Publications by authors named "Valery K Brel"

Article Synopsis
  • A new series of heterocyclic compounds featuring a specific bicyclic structure were created and tested for biological activity.
  • The synthesis involved a Cu(I) catalyzed cycloaddition using starting materials that included a specialized alkyne and various nitrogen-containing azides.
  • Some of these compounds showed promising antiviral effects against Marburg and Ebola viruses, and their effectiveness may be linked to their ability to target lysosomes and their hydrophobic interactions.
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Using the methodology of "click" chemistry, a singular method has been developed for the synthesis of unique conjugates based on sesquiterpene lactones: dehydrocostuslactone and alantolactone with polyalkoxybenzenes. To expand the structural range of the resulting conjugates, the length of the 1,2,3-triazole spacer was varied. For all synthesized compounds, the cytotoxic profile was determined on the cell lines of tumor origin (SH-SY5Y, HeLa, Hep-2, A549) and normal Hek 293 cells.

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Using the methodology of "click" chemistry, a series of conjugates of 3,5-bis(benzylidene)-1-(prop-2-yn)piperidin-4-ones with 4-alkyl-3-azidomethyl-2-ethoxy-2,5-dihydro-5H-1,2 oxaphosphol 2-oxides was synthesized. All newly obtained compounds 8-18 were characterized by H, C, P, F NMR and IR spectroscopy. The potential antitumor activity of the synthesized conjugates8-18was studied in terms of their ability to influence the viability of variouscancercell lines, including A549, SH-SY5Y, Hep-2, and HeLa.

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Inorganic-organic hybrid luminescent materials have received great attention for their potential applications in a wide range of clean/renewable energy-related areas, including photovoltaics and solid-state lighting. Herein, we present a unique and general "Mn + Cu" approach by blending two earth-abundant luminogenic metals, manganese and copper, within a single ionic structure to construct a remarkable family of low-cost and multifunctional hybrid materials featuring dual emission, as well as triboluminescence and second-harmonic generation response. The novel hybrid materials are made of diphosphine dioxide-chelated [Mn(O∧O)] cations and various anionic [CuI] clusters, ensuring manifestation of dual phosphorescence streamed from octahedral Mn ions (605-648 nm) and iodocuprate anions (480-728 nm).

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Indibulin (D-24851) derivatives with bisphosphonate fragment connected to the N1 atom of imidazole ring were synthesized by alkylation of (indolyl-3)methylglyoxylates with ethylenebisphosphonate. Biological evaluation of targeted compounds 4a-d using the phenotypic sea urchin embryo assay provided evidence that replacing of p-chlorobenzene ring in indibulin by bisphosphonate group did not eliminate antimitotic microtubule destabilizing activity. The most active molecule, tetraacid 5a, at physiological pH formed tetrasodium salt 6a with aqueous solubility value of at least 10 mg/mL.

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The first observation of luminescence for Mn(ii) complexes with a square-pyramidal geometry (C) of the metal is reported. The complexes of such type, namely [Mn(L)Hal]X, where L is an O,O'-chelating ligand MeN-CH(PhP[double bond, length as m-dash]O), Hal = Cl or Br, and X = Br, I or [MnCl], show at ambient temperature red photoluminescence (λ≈ 620 nm) with millisecond lifetimes (3.8-7.

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A series of camphecene and quinolizidine alkaloid (-)-cytisine conjugates has been obtained for the first time using 'click' chemistry methodology. The cytotoxicity and virus-inhibiting activity of compounds were determined against MDCK cells and influenza virus A/Puerto Rico/8/34 (H1N1), correspondingly, in in vitro tests. Based on the results obtained, values of 50 % cytotoxic dose (CC ), 50 % inhibition dose (IC ) and selectivity index (SI) were determined for each compound.

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The design of hybrid (chimeric) molecules containing two different pharmacophores connected via a spacer (linker) is a promising approach to the functionalization of natural compounds and potentially of drug molecules. These are important examples for the use of this approach with anthracycline antibiotics. The use of this methodology may help to eliminate some of the drawbacks of anthracycline drugs, e.

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Unprecedented organic-inorganic hybrid complexes, [Mn(L)3]MnHal4, containing both four- and hexacoordinated Mn2+ ions were synthesized by reacting MnCl2 or MnBr2 with bis(phosphine oxide) ligands (L) such as dppmO2, dppeO2, and 2,3-bis(diphenylphosphinyl)-1,3-butadiene (dppbO2). In the [Mn(L)3]2+ cation of the complexes, the Mn2+ ion features a [MnO6] octahedral coordination environment (Oh), and the [MnHal4]2- anion adopts a tetrahedral geometry (Td). These "two-in-one" complexes exhibit strong long-lived luminescence (τav = 12-15 ms at 300 K) having interesting thermochromic behavior attributed to the thermal equilibrium between two emission bands.

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A series of seventeen tetrazole derivatives of 1,7,7-trimethyl-[2.2.1]bicycloheptane were synthesized using click chemistry methodology and characterized by spectral data.

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Article Synopsis
  • The hybrid scorpionate ligand (OPPh2)2CHCH2C(O)Me (L) was synthesized and studied using various spectroscopic methods and X-ray crystallography.
  • The resulting mono- and binuclear complexes were characterized, revealing unique coordination with uranium and lanthanides, and the presence of intramolecular π-stacking interactions among the ligand.
  • Experimental results indicated that the ligand L is particularly effective at extracting f-block elements, like uranium, from acidic solutions compared to its unmodified version.
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A series of novel group of carbocyclic phosphonate analogues of nucleotides with 1,2-oxaphosphol-3-ene ring skeleton was synthesized using easily available 1-(diethoxyphosphonyl)buta-1,2-dienes.

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A series of novel group of unsaturated phosphonate analogues of purine and pyrimidine nucleotides with triple bond was synthesized using easily available synthon.

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Reaction of 1-chloro-4-(diethoxyphosphonyl)alka-2,3-dienes 14,15 with purine and pyrimidine heterocyclic bases in the presence of cesium carbonate afforded new acyclic analogues of nucleotides containing a 1,2-alkadienic skeleton 18-23. Dealkylation of 18-23 furnished phosphonic acids 2a-f. In contrast, alkylation reaction with 1-chloro-4-(diethoxyphosphonyl)octa-2,3-diene 16 led to Z- and E-1,3-alkadienic phosphonates 25a,b and 26a,b.

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