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Biomedical subjects

A V Maksimenko

Publications and source records attributed to A V Maksimenko.

At least 19 recordsLinked to original sources

[Thrombin: structure-function relationship in biochemical interactions].

Data on the content and localization of the recognition site (exosite) for high molecular weight substrates in the thrombin molecule have been summarized. It has been shown that this center, which binds anion sites of macromolecules, plays a key role in regulation of thrombin activity. Data of a proteolytic mechanism of platelet receptor activation by thrombin are reported. Prospects in biomedical studies of thrombin derivatives are discussed with the emphasis on developing new therapeutic tools and combined courses of thrombolytic therapy. Possibilities are discussed of developing a computer model of thrombin interactions for theoretical and applied purposes.

Binding Sites

[Assessment of the composition and structure of covalent complexes of superoxide dismutase with aldehyde dextran by analytical ultracentrifugation].

Superoxide dismutase was covalently coupled wih aldehyde dextran, a polymeric carrier of molecular mass of 70 kDa. Modification produced an increase in the enzyme thermostability. Modified preparations retained a high specific activity. The composition of the thus obtained conjugates was analyzed by the ultracentrifugation and diffusion methods. The protein induced the destruction of aldehyde dextran, the enzyme being modified by its fragments. The presence of aldehyde dextran excess in the incubation medium promoted superoxide dismutase dissociation into individual subunits. At the enzyme/carrier ratio of 1:02 modification occurred as covalent coupling of the biocatalyst subunits and its one-point modification.

Dextrans

[Antifibrotic effects of aldehyde dextran modified superoxide dismutase in experimental silicosis].

The present paper dwells on biomedical study of aldehyde dextran modified superoxide dismutase. Pharmacokinetic data demonstrated that modification of superoxide dismutase increased its half-time. A rat model of experimental silicosis showed that aldehyde dextran modified superoxide dismutase inhibited evolving fibrosis in the lungs. The same dose of native enzyme produced no therapeutic effect. Thus, superoxide dismutase can be considered as a potential agent for treatment of fibrosis due to its modification.

Aldehydes

[Comparative study of the properties of preparations of native and modified collagenase].

Collagenase was gradually modified by aldehyde dextran and hyaluronidase. The modification increased enzyme stability and widened pH-optimum of its activity against specific and biological substrates. The modified complex with collagenolytic and hyaluronidase activity accumulated in the lungs of mice after intravenous injection. These results demonstrate its possible use for the treatment of lung disorders.

Aldehydes

[Thrombolytic action of urokinase preparation covalently bound to modified thrombin].

Urokinase was covalently bounded with modified thrombin. Thrombin was modified by carbodiimide and 1, 12-dodecamethylenediamine. In this conjugate thrombin is not catalytically active and does not induce platelets aggregation. The catalytic properties of modified urokinase do not essentially differ from native enzyme but its thermostability increases. The modified urokinase thrombolytic effect is at least 10-fold higher than the native one. In femoral arteries of experimental thrombosis the conjugate urokinase-thrombin brings about total thrombolytic effect as early as 1.5 hours after injection (2500 IU per 1 kg of the animals weight). The causes of the observed effect were discussed.

Animals

[Action of dextran-modified hyaluronidase in experimental silicosis].

Dextran-modified hyaluronidase was inhaled or intraperitoneally injected for 4 months to mice with silicosis. Stabilized hyaluronidase was shown to have a marked inhibitory effect on the development of lung fibrosis. Drug inhalation proved to be the most effective. An antifibrotic effect of dextran itself has been observed.

Administration, Inhalation

[Fibrinolytic action of an enzyme preparation covalently bound to modified thrombin].

Successive thrombin modification by carbodiimide and aliphatic diamines decreases esterase and fibrin-coagulating activity of the enzyme. Modified thrombin causes no platelet aggregation. Water-soluble enzyme conjugates devoid of fibrinogen-coagulating action and possessing increased fibrinolytic affinity to the site of fibrin clot location have been obtained by covalent binding of chymotrypsin to modified thrombin.

Affinity Labels

[Drug preparations of immobilized enzymes with enhanced affinity for the site of action].

Several approaches to development of systems for directed transport of drugs are illustrated by an example of thrombolytic therapy. Preparation and properties of enzyme derivatives with increased tropism to the thrombus material due to modification of enzymes by fibrinogen or specific antibodies are discussed. The data on directed transport of drugs under the action of the magnetic field and on the selective action of drugs on culture cells are also presented.

Animals

[Activity of native and dextran-modified hyaluronidase in in vitro and in vivo systems].

Modified hyaluronidase derivatives have been obtained. Covalent coupling of the enzyme with aldehyde dextran results in 65-85% protein binding to the carrier, residual catalytic activity accounting for 90-100% of the baseline. Modified hyaluronidase is more thermostable than the native enzyme. The data on intravenous drug distribution in the mouse organs are promising and ensure effective use of modified hyaluronidase for the treatment of pulmonary diseases.

Animals

[Salt ion interaction with the protein molecule: the facts and the concept].

The effect of salt concentration and its nature on some properties of alpha-chymotrypsin (the catalytic activity, the solution optical density, the sedimentation coefficient) has been considered. The limiting stage of enzyme-salt interaction has been shown to change with the variation of experimental conditions. As salt concentration increases the surface electrostatic interaction of salt ions with the enzyme molecule changes by ions penetration via certain channels within the protein globule and their subsequent binding to regulatory centers. The difference in ions nature and binding centers provides the variety of modifications observed. At high salt concentrations the solvent structure becomes predominant.

Catalysis

Selective killing of smooth muscle cells in culture by the ricin A-chain conjugated with monoclonal antibodies to a cell surface antigen via a dextran bridge.

Monoclonal antibodies to a surface antigen of the modulated smooth muscle cells originally isolated from the rat aorta media were conjugated with ricin A-chain via an oxidized dextran bridge. The interaction of cultured cells with the conjugates obtained and with control substances was monitored following incorporation of 14C-leucine radioactivity. It was found that 14C-leucine incorporation was suppressed by 80-90% at a conjugate concentration of 10(-6)-10(-7) M. Antigen-negative cells (line IAR; rat hepatocytes) were insensitive to the conjugate at any concentration used. Control use of purified ricin A-chain, native or oxidized dextran, specific and nonspecific IgG did not affect normal 14C-leucine incorporation. The data obtained may be useful for designing targeted drug transport systems and for selective screening of modulated smooth cells in vascular pathology models in vivo.

Animals

Water-soluble urokinase derivatives of combined action.

Modification of urokinase by substances possessing useful therapeutic activity permits combined action preparations to be obtained. The catalytic properties of the modified enzyme are close to those of native urokinase. The attachment of sodium nitroprusside to it provides vasodilator action with a prolonged effect. Modification of urokinase by heparin produces stabilized preparations possessing fibrinolytic and anticoagulation activity simultaneously. The possibility of repeatedly modified urokinase obtaining has been demonstrated experimentally. Urokinase-heparin-sodium nitroprusside conjugates have fibrinolytic, hypotensive and anticoagulant effect simultaneously. The approaches suggested indicate possible new ways of creating effective therapeutics.

Adenosine Diphosphate