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Название: NMI-SO2Cl2-Mediated Amide Bond Formation: Facile Synthesis of Some Dihydrotriazolopyrimidine Amide Derivatives as Potential Anti-Inflammatory and Anti-Tubercular Agents
Авторы: Babu, A.
Sunil, K.
Sajith, A. M.
Reddy, E. K.
Santra, S.
Zyryanov, G. V.
Venkatesh, T.
Bhadrachari, S.
Nibin, Joy, M.
Дата публикации: 2024
Издатель: Multidisciplinary Digital Publishing Institute (MDPI)
Библиографическое описание: Babu, A., Sunil, K., Sajith, A. M., Reddy, E. K., Santra, S., Zyryanov, G. V., Venkatesh, T., Bhadrachari, S., & Nibin Joy, M. (2024). NMI-SO2Cl2-Mediated Amide Bond Formation: Facile Synthesis of Some Dihydrotriazolopyrimidine Amide Derivatives as Potential Anti-Inflammatory and Anti-Tubercular Agents. Pharmaceuticals, 17(5), [548]. https://doi.org/10.3390/ph17050548
Аннотация: Facile access to some novel biologically relevant dihydrotriazolopyrimidine carboxylic acid-derived amide analogues using NMI/SO2Cl2, and aromatic and aliphatic primary and secondary amines, is reported herein. The role of N-methylimidazole (NMI) as the base and sulfuryl chloride (SO2Cl2) as the coupling reagent has been effectively realized in accessing these molecules in good to excellent yields. The feasibility of the developed protocol has also been extended to the gram-scale synthesis of N-benzylbenzamide in a 75% yield from benzoic acid and benzyl amine. The newly synthesized compounds were tested via in vitro anti-inflammatory and anti-tubercular activity studies. The compounds 6aa and 6be were found to be the most active anti-inflammatory agents, whereas 6cb and 6ch were found to exhibit promising anti-tubercular potency when compared to other synthesized molecules. The structure–activity relationship (SAR) studies revealed the importance of the presence of electron-donating functionalities in enhancing the anti-inflammatory potential of the newly synthesized molecules. However, the presence of electron-withdrawing substituents was found to be significant for improving their anti-tubercular potency. © 2024 by the authors.
Ключевые слова: AMIDE BOND FORMATION
ANTI-INFLAMMATORY ACTIVITY
ANTI-TUBERCULAR ACTIVITY
DIHYDROTRIAZOLOPYRIMIDINE
N-METHYLIMIDAZOLE
SULFURYL CHLORIDE
1 METHYLIMIDAZOLE
4H 1,2,4 TRIAZOL 3 AMINE
7 (4 METHOXYPHENYL) 3,7 DIHYDRO [1,2,4]TRIAZOLO[1,5 A]PYRIMIDINE 5 CARBOXYLIC ACID
7 (5 BROMO 2 FLUOROPHENYL) 3,7 DIHYDRO [1,2,4]TRIAZOLO[1,5 A]PYRIMIDINE 5 CARBOXYLIC ACID
7 (5 BROMO 2 FLUOROPHENYL) N CYCLOHEXYL 3,7 DIHYDRO [1,2,4]TRIAZOLO[1,5 A]PYRIMIDINE 5 CARBOXAMIDE
7 PHENYL 3,7 DIHYDRO [1,2,4]TRIAZOLO[1,5 A]PYRIMIDINE 5 CARBOXYLIC ACID
7 PHENYL N (1 PHENYLETHYL) 3,7 DIHYDRO [1,2,4]TRIAZOLO[1,5 A]PYRIMIDINE 5 CARBOXAMIDE
AMIDE
ANTIINFLAMMATORY AGENT
BENZALDEHYDE
BENZOIC ACID
CARBOXYLIC ACID DERIVATIVE
DICLOFENAC
DIHYDROTRIAZOLOPYRIMIDINE AMIDE DERIVATIVE
N (4 FLUOROBENZYL) 7 PHENYL 3,7 DIHYDRO [1,2,4]TRIAZOLO[1,5 A]PYRIMIDINE 5 CARBOXAMIDE
PYRUVIC ACID
RIFAMPICIN
TRIETHYLAMINE
TUBERCULOSTATIC AGENT
UNCLASSIFIED DRUG
ANTIINFLAMMATORY ACTIVITY
ANTIMICROBIAL ACTIVITY
ARTICLE
CARBON NUCLEAR MAGNETIC RESONANCE
CHEMICAL BOND
DRUG SYNTHESIS
INFRARED SPECTROSCOPY
MINIMUM INHIBITORY CONCENTRATION
MYCOBACTERIUM FORTUITUM
MYCOBACTERIUM SMEGMATIS
MYCOBACTERIUM TUBERCULOSIS
NONHUMAN
PROTON NUCLEAR MAGNETIC RESONANCE
STRUCTURE ACTIVITY RELATION
THIN LAYER CHROMATOGRAPHY
URI: http://elar.urfu.ru/handle/10995/141654
Условия доступа: info:eu-repo/semantics/openAccess
cc-by
Идентификатор SCOPUS: 85194234558
Идентификатор WOS: 001231535400001
Идентификатор PURE: 58368088
ISSN: 1424-8247
DOI: 10.3390/ph17050548
Сведения о поддержке: Ministry of Education and Science of the Russian Federation, Minobrnauka, (075-15-2022-1118); Ministry of Education and Science of the Russian Federation, Minobrnauka
This research was funded by the Ministry of Science and Higher Education of the Russian Federation (Agreement # 075-15-2022-1118 from 29 June 2022). Sougata Santra is thankful to the Russian Science Foundation (Grant # 24-23-00516).
Карточка проекта РНФ: Ministry of Education and Science of the Russian Federation, Minobrnauka, (075-15-2022-1118); Ministry of Education and Science of the Russian Federation, Minobrnauka
This research was funded by the Ministry of Science and Higher Education of the Russian Federation (Agreement # 075-15-2022-1118 from 29 June 2022). Sougata Santra is thankful to the Russian Science Foundation (Grant # 24-23-00516).
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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