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Hybrides of Alkaloid Lappaconitine with Pyrimidine Motif on the Anthranilic Acid Moiety: Design, Synthesis, and Investigation of Antinociceptive Potency

Convenient and efficient routes to construct hybrid molecules containing diterpene alkaloid lappaconitine and pyrimidine fragments are reported. One route takes place via first converting of lappaconitine to 1-ethynyl-lappaconitine, followed by the Sonogashira cross-coupling-cyclocondensation sequen...

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Autores principales: Cheremnykh, Kirill P., Savelyev, Victor A., Borisov, Sergey A., Ivanov, Igor D., Baev, Dmitry S., Tolstikova, Tatyana G., Vavilin, Valentin A., Shults, Elvira E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7730767/
https://www.ncbi.nlm.nih.gov/pubmed/33261161
http://dx.doi.org/10.3390/molecules25235578
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author Cheremnykh, Kirill P.
Savelyev, Victor A.
Borisov, Sergey A.
Ivanov, Igor D.
Baev, Dmitry S.
Tolstikova, Tatyana G.
Vavilin, Valentin A.
Shults, Elvira E.
author_facet Cheremnykh, Kirill P.
Savelyev, Victor A.
Borisov, Sergey A.
Ivanov, Igor D.
Baev, Dmitry S.
Tolstikova, Tatyana G.
Vavilin, Valentin A.
Shults, Elvira E.
author_sort Cheremnykh, Kirill P.
collection PubMed
description Convenient and efficient routes to construct hybrid molecules containing diterpene alkaloid lappaconitine and pyrimidine fragments are reported. One route takes place via first converting of lappaconitine to 1-ethynyl-lappaconitine, followed by the Sonogashira cross-coupling-cyclocondensation sequences. The other involves the palladium-catalyzed carbonylative Sonogashira reaction of 5′-iodolappaconitine with aryl acetylene and Mo (CO)(6) as the CO source in acetonitrile and subsequent cyclocondensation reaction of the generated alkynone with amidines. The reaction proceeded cleanly in the presence of the PdCl(2)-(1-Ad)(2)PBn∙HBr catalytic system. The protocol provides mild reaction conditions, high yields, and high atom and step-economy. Pharmacological screening of lappaconitine-pyrimidine hybrids for antinociceptive activity in vivo revealed that these compounds possessed high activity in experimental pain models, which was dependent on the nature of the substituent in the 2 and 6 positions of the pyrimidine nucleus. Docking studies were undertaken to gain insight into the possible binding mode of these compounds with the voltage-gated sodium channel 1.7. The moderate toxicity of the leading compound 12 (50% lethal dose (LD(50)) value was more than 600 mg/kg in vivo) and cytotoxicity to cancer cell lines in vitro encouraged the further design of therapeutically relevant analogues based on this novel type of lappaconitine–pyrimidine hybrids.
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spelling pubmed-77307672020-12-12 Hybrides of Alkaloid Lappaconitine with Pyrimidine Motif on the Anthranilic Acid Moiety: Design, Synthesis, and Investigation of Antinociceptive Potency Cheremnykh, Kirill P. Savelyev, Victor A. Borisov, Sergey A. Ivanov, Igor D. Baev, Dmitry S. Tolstikova, Tatyana G. Vavilin, Valentin A. Shults, Elvira E. Molecules Article Convenient and efficient routes to construct hybrid molecules containing diterpene alkaloid lappaconitine and pyrimidine fragments are reported. One route takes place via first converting of lappaconitine to 1-ethynyl-lappaconitine, followed by the Sonogashira cross-coupling-cyclocondensation sequences. The other involves the palladium-catalyzed carbonylative Sonogashira reaction of 5′-iodolappaconitine with aryl acetylene and Mo (CO)(6) as the CO source in acetonitrile and subsequent cyclocondensation reaction of the generated alkynone with amidines. The reaction proceeded cleanly in the presence of the PdCl(2)-(1-Ad)(2)PBn∙HBr catalytic system. The protocol provides mild reaction conditions, high yields, and high atom and step-economy. Pharmacological screening of lappaconitine-pyrimidine hybrids for antinociceptive activity in vivo revealed that these compounds possessed high activity in experimental pain models, which was dependent on the nature of the substituent in the 2 and 6 positions of the pyrimidine nucleus. Docking studies were undertaken to gain insight into the possible binding mode of these compounds with the voltage-gated sodium channel 1.7. The moderate toxicity of the leading compound 12 (50% lethal dose (LD(50)) value was more than 600 mg/kg in vivo) and cytotoxicity to cancer cell lines in vitro encouraged the further design of therapeutically relevant analogues based on this novel type of lappaconitine–pyrimidine hybrids. MDPI 2020-11-27 /pmc/articles/PMC7730767/ /pubmed/33261161 http://dx.doi.org/10.3390/molecules25235578 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cheremnykh, Kirill P.
Savelyev, Victor A.
Borisov, Sergey A.
Ivanov, Igor D.
Baev, Dmitry S.
Tolstikova, Tatyana G.
Vavilin, Valentin A.
Shults, Elvira E.
Hybrides of Alkaloid Lappaconitine with Pyrimidine Motif on the Anthranilic Acid Moiety: Design, Synthesis, and Investigation of Antinociceptive Potency
title Hybrides of Alkaloid Lappaconitine with Pyrimidine Motif on the Anthranilic Acid Moiety: Design, Synthesis, and Investigation of Antinociceptive Potency
title_full Hybrides of Alkaloid Lappaconitine with Pyrimidine Motif on the Anthranilic Acid Moiety: Design, Synthesis, and Investigation of Antinociceptive Potency
title_fullStr Hybrides of Alkaloid Lappaconitine with Pyrimidine Motif on the Anthranilic Acid Moiety: Design, Synthesis, and Investigation of Antinociceptive Potency
title_full_unstemmed Hybrides of Alkaloid Lappaconitine with Pyrimidine Motif on the Anthranilic Acid Moiety: Design, Synthesis, and Investigation of Antinociceptive Potency
title_short Hybrides of Alkaloid Lappaconitine with Pyrimidine Motif on the Anthranilic Acid Moiety: Design, Synthesis, and Investigation of Antinociceptive Potency
title_sort hybrides of alkaloid lappaconitine with pyrimidine motif on the anthranilic acid moiety: design, synthesis, and investigation of antinociceptive potency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7730767/
https://www.ncbi.nlm.nih.gov/pubmed/33261161
http://dx.doi.org/10.3390/molecules25235578
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