloromethyl) silatrane produces a more pronounced effect on hexosamine-containing glycoproteins in the ulcer tissue as compared with methyluracil and oxyferriscorbon. At the same time, judging by the time course of sialoproteins, the antiulcerous drugs, methyluracil and oxyferriscorbon, are much more effective antiinflammatory agents than 1-(chloromethyl)silatrane.
Experiments on rats were made to study the effect of I-(chloromethyl) silatrane and I- (ethoxy) silatrane and that of triethanolamine and chloromethyl triethoxysilane on biochemical parameters of granular-fibrous tissue. The preparations were applied to a wound defect in the form of liniments. Silatranes were found to stimulate proliferation of the cells and to increase their biosynthetic activity, to favour accumulation of collagen and non-collagenic proteins, and reduction of the inflammatory phenomena. The silicon-containing fragment of the silatrane molecule chloromethyl triethoxysilane produced an analogous but less marked action. Triethanolamine containing no silicon was found to be as less active. These data indicate that silicon entering the silatrane grouping is of great importance for the occurrence of its biological activity.
Experiments on rats were performed to study the effect of I-/chlormethyl/silatrane and I-/ethoxy/silatrane as well as that of triethanolamine and /chlormethyl/triethoxysilane on the biochemical characteristics of granular-fibrous tissue. The drugs were applied to the wound in the form of liniments. Silatranes stimulated cell proliferation and raised biosynthetic activity of the cells. They also favoured collagen and non-collagenous protein accumulation and reduced the inflammatory manifestations. The silicon-containing fragment of the silatrane molecule, /chlormethyl/triethoxysilane, produced an analogous but less pronounced action. Triethanolamine containing no silicon appeared to be far less active. These data indicate that the presence of silicon in the silatrane grouping is of great importance for its effective biological function.
Tissues of 38 varieties of human skeletal tumors were studied by a complex of biochemical assays. It was found that such biochemical parameter as concentration of connective tissue components points to the degree of malignancy. The peculiarities of biochemical characteristics of skeletal tumors are of importance in differential diagnosis and may be used in the examination of tissue specimens obtained by biopsy or during surgery.
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The authors studied the effect of propoxysilatran (POS) on the biosynthesis of the main connective tissue biopolymeres. The use of POS in the form of 0.5 and 2.0% ointments on lanolin-vaseline base caused stimulation of cellular proliferation in the granulation fibrous tissue developing in the open skin defects of albino rats. Stimulation of cellular proliferation in these animals was accompanied by increase of collagen biosynthesis and of noncollagen proteins. In concentrations of 10(-3)--10(-4) M POS caused intensification of collagen biosynthesis (formation of peptide-bound nondialyzed 14C-oxyproline) in vitro in the cartilage tissue of chick embryos. Thus, silatrans are biologically-active substances producing a regulating effect on the course of the reparative-proliferative processes in the connective tissue.
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