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Biomedical subjects

A M Korolev

Publications and source records attributed to A M Korolev.

At least 19 recordsLinked to original sources

[Forecasting parameters of acute chemical toxicity according to in vitro conformation changes of proteins].

The authors analyze experimental data on in vitro effects induced by chemicals that were used throughout MEIC toxicologic studies in ovalbumin and acetylcholinesterase of human RBC. Influence on proteins is compared to acute toxicity caused by the chemicals in humans and various cell lines. The conclusion is that the method is prospective for screening of acute chemical toxicity signs in humans.

Acetylcholinesterase↗

Nitric oxide donor increases the efficiency of cytostatic therapy and retards the development of drug resistance.

The potentiality to increase the chemotherapeutic effectiveness of some cytostatics in low, subtherapeutic doses in combination with nitric oxide (NO) donor has been shown. This type of combined therapy results in significant increase in life span and number of survivors among mice bearing leukemias P388 and L-1210. A similar effect was observed for intracerebral leukemia P388 transplantation. In this case the life span of mice treated with cyclophosphamide and NO donor increased by three times in comparison to therapy with cyclophosphamide alone. The coinjection of nitric oxide donor and cytostatics improved the antimetastatic activity of the cytostatics: the index of melanoma B16 metastasis inhibition at the cyclophosphamide monotherapy is 50%; on addition of NO donor the index is over 80%. Comparative studies of NO donor (organic nitrate) and a similar compound in which ONO(2) moieties were replaced by OH groups demonstrated that the presence of NO(2) is required for adjuvant activity of compounds and confirmed that nitric oxide modifies the antitumor effects of cytostatics. It is shown also that nitric oxide donor retards the development of drug resistance to cyclophosphamide.

Abdominal Neoplasms↗

[Nitric oxide donor increases the effectiveness of cytostatic therapy and inhibits the development of drug resistance].

The investigation has established a potential of low-dosage chemotherapy with cytostatics when used in combination with nitric oxide (NO) donor. Such regimen resulted in more animals being cured of leukemias P388 and L1210 and longer survival. Similar effect was reported with transplantable intracerebral leukemia P388 in which case mean survival after cyclophosphamide plus NO-donor was three times as high as that after cyclophosphamide alone. Combination therapy also promoted animetastatic effect: melanoma B16 inhibition by cyclophosphamide alone was 50% vs. 80% after cyclophosphamide plus NO-donor. NO-donor inhibited development of drug resistance to cyclophosphamide.

Abdominal Neoplasms↗

The formation of 2-hydroxy-4-hydroxymethyl-3-(indol-3-yl)-cyclopent-2-enone derivatives from ascorbigens.

A facile preparation is described of 3-(indol-3-yl)-2-hydroxy-4-hydroxymethylcyclopent-2-enone and its N-derivatives in 15-40% yields by the degradation of ascorbigen or its N-derivatives in a warm solution of L-ascorbic acid through a sequential domino reaction. The same cyclopentenone derivatives were obtained in 30-40% yields by the condensation of (N-alkylindol-3-yl)glycolic acids with ascorbic acid. 2,6-Dihydroxy-1-(indol-3-yl)hexa-1,4-diene-3-one and 2-hydroxy-4-hydroxymethyl-5-(indol-3-yl)cyclopent-2-enone were identified as intermediates in this reaction.

Ascorbic Acid↗

[Indole derivatives in vegetables of the family Cruciferae].

The chemical background of the biological activities of vegetables of the Cruciferae family is considered. These vegetables contain alkaloids of the glucobrassicin group that are decomposed by the enzyme myrosinase (thioglucosidase, EC 3.2.3.1) released upon damage to the plant cells. This results in several indole derivatives, with ascorbigen and indole-3-carbinol predominating. In the gastrointestinal tract, these compounds form 5H,11H-indolo[3,2-b]carbazole, natural ligand of the aromatic hydrocarbon receptor (Ah receptor) and a functional analogue of 2,3,7,8-tetrachlorodibenzo-p-dioxin, a dangerous xenobiotic. The indolocarbazole-Ah receptor complex activates the gene of CYP1A1, an isoenzyme of cytochrome P450-dependent monoamine oxidase, which enhances the 2-hydroxylation (inactivation) of estrogens. In its turn, the resulting lowered level of estrogens inhibits the growth of hormone-dependent tumors or prevents their appearance. The mechanism of xenobiotic inactivation, underlying the anticarcinogenic action of food products including vegetables of Cruciferae family and some homogeneous indole compounds, is similar. Some other effects of nutrient indole compounds, e.g., the inhibition of expression of the cyclin-dependent kinase 6 (CDK6) by indole-3-carbinol that leads to the cell cycle arrest in G1 phase, are also considered. Analysis of the biological effects of the Cruciferae diet has helped start clinical studies of indole-3-carbinol as an antitumor and anticarcinogenic remedy for patients with a high risk of tumor diseases.

Brassicaceae↗

Polyfunctional indole-3-carbinol derivatives: 1-(indol-3-yl)glycerols and related compounds, beta-hydroxytryptamines and ascorbigens. Chemistry and biological properties.

Earlier interaction of indole-3-carbinols with L-ascorbic acid and chemical and biological properties of formed 2-skatylderivatives of L-ascorbic acid (ascorbigens) were discussed. In this presentation the properties and stereochemistry of products of interaction of polyfunctional biologically important indole-3-carbinols (indoleglycerol analogs and beta-hydroxytryptamine derivatives) with L-ascorbic acid are investigated. Biological significance of this reaction is discussed.

Animals↗

Ascorbigen and other indole-derived compounds from Brassica vegetables and their analogs as anticarcinogenic and immunomodulating agents.

Searches for the natural compounds that determine the anticarcinogenic properties of a cruciferous-vegetable diet, revealed the products of alkaloid glucobrassicin biotransformations; among these, ascorbigen, an indole-containing derivative of L-ascorbic acid, was found to be the most abundant. Study of chemical properties of ascorbigen showed that it is capable of different transformations in acidic (including gastric juice) and slightly alkaline (including blood) media. The stable and unstable products of ascorbigen transformation determine the biological properties of the compound. The most important product of ascorbigen transformation in gastric juice is 5,11-dihydroindolo[3,2-b]-carbazole, with a binding affinity to the Ah receptor only 3.7 x 10(-2) lower than that of tetrachlorodibenzodioxin. This compound may be responsible for modifying P450 enzyme activities. Ascorbigen and its analogs are available synthetically. Their biological evaluation showed that some of the compounds of these series are immunomodulators. The most active is N-methylascorbigen, which demonstrates therapeutic effects (inhibition of tumor growth, protection of animals from bacterial and viral infections). The immunomodulatory activity of natural ascorbigen may be an additional factor of importance for the anticarcinogenic properties of a cruciferous-vegetable diet.

Adjuvants, Immunologic↗

[Structural reconstruction of chemo-sensitive biomembranes during the action of low molecular weight compounds using spin resonance].

Using the spin probe technique, the changes in the supramolecular structure of the central nervous system synaptic membranes and of olfactory hair membranes of Rana temporaria induced by low molecular weight organic substances of different chemical nature, were investigated. It was found that the membrane structures under study differ considerably in their sensitivity to chemical stimulation and in temporal kinetics of structural transitions. A correlation between physiological parameters of olfactory perception of the compounds used and the parameters of structural transitions in olfactory hair membranes was established. The interrelationship between the experimental data and chemoreception of odorants and mediators as well as the applicability of these preparations for membrane screening of biologically active substances are discussed.

Animals↗

[Effect of extracellular ATP on the characteristics of synaptosomes from the rat cerebral cortex].

The extracellular ATP, Ca2+, Mg2+, ATP-Ca2+ and ATP + Mg2+ affect the optical density (at 520 nm) and turbidity spectra in suspensions of light and heavy synaptosomes and in mitochondria prepared from rat cerebral cortex. The properties of the light synaptosomes are associated only with their volume changes; the heavy synaptosomes and mitochondria also change their refractive indices. These results could be interpreted by structural (conformational) rearrangements occurring in membranes under such conditions. A support for this assumption was found in the studies on the spin-labeled synaptosomes.

Adenosine Monophosphate↗