Publications by authors named "Salakhutdinov N"

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  • - Cationic antimicrobial peptides (AMPs) show potential as both antimicrobial and anticancer agents, and linking them to bioactive molecules may enhance their effectiveness in treating cancer.
  • - In this study, two derivatives of usnic acid were combined with the AMP L-K6 using a new bonding method while both components demonstrated selective activity against cancer cells, specifically targeting the DNA repair enzyme TDP1.
  • - The resulting conjugates showed a range of effects, from decreased activity of the original drugs to increased cytotoxicity against glioblastoma cells, suggesting enhanced therapeutic potential compared to the individual components.
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  • Multidrug resistance (MDR) in cancer therapy is largely due to the overexpression of P-glycoprotein (P-gp), prompting the need for effective P-gp inhibitors to enhance drug efficacy.
  • The study verified the P-gp inhibitory and MDR reversing activities of soloxolone amides, which showed significant binding capability to P-gp, and enhanced the uptake of drugs like Rhodamine 123 and doxorubicin in cancer cell lines.
  • The results indicate that one specific soloxolone amide not only outperformed the established inhibitor verapamil in some cases but also showed potential as a drug candidate for overcoming P-gp-mediated MDR in tumor cells.
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The novel antiparkinsonian agent PA-96 is the focus of our research. PA-96 supported the survival of cultured naïve dopamine neurons, alleviated motor deficits in MPTP and haloperidol-based mice models of Parkinson's disease, and increased the density of tyrosine hydroxylase positive neurons and dopamine concentration in the midbrain of an MPTP-damaged brain. In this work, an HPLC-MS/MS method was developed and validated, and the pharmacokinetics of the agent was investigated in mice after a single or multiple oral administration () and intravenous injection () at various doses.

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Selective synthesis of polycarbonyl conjugates of (+)-fenchone and (+)-camphor was carried out (44-91 % yields) via the ring-opening transformation of 5-acyl-4-pyrones with hydrazones of the corresponding monoterpenoids. A strong influence of the hydrazone fragment on the observed tautomeric equilibrium of the tricarbonyl system was shown. Although the major tautomer of the conjugates is the acyclic polycarbonyl form, the camphor-based conjugates undergo new type of ring-chain tautomerism, diketoenaminone-dihydropyridone equilibrium, and predominantly exist in the cyclic dihydropyridone form in DMSO-d.

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  • Growing scientific interest in orthopoxvirus infections spurred by the 2022 mpox outbreak has led to a focus on developing new antiviral compounds.
  • This research focuses on synthesizing new 2-arylimidazoles that show effectiveness against several orthopoxviruses, including the variola virus.
  • Among the various imidazole derivatives, 1-hydroxyimidazoles stand out for their strong antiviral activity and unique structural features, with the most promising compound showing high selectivity against vaccinia and variola viruses.
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Soloxolone amides are semisynthetic triterpenoids that can cross the blood-brain barrier and inhibit glioblastoma growth both and . Here we investigate the impact of these compounds on processes associated with glioblastoma invasiveness and therapy resistance. Screening of soloxolone amides against glioblastoma cells revealed the ability of compound (soloxolone -methylanilide) to inhibit transforming growth factor-beta 1 (TGF-β1)-induced glial-mesenchymal transition Compound inhibited morphological changes, wound healing, transwell migration, and expression of mesenchymal markers (N-cadherin, fibronectin, Slug) in TGF-β1-induced U87 and U118 glioblastoma cells, while restoring their adhesiveness.

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  • * This study explores reactions between salicylic aldehydes and a specific monoterpene derivative, resulting in various chiral polycyclic products, with some being novel ring structures.
  • * The results indicate that the type of acid catalyst used and the reaction conditions significantly influence the product outcomes, and the study includes detailed mechanistic insights supported by experimental and computational methods.
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At the Institute of Cytology and Genetics (Novosibirsk, Russia) for over 85 generations, gray rats have been selected for high aggression toward humans (aggressive rats) or its complete absence (tame rats). Aggressive rats are an interesting model for studying fear-induced aggression. Benzopentathiepin TC-2153 exerts an antiaggressive effect on aggressive rats and affects the serotonergic system: an important regulator of aggression.

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Glycyrrhizinic acid (GA) is one of the active substances in licorice root. It exhibits antiviral activity against various enveloped viruses, for example, SARS-CoV-2. GA derivatives are promising biologically active compounds from perspective of developing broad-spectrum antiviral agents.

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Topotecan administered intraperitoneally at single doses of 0.25, 0.5, and 1 mg/kg induced chromosomal aberrations in bone marrow cells of F(CBA×C57BL/6) hybrid mice in a dose-dependent manner.

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  • The rise of filovirus outbreaks in Africa has created an urgent need for effective antiviral treatments.
  • Researchers synthesized and tested various derivatives of two compounds, (+)-fenchol and (-)-isopinocampheol, discovering that those with an N-alkylpiperazine cycle showed the strongest antiviral activity against specific viruses.
  • The antiviral effects of these compounds likely come from their ability to bind to surface glycoproteins of the viruses and their lysosomotropic properties, indicating they could potentially be dual-action agents worth further investigation.
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  • The research focuses on finding effective agents against coronaviruses, specifically by synthesizing thiazolo-thiophenes based on usnic acid to inhibit SARS-CoV-2's main protease.
  • Certain modifications of the thiophene groups showed moderate antiviral activity, while others had no effect, with kinetic parameters evaluated for the most promising compound.
  • The most active compound exhibited strong binding to the protease and effective antiviral activity against various SARS-CoV-2 strains, aligning molecular dynamics results with experimental findings.
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Deoxycholic acid derivatives containing various heterocyclic functional groups at C-3 on the steroid scaffold were designed and synthesized as promising dual tyrosyl-DNA phosphodiesterase 1 and 2 (TDP1 and TDP2) inhibitors, which are potential targets to potentiate topoisomerase poison antitumor therapy. The methyl esters of DCA derivatives with benzothiazole or benzimidazole moieties at C-3 demonstrated promising inhibitory activity in vitro against TDP1 with IC values in the submicromolar range. Furthermore, methyl esters -, as well as their acid counterparts -, inhibited the phosphodiesterase activity of both TDP1 and TDP2.

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  • Tyrosyl-DNA phosphodiesterase 1 (Tdp1) is a DNA repair enzyme linked to tumor resistance against topoisomerase 1 inhibitors like topotecan.
  • Researchers synthesized new usnic acid derivatives that inhibit Tdp1 and enhance the effectiveness of topotecan in various cell lines.
  • One promising compound not only improves the response of certain mouse tumors to topotecan but also helps restore normal blood conditions in tumor-bearing mice, suggesting potential for a new cancer therapy class.
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  • The study investigates a derivative of 18β-glycyrrhetinic acid, which shows potential as a P-glycoprotein (P-gp) inhibitor due to its nitrogen-containing structure.
  • Using molecular docking, the derivative was found to bind effectively to P-gp's transmembrane domain with a strong binding energy.
  • Experiments on drug-resistant cancer cells demonstrated that the compound significantly increased the uptake of chemotherapy drugs, enhancing their effectiveness and positioning it as a strong contender for future cancer treatments against multidrug resistance.
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  • * Triterpene compounds like soloxolone methyl (SM) show potential as anticancer agents, as they can induce apoptosis and inhibit tumor growth in breast cancer cells.
  • * SM was effective in reducing cancer cell viability and inducing cell death through various mechanisms, including ROS production and ER stress, particularly against cancer stem cells.
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  • 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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  • - Two methods for creating -menthene epoxide ((1,5,6)) are explored: one uses chlorohydrin with NaH in THF, and the other combines diacetate with sodium-butoxide.
  • - A proposed mechanism addresses unexpected results in how the epoxide is formed concerning regio- and stereospecificity.
  • - The epoxide ring can be opened by different nucleophiles to produce various derivatives of Prottremine, which has been noted for its potential benefits in treating Parkinson's disease.
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  • - Despite cancer-causing effects of leptin in some cancers, its role in neuroblastoma was not well-studied until now, showing higher levels correlate with worse outcomes and reduced patient survival.
  • - Leptin treatment in mouse neuroblastoma cells led to increased cell growth and movement while decreasing their ability to stick together, making them more aggressive.
  • - Soloxolone methyl (SM) was found to counteract leptin's effects by stopping cell growth and restoring adhesion properties, while also inhibiting key survival pathways in cancer cells, suggesting a potential therapeutic strategy.
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The investigation of monoterpenes as natural products has gained significant attention in the search for new pharmacological agents due to their ability to exhibit a wide range in biological activities, including antifungal, antibacterial, antioxidant, anticancer, antispasmodic, hypotensive, and vasodilating properties. In vitro and in vivo studies reveal their antidepressant, anxiolytic, and memory-enhancing effects in experimental dementia and Parkinson's disease. Chemical modification of natural substances by conjugation with various synthetic components is a modern method of obtaining new biologically active compounds.

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Tyrosyl-DNA phosphodiesterase 1 and 2 (Tdp1 and Tdp2) are DNA repair enzymes that repair DNA damage caused by various agents, including anticancer drugs. Thus, these enzymes resist anticancer therapy and could be the reason for resistance to such widely used drugs such as topotecan and etoposide. In the present work, we found compounds capable of inhibiting both enzymes among derivatives of (-)-usnic acid.

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Multidrug resistance is the dominant obstacle to effective chemotherapy for malignant neoplasms. It is well known that neoplastic cells use a wide range of adaptive mechanisms to form and maintain resistance against antitumor agents, which makes it urgent to identify promising therapies to solve this problem. Hydroxamic acids are biologically active compounds and in recent years have been actively considered to be potentially promising drugs of various pharmacological applications.

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We have previously shown that the Tdp1 inhibitor, enamine derivative of usnic acid, the agent OL9-116, enhances the antitumor activity of topotecan. In the present study, we developed and validated LC-MS/MS method for the quantification of OL9-116 in mouse whole blood and studied pharmacokinetics of the agent. The substance OL9-116 was shown to be stable in the whole blood in vitro.

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The paper presents an LC-MS/MS-based approach to targeted screening of both polar and non-polar metabolites using a synthesized monolithic column which is a copolymer of styrene, divinylbenzene, and 1-vinyl-1,2,4-triazole. It was shown that this column in combination with eluents 20 mM (NH)CO + NH (pH = 9.8, eluent A) and ACN (eluent B) allows for separation of metabolites of different nature in two modes, HILIC and RP LC, and these methods are mutually complementary.

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