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<article article-type="research-article" dtd-version="1.3" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xml:lang="ru"><front><journal-meta><journal-id journal-id-type="publisher-id">pharmjournal</journal-id><journal-title-group><journal-title xml:lang="ru">Разработка и регистрация лекарственных средств</journal-title><trans-title-group xml:lang="en"><trans-title>Drug development &amp; registration</trans-title></trans-title-group></journal-title-group><issn pub-type="ppub">2305-2066</issn><issn pub-type="epub">2658-5049</issn><publisher><publisher-name>LLC «CPHA»</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.33380/2305-2066-2025-14-4-2088</article-id><article-id custom-type="elpub" pub-id-type="custom">pharmjournal-2179</article-id><article-categories><subj-group subj-group-type="heading"><subject>Research Article</subject></subj-group><subj-group subj-group-type="section-heading" xml:lang="ru"><subject>ПОИСК И РАЗРАБОТКА НОВЫХ ЛЕКАРСТВЕННЫХ СРЕДСТВ</subject></subj-group><subj-group subj-group-type="section-heading" xml:lang="en"><subject>RESEARCH AND DEVELOPMENT OF NEW DRUG PRODUCTS</subject></subj-group></article-categories><title-group><article-title>Синтез и доказательство строения бис(4-гидрокси-6H-1,3-оксазин-6-онов) с фениленовыми мостиками между гетероциклическими фрагментами</article-title><trans-title-group xml:lang="en"><trans-title>Synthesis and proof of the structure of bis(4-hydroxy-6H-1,3-oxazine-6-ones) with phenylene bridges between heterocyclic fragments</trans-title></trans-title-group></title-group><contrib-group><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0009-0008-3858-3009</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Носова</surname><given-names>Н. А.</given-names></name><name name-style="western" xml:lang="en"><surname>Nosova</surname><given-names>N. A.</given-names></name></name-alternatives><bio xml:lang="ru"><p>197022, г. Санкт-Петербург, ул. Профессора Попова, д. 14, литера А</p></bio><bio xml:lang="en"><p>14A, Professora Popova str., Saint-Petersburg, 197022</p></bio><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-5527-6595</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Колесник</surname><given-names>Д. А.</given-names></name><name name-style="western" xml:lang="en"><surname>Kolesnik</surname><given-names>D. A.</given-names></name></name-alternatives><bio xml:lang="ru"><p>197022, г. Санкт-Петербург, ул. Профессора Попова, д. 14, литера А</p></bio><bio xml:lang="en"><p>14A, Professora Popova str., Saint-Petersburg, 197022</p></bio><email xlink:type="simple">denis.kolesnik@spcpu.ru</email><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0003-1251-8782</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Яковлев</surname><given-names>И. П.</given-names></name><name name-style="western" xml:lang="en"><surname>Yakovlev</surname><given-names>I. P.</given-names></name></name-alternatives><bio xml:lang="ru"><p>197022, г. Санкт-Петербург, ул. Профессора Попова, д. 14, литера А</p></bio><bio xml:lang="en"><p>14A, Professora Popova str., Saint-Petersburg, 197022</p></bio><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0009-0007-0785-3259</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Новикова</surname><given-names>М. П.</given-names></name><name name-style="western" xml:lang="en"><surname>Novikova</surname><given-names>M. P.</given-names></name></name-alternatives><bio xml:lang="ru"><p>197022, г. Санкт-Петербург, ул. Профессора Попова, д. 14, литера А</p></bio><bio xml:lang="en"><p>14A, Professora Popova str., Saint-Petersburg, 197022</p></bio><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0009-0005-4723-4634</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Варваркина</surname><given-names>А. А.</given-names></name><name name-style="western" xml:lang="en"><surname>Varvarkina</surname><given-names>A. A.</given-names></name></name-alternatives><bio xml:lang="ru"><p>197022, г. Санкт-Петербург, ул. Профессора Попова, д. 14, литера А</p></bio><bio xml:lang="en"><p>14A, Professora Popova str., Saint-Petersburg, 197022</p></bio><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0001-6229-0339</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Левшукова</surname><given-names>П. О.</given-names></name><name name-style="western" xml:lang="en"><surname>Levshukova</surname><given-names>P. O.</given-names></name></name-alternatives><bio xml:lang="ru"><p>197022, г. Санкт-Петербург, ул. Профессора Попова, д. 14, литера А</p></bio><bio xml:lang="en"><p>14A, Professora Popova str., Saint-Petersburg, 197022</p></bio><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0009-0001-9329-0881</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Ксенофонтова</surname><given-names>Г. В.</given-names></name><name name-style="western" xml:lang="en"><surname>Ksenofontova</surname><given-names>G. V.</given-names></name></name-alternatives><bio xml:lang="ru"><p>197022, г. Санкт-Петербург, ул. Профессора Попова, д. 14, литера А</p></bio><bio xml:lang="en"><p>14A, Professora Popova str., Saint-Petersburg, 197022</p></bio><xref ref-type="aff" rid="aff-1"/></contrib></contrib-group><aff-alternatives id="aff-1"><aff xml:lang="ru"><institution>Федеральное государственное бюджетное образовательное учреждение высшего образования «Санкт-Петербургский государственный химико-фармацевтический университет» Министерства здравоохранения Российской Федерации (ФГБОУ ВО СПХФУ Минздрава России)</institution><country>Россия</country></aff><aff xml:lang="en"><institution>Saint-Petersburg State Chemical and Pharmaceutical University</institution><country>Russian Federation</country></aff></aff-alternatives><pub-date pub-type="collection"><year>2025</year></pub-date><pub-date pub-type="epub"><day>03</day><month>12</month><year>2025</year></pub-date><volume>14</volume><issue>4</issue><fpage>34</fpage><lpage>40</lpage><permissions><copyright-statement>Copyright &amp;#x00A9; Носова Н.А., Колесник Д.А., Яковлев И.П., Новикова М.П., Варваркина А.А., Левшукова П.О., Ксенофонтова Г.В., 2025</copyright-statement><copyright-year>2025</copyright-year><copyright-holder xml:lang="ru">Носова Н.А., Колесник Д.А., Яковлев И.П., Новикова М.П., Варваркина А.А., Левшукова П.О., Ксенофонтова Г.В.</copyright-holder><copyright-holder xml:lang="en">Nosova N.A., Kolesnik D.A., Yakovlev I.P., Novikova M.P., Varvarkina A.A., Levshukova P.O., Ksenofontova G.V.</copyright-holder><license xml:lang="ru" license-type="creative-commons-attribution" xlink:href="https://creativecommons.org/licenses/by/4.0/" xlink:type="simple"><license-p>Данная работа распространяется под лицензией Creative Commons Attribution 4.0.</license-p></license><license xml:lang="en" license-type="creative-commons-attribution" xlink:href="https://creativecommons.org/licenses/by/4.0/" xlink:type="simple"><license-p>This work is licensed under a Creative Commons Attribution 4.0 License.</license-p></license></permissions><self-uri xlink:href="https://www.pharmjournal.ru/jour/article/view/2179">https://www.pharmjournal.ru/jour/article/view/2179</self-uri><abstract><sec><title>Введение</title><p>Введение. Исследование производных 1,3-оксазина играет ключевую роль в области химии гетероциклических соединений. Тем не менее в литературе отсутствует систематизированная информация о способах синтеза биспроизводных 1,3-оксазин-6-онов. Создание эффективных методов получения этих оксазинов, а также изучение их структуры, характеристик и биологической активности представляет собой многообещающее направление как для медицинской химии, так и для фармацевтической промышленности.</p></sec><sec><title>Цель</title><p>Цель. Разработать лабораторный способ получения бис(4-гидрокси-6H-1,3-оксазин-6-онов) на основе реакции бензол-1,3-дикарбоксамида и бензол-1,4-дикарбоксамида с замещенными малонилхлоридами и доказать их строение с помощью спектроскопии ядерного магнитного резонанса (ЯМР) на ядрах 1Н и 13С.</p></sec><sec><title>Материалы и методы</title><p>Материалы и методы. Спектры 1H- и 13C-ЯМР были зарегистрированы на приборе Bruker AM-600 в дейтерированном диметилсульфоксиде (ДМСО-d6), их обработка осуществлена с помощью программного обеспечения ACD/Labs. Мониторинг протекания реакций проведен с применением тонкослойной хроматографии на пластинах с силикагелем TLC Silicagel 60 F254 с использованием этилацетата в качестве элюента и детекцией в ультрафиолетовом (УФ) свете. Методика синтеза включала суспендирование 1 ммоль бензол-1,4-дикарбоксамда или бензол-1,3-дикарбоксамида в абсолютном 1,2-дихлорэтане, добавление 2,4 ммоль замещенного малонилхлорида и кипячение смеси в течение 15 ч. Конец реакции определен по отсутствию исходных диамидов в реакционной массе методом тонкослойной хроматографии.</p></sec><sec><title>Результаты и обсуждение</title><p>Результаты и обсуждение. В результате исследования был разработан лабораторный метод синтеза бис(4-гидрокси-6H-1,3-оксазин-6-онов) с фениленовыми мостиками между гетероциклическими фрагментами. Использование в качестве растворителя абсолютного 1,2-дихлорэтана позволило увеличить выход целевых соединений на 5–7 % и сократить время синтеза на 5 ч по сравнению с абсолютным бензолом. Строение синтезированных веществ было доказано спектроскопией ядерного магнитного резонанса на ядрах 1H и 13C. В спектрах полученных соединений присутствуют все характеристичные сигналы, соответствующие бис(4-гидрокси-6Н-1,3-оксазин-6-онам).</p></sec><sec><title>Заключение</title><p>Заключение. Разработан, реализован и оптимизирован лабораторный метод синтеза бис(4-гидрокси-6Н-1,3-оксазин-6-онов) на основе реакции бензол-1,3-дикарбоксамида и бензол-1,4-дикарбоксамида с монозамещенными малонилхлоридами. Целевые соединения были получены в абсолютном 1,2-дихлорэтане с выходом, близким к количественному. Это подтверждает эффективность разработанного подхода. Структура всех полученных бис(4-гидрокси-6Н-1,3-оксазин-6-онов) была достоверно установлена с помощью спектроскопии ядерного магнитного резонанса на ядрах 1H и 13C.</p></sec></abstract><trans-abstract xml:lang="en"><sec><title>Introduction</title><p>Introduction. The study of 1,3-oxazine derivatives plays a crucial role in the field of heterocyclic chemistry. However, there is a lack of systematized information in the literature regarding the synthesis methods of bis-derivatives of 1,3-oxazin-6-ones. The development of efficient methods for obtaining these oxazines, as well as the study of their structure, properties, and biological activity, represents a promising direction for both medicinal chemistry and the pharmaceutical industry.</p></sec><sec><title>Aim</title><p>Aim. To develop a laboratory method for the synthesis of bis(4-hydroxy-6H-1,3-oxazin-6-ones) based on the reaction of benzene-1,3-dicarboxamide and benzene-1,4-dicarboxamide with substituted malonyl chlorides, and to confirm their structure using nuclear magnetic resonance (NMR) spectroscopy on 1H and 13C nuclei.</p></sec><sec><title>Material and methods</title><p>Material and methods. 1H and 13C NMR spectra were recorded on a Bruker AM-600 spectrometer in deuterated dimethyl sulfoxide (DMSO-d6), and their processing was carried out using ACD/Labs software. The progress of the reactions was monitored using thin-layer chromatography on plates coated with silica gel TLC Silicagel 60 F254 using ethyl acetate as the eluent and detection in ultraviolet (UV) light. The synthesis procedure included suspending 1 mmol of terephthalic or isophthalic acid diamide in absolute 1,2-dichloroethane, adding 2,4 mmol of substituted malonyl chloride and refluxing the mixture for 15 hours. The end of the reaction was determined by the absence of the initial diamides in the reaction mass by thin-layer chromatography.</p></sec><sec><title>Results and discussion</title><p>Results and discussion. As a result of the study a laboratory method of the synthesis of bis(4-hydroxy-6H-1,3-oxazine-6-ones) with phenylene bridges between heterocyclic fragments was developed. The use of absolute 1,2-dichloroethane as a solvent made it possible to increase the yield of the target compounds by 5–7 % and reduce the synthesis time by 5 hours compared to absolute benzene. The structure of the obtained compounds was proved by nuclear magnetic resonance spectroscopy on 1H and 13C nuclei. The spectra of the obtained compounds contain all the characteristic signals corresponding to bis(4-hydroxy-6H-1,3-oxazine-6-ones).</p></sec><sec><title>Conclusion</title><p>Conclusion. A laboratory method for the synthesis of bis(4-hydroxy-6H-1,3-oxazin-6-ones) has been developed, implemented, and optimized based on the reaction of benzene-1,3-dicarboxamide and benzene-1,4-dicarboxamide with monosubstituted malonyl chlorides. The target compounds were obtained in absolute 1,2-dichloroethane with yields close to quantitative, confirming the efficiency of the developed approach. The structure of all obtained bis(4-hydroxy-6H-1,3-oxazin-6-ones) was reliably established using nuclear magnetic resonance spectroscopy on 1H and 13C nuclei.</p></sec></trans-abstract><kwd-group xml:lang="ru"><kwd>1</kwd><kwd>3-оксазин-6-оны</kwd><kwd>бисгетероциклические соединения</kwd><kwd>π-электронодефицитные гетероциклы</kwd><kwd>малонилхлориды</kwd><kwd>дикарбоксамиды</kwd></kwd-group><kwd-group xml:lang="en"><kwd>1</kwd><kwd>3-oxazine-6-ones</kwd><kwd>bisheterocyclic compounds</kwd><kwd>π-electron-deficient heterocycles</kwd><kwd>malonyl chlorides</kwd><kwd>dicarboxamides</kwd></kwd-group></article-meta></front><back><ref-list><title>References</title><ref id="cit1"><label>1</label><citation-alternatives><mixed-citation xml:lang="ru">Ansari N., Khodagholi F., Amini M. 2-Ethoxy-4,5-diphenyl-1,3-oxazine-6-one activates the Nrf2/HO-1 axis and protects against oxidative stress-induced neuronal death. European Journal of Pharmacology. 2011;658(2–3):84–90. 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