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21
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Makarova E.K.
, Makarov A.A.
, Dzhemilev U.M.
, D’yakonov V.A.
Synthesis of Amides Based on Biologically Active (5Z,9Z)-Eicosa-5,9-dienoic Acid
Russian Journal of Organic Chemistry. 2024.
V.60. N3. P.437-441. DOI: 10.1134/s1070428024030102
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22
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Tuktarova R.A.
, Dzhemileva L.U.
, Dzhemilev U.M.
, D’yakonov V.A.
Synthesis of N-heterocyclic analogs of natural muricadienin — promising antitumor agents
Russian Chemical Bulletin. 2024.
V.73. N5. P.1408-1416. DOI: 10.1007/s11172-024-4259-x
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23
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Islamov I.I.
, Dzhemileva L.U.
, Gaisin I.V.
, Dzhemilev U.M.
, D′yakonov V.A.
New Polyether Macrocycles as Promising Antitumor Agents─Targeted Synthesis and Induction of Mitochondrial Apoptosis
ACS Omega. 2024.
V.9. N18. P.19923-19931. DOI: 10.1021/acsomega.3c09566
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24
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Dzhemileva L.U.
, D'yakonov V.A.
, Egorova K.S.
, Ananikov V.P.
Mechanisms of Cytotoxicity in Six Classes of Ionic Liquids: Evaluating Cell Cycle Impact and Genotoxic and Apoptotic Effects
Chemosphere. 2024.
V.364. 142964
. DOI: 10.1016/j.chemosphere.2024.142964
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25
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Tuktarova R.A.
, Dzhemileva L.U.
, Dzhemilev U.M.
, D’yakonov V.A.
New Synthetic Analogs of Natural 5Z,9Z-Dienoic Acids—Hybrid Molecules Based on Oleanolic Acid: Synthesis and Study of Antitumor Activity
Cancers. 2024.
V.16. N23. 3893
. DOI: 10.3390/cancers16233893
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26
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Chobanov N.M.
, Dzhemileva L.U.
, Dzhemilev U.M.
, D’yakonov V.A.
Lithocholic Acid’s Ionic Compounds as Promising Antitumor Agents: Synthesis and Evaluation of the Production of Reactive Oxygen Species (ROS) in Mitochondria
Antioxidants. 2024.
V.13. N12. 1448
. DOI: 10.3390/antiox13121448
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27
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Dzhemilev U.M.
, Dzhemileva L.U.
, D’yakonov V.A.
Metallacomplex catalysis in the synthesis of regular isoprenoids
Russian Chemical Bulletin. 2023.
V.72. N2. P.404-414. DOI: 10.1007/s11172-023-3808-8
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28
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Dzhemileva L.U.
, Tuktarova R.A.
, Dzhemilev U.M.
, D’yakonov V.A.
Pentacyclic Triterpenoids-Based Ionic Compounds: Synthesis, Study of Structure–Antitumor Activity Relationship, Effects on Mitochondria and Activation of Signaling Pathways of Proliferation, Genome Reparation and Early Apoptosis
Cancers. 2023.
V.15. N3. 756
. DOI: 10.3390/cancers15030756
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29
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Makarova E.K.
, Ishbulatov I.V.
, Makarov A.A.
, Dzhemileva L.U.
, Dzhemilev U.M.
, D’yakonov V.A.
Study of the Antitumor Activity in Vitro of Iodo-δ-Lactones of 5Z,9Z-Dienoic Acid
Doklady Chemistry. 2023.
V.513. P.367–374. DOI: 10.1134/s0012500823700209
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30
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Akhmetova V.R.
, Galimova E.M.
, Mescheryakova E.S.
, Dzhemileva L.U.
, Dzhemilev U.M.
, D'yakonov V.A.
Mono- and binuclear complexes of copper(II) with dimethylaminomethyl derivatives of 2-naphthol and 6-quinolinol: synthesis and in vitro study of antitumor properties
Metallomics. 2023.
V.15. N6. mfad037
. DOI: 10.1093/mtomcs/mfad037
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31
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Islamov I.I.
, Makarov A.A.
, Makarova E.K.
, Yusupova A.V.
, D’yakonov V.A.
, Dzhemilev U.M.
Synthesis of macrocyclic and linear compounds with 1Z,5Z-diene and alkynylcarbinol fragments based on (5Z,9Z)-tetradeca-5,9-diene-1,14-diol
Russian Chemical Bulletin. 2023.
V.72. N4. P.925-931. DOI: 10.1007/s11172-023-3855-1
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32
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Dzhemileva L.U.
, Tuktarova R.A.
, Dzhemilev U.M.
, D’yakonov V.A.
Natural Acetogenins, Chatenaytrienins-1, -2, -3 and -4, Mitochondrial Potential Uncouplers and Autophagy Inducers—Promising Anticancer Agents
Antioxidants. 2023.
V.12. N8. 1528
. DOI: 10.3390/antiox12081528
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33
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Islamov I.I.
, Yusupova A.V.
, D'yakonov V.A.
, Dzhemilev U.M.
Synthesis of new ionic liquids based on (5Z,9Z)-alkadienoic acids and choline
Mendeleev Communications. 2023.
V.33. N1. P.50-52. DOI: 10.1016/j.mencom.2023.01.015
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34
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Makhmudiyarova N.N.
, Ishmukhametova I.R.
, Tyumkina T.V.
, Mescheryakova E.S.
, Dzhemileva L.
, D’yakonov V.
, Terent’ev A.O.
, Dzhemilev U.M.
Multicomponent Assembly of Bicyclic Aza-peroxides Catalyzed by Samarium Complexes and Their Cytotoxic Activity
Journal of Organic Chemistry. 2023.
V.88. N16. P.11473-11485. DOI: 10.1021/acs.joc.3c00555
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35
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Makarov A.A.
, Ishbulatov I.V.
, Makarova E.K.
, Dzhemilev U.M.
, D’yakonov V.A.
Synthesis of 2,5-dialkyl-substituted tetrahydrofurans — symmetrical analogs of natural acetogenins
Russian Chemical Bulletin. 2023.
V.72. N3. P.689-696. DOI: 10.1007/s11172-023-3833-6
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36
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Makhmudiyarova N.N.
, Ishmukhametova I.R.
, Dzhemileva L.U.
, D'yakonov V.A.
, Terent'ev A.O.
, Dzhemilev U.M.
A New Catalytic Method for the Synthesis of Cyclic Azaperoxides with High Cytotoxic Activity
ChemistrySelect. 2023.
V.8. N37. e202302044
. DOI: 10.1002/slct.202302044
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37
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Islamov I.I.
, Yusupova A.V.
, D’yakonov V.A.
, Dzhemilev U.M.
Synthesis of polyether macrodiolides based on acetylenic derivatives of (5Z,9Z)-tetradeca-5,9-diene-1,14-dioic acid
Russian Chemical Bulletin. 2023.
V.72. N10. P.2473-2483. DOI: 10.1007/s11172-023-4049-x
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38
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Makarov A.A.
, Ishbulatov I.V.
, Makarova E.K.
, D’yakonov V.A.
, Dzhemilev U.M.
Synthesis of aryl-substituted derivatives of acetogenins using the Ti-catalyzed homo-cyclomagnesiation of 1,2-dienes as a key step
Russian Chemical Bulletin. 2023.
V.72. N10. P.2366-2371. DOI: 10.1007/s11172-023-4034-4
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39
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Pentsak E.O.
, Dzhemileva L.U.
, D'yakonov V.A.
, Shaydullin R.R.
, Galushko A.S.
, Egorova K.S.
, Ananikov V.P.
Comparative assessment of heterogeneous and homogeneous Suzuki-Miyaura catalytic reactions using bio-Profiles and bio-Factors
Journal of Organometallic Chemistry. 2022.
V.965-966. 122319
. DOI: 10.1016/j.jorganchem.2022.122319
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40
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Sadretdinova Z.R.
, Akhmetov A.R.
, Dzhemileva L.U.
, D’yakonov V.A.
, Tuktarov A.
, Dzhemilev U.
Fullerenyl-1,2,3-Triazoles: Synthesis and Cytotoxic Activity
Chemistry proceedings. 2022.
V.8. N1. 96
. DOI: 10.3390/ecsoc-25-11659
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