1
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Novopashina D.S.
, Dymova M.A.
, Davydova A.S.
, Meschaninova M.I.
, Malysheva D.O.
, Kuligina E.V.
, Richter V.A.
, Kolesnikov V.A.
, Taskaev S.Y.
, Vorobyeva M.A.
Aptamers for Addressed Boron Delivery in BNCT: Effect of Boron Cluster Attachment Site on Functional Activity
International Journal of Molecular Sciences. 2023.
V.24. 306
. DOI: 10.3390/ijms24010306
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РИНЦ
OpenAlex
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2
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Kladova O.A.
, Tyugashev T.E.
, Mikuchina E.S.
, Kuznetsov N.A.
, Novopashina D.S.
, Kuznetsova A.A.
The Activity of Natural Polymorphic Variants of Human DNA Polymerase β Having an Amino Acid Substitution in the Transferase Domain
Cells. 2023.
V.12. N9. 1300
. DOI: 10.3390/cells12091300
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PMID
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3
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Davletgildeeva A.T.
, Kuznetsova A.A.
, Novopashina D.S.
, Ishchenko A.A.
, Saparbaev M.
, Fedorova O.S.
, Kuznetsov N.A.
Comparative Analysis of Exo- and Endonuclease Activities of APE1-like Enzymes
International Journal of Molecular Sciences. 2022.
V.23. N5. 2869
. DOI: 10.3390/ijms23052869
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OpenAlex
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4
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Ulyanova V.
, Nadyrova A.
, Dudkina E.
, Kuznetsova A.
, Ahmetgalieva A.
, Faizullin D.
, Surchenko Y.
, Novopashina D.
, Zuev Y.
, Kuznetsov N.
, Ilinskaya O.
Structural and Functional Differences between Homologous Bacterial Ribonucleases
International Journal of Molecular Sciences. 2022.
V.23. N3. 1867
. DOI: 10.3390/ijms23031867
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OpenAlex
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5
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Vorobyeva M.A.
, Dymova M.A.
, Novopashina D.S.
, Kuligina E.V.
, Kolesnikov I.A.
, Taskaev S.Y.
, Richter V.A.
, Meschaninova M.I.
Oligonucleotide aptamers as novel cell-specific delivery agents for boron neutron capture therapy
Siberian Medical Review. 2022.
V.2022. N5. 108
. DOI: 10.20333/25000136-2022-5-108
Scopus
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OpenAlex
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6
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Senchurova S.I.
, Syryamina V.N.
, Kuznetsova A.A.
, Novopashina D.S.
, Ishchenko A.A.
, Saparbaev M.
, Dzuba S.A.
, Fedorova O.S.
, Kuznetsov N.A.
The mechanism of damage recognition by apurinic/apyrimidinic endonuclease Nfo from Escherichia coli
Biochimica et Biophysica Acta - General Subjects. 2022.
V.1866. N11. 130216
. DOI: 10.1016/j.bbagen.2022.130216
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OpenAlex
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7
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Ахметова Е.А.
, Ким Д.В.
, Доме А.С.
, Мещанинова М.И.
, Новопашина Д.С.
Новый подход к синтезу фотоблокированных малых интерферирующих РНК для активируемой светом РНК-интерференции
Биоорганическая химия. 2022.
Т.48. №5. С.580-588. DOI: 10.31857/S0132342322050037
РИНЦ
OpenAlex
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8
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Akhmetova E.A.
, Kim D.V.
, Dome A.S.
, Meschaninova M.I.
, Novopashina D.S.
Photocaged Small Interfering RNA
Russian Journal of Bioorganic Chemistry. 2022.
V.48. N5. P.1036 - 1042. DOI: 10.1134/S106816202205003X
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РИНЦ
OpenAlex
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9
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Sakovina L.
, Vokhtantsev I.P.
, Vorobyeva M.A.
, Vorobyev P.E.
, Novopashina D.S.
Improving Stability and Specificity of CRISPR/Cas9 System by Selective Modification of Guide RNAs with 2′-fluoro and Locked Nucleic Acid Nucleotides
International Journal of Molecular Sciences. 2022.
V.23. N21. 13460
. DOI: 10.3390/ijms232113460
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РИНЦ
OpenAlex
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10
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Novopashina D.S.
, Vorobyeva M.A.
, Lomzov A.A.
, Silnikov V.N.
, Venyaminova A.G.
Terminal mono- and bis-conjugates of oligonucleotides with closo-dodecaborate: synthesis and physico-chemical properties
International Journal of Molecular Sciences. 2021.
V.22. N1. P.182. DOI: 10.3390/ijms22010182
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РИНЦ
OpenAlex
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11
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Semikolenova O.
, Sakovina L.
, Akhmetova E.
, Kim D.
, Vokhtantsev I.
, Golyshev V.
, Vorobyeva M.
, Novopashin S.
, Novopashina D.
Photoactivatable nanoCRISPR/Cas9 System Based on crRNA Reversibly Immobilized on Carbon Nanoparticles
International Journal of Molecular Sciences. 2021.
V.22. N20. 10919
. DOI: 10.3390/ijms222010919
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РИНЦ
OpenAlex
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12
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Vorobyeva M.A.
, Dymova M.A.
, Novopashina D.S.
, Kuligina E.V.
, Timoshenko V.V.
, Kolesnikov I.A.
, Taskaev S.Y.
, Richter V.A.
, Venyaminova A.G.
Tumor cell‐specific 2′‐fluoro rna aptamer conjugated with closo‐dodecaborate as a potential agent for boron neutron capture therapy
International Journal of Molecular Sciences. 2021.
V.22. N14. 7326
. DOI: 10.3390/ijms22147326
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РИНЦ
OpenAlex
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13
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Novopashina D.S.
, Vorobyeva M.A.
, Venyaminova A.
Recent Advances in the Synthesis of High Boron-Loaded Nucleic Acids for BNCT
Frontiers in Chemistry. 2021.
V.9. 619052
. DOI: 10.3389/fchem.2021.619052
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РИНЦ
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14
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Danilin N.A.
, Matveev A.L.
, Tikunova N.V.
, Venyaminova A.G.
, Novopashina D.S.
Conjugates of RNase P-Guiding Oligonucleotides with Oligo(N-Methylpyrrole) as Prospective Antibacterial Agents
Russian Journal of Bioorganic Chemistry. 2021.
V.47. N2. P.469-477. DOI: 10.1134/S1068162021020084
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15
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Данилин Н.А.
, Матвеев А.Л.
, Тикунова Н.В.
, Веньяминова А.Г.
, Новопашина Д.С.
Направляющие РНКазу Р конъюгаты олигонуклеотидов с олиго(N-метилпирролом) как перспективные антибактериальные препараты
Биоорганическая химия. 2021.
Т.47. №2. С.259-269. DOI: 10.31857/S0132342321020081
РИНЦ
OpenAlex
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16
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Akhmetova E.A.
, Golyshev V.M.
, Vokhtantcev I.P.
, Meschaninova M.I.
, Venyaminova A.G.
, Novopashina D.S.
Photoactivatable CRISPR/Cas9 System
Russian Journal of Bioorganic Chemistry. 2021.
V.47. N2. P.496-504. DOI: 10.1134/S1068162021020023
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OpenAlex
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17
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Semikolenova O.A.
, Golyshev V.M.
, Kim B.H.
, Venyaminova A.G.
, Novopashina D.S.
New Two-Component Pyrene Probes Based on Oligo(2'-O-Methylribonucleotides) for microRNA Detection
Russian Journal of Bioorganic Chemistry. 2021.
V.47. N2. P.432-440. DOI: 10.1134/S1068162021020230
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18
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Семиколенова О.А.
, Голышев В.М.
, Ким Б-Х.
, Веньяминова А.Г.
, Новопашина Д.С.
Новые двухкомпонентные пиренильные зонды на основе олиго(2'-О-метилрибонуклеотидов) для детекции микроРНК
Биоорганическая химия. 2021.
Т.47. №2. С.218-227. DOI: 10.31857/S0132342321020238
РИНЦ
OpenAlex
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19
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Kuznetsova A.A.
, Gavrilova A.A.
, Novopashina D.S.
, Fedorova O.S.
, Kuznetsov N.A.
Mutational and Kinetic Analysis of APE1 Endoribonuclease Activity
Molekuliarnaia biologiia. 2021.
V.55. N2. P.243-257. DOI: 10.31857/S0026898421020099
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РИНЦ
OpenAlex
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20
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Кузнецова А.А.
, Гаврилова А.А.
, Новопашина Д.С.
, Федорова О.С.
, Кузнецов Н.А.
Мутационный и кинетический анализ эндорибонуклеазной активности APE1
Молекулярная биология. 2021.
Т.55. №2. С.243-257.
РИНЦ
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