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Dive into the research topics where N. F. Salakhutdinov is active.

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Featured researches published by N. F. Salakhutdinov.


Journal of Medicinal Chemistry | 2011

Highly potent activity of (1R,2R,6S)-3-methyl-6-(prop-1-en-2-yl)cyclohex-3-ene-1,2-diol in animal models of Parkinson's disease.

Oleg V. Ardashov; Alla Pavlova; Irina Il’ina; Ekaterina A. Morozova; D. V. Korchagina; Elena V. Karpova; K. P. Volcho; Tat’yana Tolstikova; N. F. Salakhutdinov

(1R,2R,6S)-3-Methyl-6-(prop-1-en-2-yl)cyclohex-3-ene-1,2-diol 1 possesses potent antiparkinsonian activity in both MPTP and haloperidol animal models. The use of compound 1 resulted in nearly full recovery of the locomotor and exploratory activities and was as effective as the comparator agent (levodopa). All eight stereoisomers of compound 1 have been synthesized and the influence of the absolute configuration on the antiparkinsonian activity of compound 1 was shown.


Russian Journal of Organic Chemistry | 2008

Acid-Catalyzed Transformations of Pinane Terpenoids. New Prospects

I. V. Il’ina; K. P. Volcho; N. F. Salakhutdinov

The review discusses recent advances in the field of acid-catalyzed intra- and intermolecular transformations of pinane terpenoids and their oxygen-containing derivatives.


Russian Journal of Organic Chemistry | 2003

Metal Complexes in Asymmetric Oxidation of Sulfides

K. P. Volcho; N. F. Salakhutdinov; A. G. Tolstikov

The review treats asymmetric oxidation of prochiral sulfides to sulfoxides catalyzed by metal complexes.


Tetrahedron | 1998

New reactions of isoprenoid olefins with aldehydes promoted by Al2O3-SiO2 catalysts

N. F. Salakhutdinov; K. P. Volcho; Irina V. Il'ina; D. V. Korchagina; Ludmila E. Tatarova; V. A. Barkhash

Abstract Wide-pored β-zeolite or natural clay askanite-bentonite, when used as catalysts to perform reactions of terpene olefin derivatives with aldehydes, provide unusual transformations yielding new polyheterocyclic compounds. Wide-pored β-zeolite or natural clay askanite-bentonite, when used as catalysts to perform reactions of terpene olefin derivatives with aldehydes, provide unusual transformations yielding new polyheterocyclic compounds, such as: Download : Download full-size image


Bioorganic & Medicinal Chemistry Letters | 2012

Anti-viral activity of (−)- and (+)-usnic acids and their derivatives against influenza virus A(H1N1)2009

Dmitriy N. Sokolov; Vladimir V. Zarubaev; Anna A. Shtro; M. P. Polovinka; O. A. Luzina; N. I. Komarova; N. F. Salakhutdinov; Oleg I. Kiselev

Influenza is a widespread respiratory infection. Every year it causes epidemics, quickly spreading from country to country, or even pandemics, involving a significant part of the human population of the earth. Being a highly variable infection, influenza easy accumulates the resistance mutations to many antivirals. Usnic acid, a dibenzofuran originally isolated from lichens belongs to the secondary metabolites and has a broad spectrum of biological activity. In humans, it can act as an anti-inflammatory, antimitotic, antineoplasic, antibacterial, and antimycotic agent. In this work we studied for the first time the antiviral activity of usnic acid and its derivatives against the pandemic influenza virus A(H1N1)pdm09. A total of 26 compounds representing (+) and (-) isomers of usnic acid and their derivates were tested for cytotoxicity and anti-viral activity in MDCK cells by microtetrazolium test and virus yield assay, respectively. Based on the results obtained, 50% cytotoxic dose (CTD(50)) and 50% effective dose (ED(50)) and selectivity index (SI) were calculated for each compound. Eleven of them were found to have SI higher than 10 (highest value 37.3). Absolute configuration was shown to have critical significance for the anti-viral activity. With minor exceptions, in the pair of enantiomers, (-)-usnic acid was more active comparing to (+)-isomer, but its biological activity was reversed after the usnic acid was chemically modified. Based on the obtained results, derivatives of usnic acid should be considered as prospective compounds for further optimization as anti-influenza substances.


Journal of Molecular Catalysis A-chemical | 2003

Competing Michael and Knoevenagel reactions of terpenoids with malononitrile on basic Cs-beta zeolite

K. P. Volcho; S.Yu. Kurbakova; D. V. Korchagina; E. V. Suslov; N. F. Salakhutdinov; A.V. Toktarev; G.V. Echevskii; V. A. Barkhash

Abstract Basic cesium-beta (Cs-beta) zeolite has been synthesized. It proved to be an effective catalyst in reactions of a number of α,β-unsaturated carbonyl compounds with malononitrile. It is shown that the process is either the Michael or Knoevenagel reaction, or tandem transformations generally initiated by the Michael reaction, which depends on steric hindrance at the carbonyl group and the β-position of the carboncarbon (CC) double bond adjacent to the carbonyl group.


European Journal of Medicinal Chemistry | 2015

Discovery of a new class of antiviral compounds: camphor imine derivatives.

Anastasiya S. Sokolova; O. I. Yarovaya; Andrey V. Shernyukov; Yuriy V. Gatilov; Yuliya V. Razumova; Vladimir V. Zarubaev; Tatiana S. Tretiak; Andrey G. Pokrovsky; Oleg I. Kiselev; N. F. Salakhutdinov

A new class of compounds featuring a camphor moiety has been discovered that exhibits potent inhibitory activity against influenza A(H1N1)pdm09 and A(H5N1) viruses. The synthesized compounds were characterized by spectroscopic analysis; in addition the structures of compound 2 and 14 were elucidated by the X-ray diffraction technique. Structure-activity relationship studies have been conducted to identify the 1,7,7-trimethylbicyclo[2.2.1]heptanes2-ylidene group as the key functional group responsible for the observed antiviral activity. The most potent antiviral compound is imine 2 with therapeutic index more than 500.


Bioorganic & Medicinal Chemistry | 2015

Anti-arthritic agents: Progress and potential

Sergey S. Laev; N. F. Salakhutdinov

Osteoarthritis and rheumatoid arthritis are the two most common types of arthritis. Cartilage breakdown is a key feature of both diseases which contributes to the pain and joint deformity experienced by patients. Therefore, anti-arthritis drugs are of great importance. The aim of this review is to present recent progress in studies of various agents against osteoarthritis and rheumatoid arthritis. The structures and activities of anti-arthritic agents, which used in medical practice or are in development, are presented and discussed. The effects and mechanisms of action of opioids, glucocorticoids, non-steroidal anti-inflammatory drugs, disease-modifying anti-rheumatic drugs, natural products derived from plants, nutraceuticals, and a number of new and perspective agents are considered. Various perspective targets for the treatment of osteoarthritis and rheumatoid arthritis are also discussed. Trials of good quality are needed to draw solid conclusions regarding efficacy of many of the studied agents. Unfortunately, to date, there is no pharmacologic agent proven to prevent the progression of both diseases, and there is an urgent need for further development of better anti-arthritic agents.


Bioorganic & Medicinal Chemistry | 2015

Synthesis and biological evaluation of novel tyrosyl-DNA phosphodiesterase 1 inhibitors with a benzopentathiepine moiety.

A. L. Zakharenko; T. M. Khomenko; Svetlana Zhukova; Olga A. Koval; Olga D. Zakharova; Rashid O. Anarbaev; Natalya Sh. Lebedeva; D. V. Korchagina; N. I. Komarova; Vladimir Vasiliev; Jóhannes Reynisson; K. P. Volcho; N. F. Salakhutdinov; O. I. Lavrik

Tyrosyl-DNA phosphodiesterase 1 (TDP1) is a promising target for antitumor therapy based on Top1 poison-mediated DNA damage. Several novel benzopentathiepines were synthesized and tested as inhibitors of TDP1 using a new oligonucleotide-based fluorescence assay. The benzopentathiepines have IC₅₀ values in the range of 0.2-6.0 μM. According to the molecular modeling, the conformational flexibility of the dibutylamine group of the most effective inhibitor (3d) allows it to occupy an advantageous position for effective binding compared to its cyclic counterparts. The study of cytotoxicity of these compounds revealed that all compounds cause an apoptotic cell death in MCF-7 and Hep G2 cells. Therefore the new class of very effective inhibitors of TDP1 was elaborated.


Bioorganic & Medicinal Chemistry | 2013

New quaternary ammonium camphor derivatives and their antiviral activity, genotoxic effects and cytotoxicity.

Anastasiya S. Sokolova; Оlga I. Yarovaya; Аndrey V. Shernyukov; Мichail A. Pokrovsky; Аndrey G. Pokrovsky; Valentina A. Lavrinenko; Vladimir V. Zarubaev; Tatiana S. Tretiak; Pavel Anfimov; Oleg I. Kiselev; Anatoly B. Beklemishev; N. F. Salakhutdinov

Abstract The synthesis and biological evaluation of a novel series of dimeric camphor derivatives are described. The resulting compounds were studied for their antiviral activity, cyto- and genotoxicity. Compounds 3a and 3d in which the quaternary nitrogen atoms are separated by the C5H10 and С9H18 aliphatic chain, exhibited the highest efficiency as an agent inhibiting the reproduction of the influenza virus A(H1N1)pdm09. The cytotoxicity data of compounds 3 and 4 revealed their moderate activity against malignant cell lines; compound 3f had the highest activity for the CEM-13 cells. These results show close agreement with the data of independent studies on toxicity of these compounds, in particular that the toxicity of compounds strongly depends on spacer length.

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K. P. Volcho

Russian Academy of Sciences

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D. V. Korchagina

Russian Academy of Sciences

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V. A. Barkhash

Russian Academy of Sciences

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O. A. Luzina

Russian Academy of Sciences

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G. A. Tolstikov

Russian Academy of Sciences

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N. I. Komarova

Russian Academy of Sciences

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O. I. Yarovaya

Russian Academy of Sciences

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I. V. Il’ina

Russian Academy of Sciences

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E. V. Suslov

Russian Academy of Sciences

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Alla Pavlova

Russian Academy of Sciences

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