аспирант
Москва, г. Москва и Московская область, Россия
студент
Ярославль, Ярославская область, Россия
студент
Ярославль, Ярославская область, Россия
Ярославль, Ярославская область, Россия
Ярославль, Ярославская область, Россия
Московский физико-технический институт (государственный университет)
с 01.01.2024 по настоящее время
Ярославль, Ярославская область, Россия
Ярославль, Ярославская область, Россия
The paper presents a method for the synthesis of new representatives of the primary benzenesulfonamides class. They are promising agents for the treatment of open-angle glaucoma and neurodegenerative diseases. The authors have developed a mechanism for the O-alkylation of 4-hydroxybenzene sulfonamide with alkylating agents of different nature. The method provides mild conditions and selectivity of the process. The paper shows the necessity of activation of N-substituted 2-chloroacetamides and 5-(chloromethyl)-3-aryl-1,2,4-oxadiazoles by catalytic addition of potassium iodide in O-alkylation reactions of phenols. The authors demonstrated the applicability of the developed methodology on 12 examples of O-alkyl derivatives of 4-hydroxybenzene sulfonamide obtained in yields from 28 to 86%. The research proved the purity and structure of the new compounds by the combined methods of 1H NMR, 13C NMR, and elemental analysis.
sulphonamide, oxadiazole, O-alkylation, carboanhydrase, monoamine oxidase
1. Kritzman V. A., Stanzo V. V. Medicinal substances. Encyclopaedic Dictionary of Young Chemist. 2nd ed. 1990. Pp. 134-136 (in Russian).
2. Sarnpitak P., Mujumdar P., Morisseau C., Hwang S.H., Hammock B., Iurchenko V., Krasavin M. Potent, orally available, selective COX-2 inhibitors based on 2-imidazoline core // Eur. J. Med. Chem. 2014. 84. 160 172. DOI:https://doi.org/10.1016/j.ejmech.2014.07.023.
3. Verweij J., Sleijfer S. Pazopanib, a new therapy for metastatic soft tissue sarcoma // Expert Opin Pharmacother. 2013, 14(7), 929–935. DOI:https://doi.org/10.1517/14656566.2013.780030.
4. Mboge M. Y., Combs J., Singh S., Andring J., Wolff A., Tu C., Frost S. C. Inhibition of Carbonic Anhydrase Using SLC-149: Support for a Noncatalytic Function of CAIX in Breast Cancer // J Med Chem. 2021. 64(3). 1713–1724. DOI:https://doi.org/10.1021/acs.jmedchem.0c02077.
5. Kalinin S, Malkova A, Sharonova T, Sharoyko V, Bunev A, Supuran CT, Krasavin M. Carbonic Anhydrase IX Inhibitors as Candidates for Combination Therapy of Solid Tumors // Int J Mol Sci. 2021. 22(24):13405. DOI:https://doi.org/10.3390/ijms222413405.
6. Khokhlov A. L., Shetnev A. A., Korsakov M. K., Fedorov V. N., Tyushina A. N., Volkhin N. N., Vdovichenko V. P. Pharmacological Properties of Sulfonamide Derivatives, New Inhibitors of Carbonic Anhydrase // Bull Exp Biol Med. 2023. 175(2). 205-209.
7. Gasilina O. A., Romanycheva A. A., Shetnev A. A., Korsakov M. K. Synthesis, Antibacterial, and Antimonooxidase Activity of 4-(2-Methyl-1, 3-oxazol-5-yl) benzenesulfonamide // Rus. J. Gen Chem. 2023. 93(11). 2749-2755.
8. Krasavin M., Shetnev A., Baykov S., Kalinin S., Nocentini A., Sharoyko V., Supuran C. T. Pyridazinone-substituted benzenesulfonamides display potent inhibition of membrane-bound human carbonic anhydrase IX and promising antiproliferative activity against cancer cell lines // Eur. J. Med Chem. 2019. 168. 301-314.
9. Shetnev A., Shlenev R., Efimova J., Ivanovskii S., Tarasov A., Petzer A., Petzer, J. P. 1, 3, 4-Oxadiazol-2-ylbenzenesulfonamides as privileged structures for the inhibition of monoamine oxidase B // Bioorg Med Chem Lett. 2019. 29(21). 126677.
10. Bao, X., Song, D., Qiao, X., Zhao, X., Chen, G. The Development of an Effective Synthetic Route of Belinostat // Org Process Res Dev. 2016. 20(8). 1482-1488. DOI:https://doi.org/10.1021/acs.oprd.6b00170.
11. US Patent 10064869 MTH1 inhibitors for treatment of inflammatory and autoimmune conditions / Scobie M., Wallner O., Koolmeister T., Vallin K. S. A., Henriksson C. M., Homan E., Helleday T., Jacques S., Desroses M., Jacques-Cordonnier M.-C. Publ. 2018.
12. Diadyuchenko L. V., Dmitrieva I. G., Nazarenko D. Y., Strelkov V. D. Sintez nekotorykh zameshchennykh piridin-sul'fokhloridov, sul'fokislot i sul'fonilamidov [Synthesis of some substituted pyridine-sulfochlorides, sulfonic acids and sulfonylamides] // Khimiya geterotsiklicheskikh soedinenii [Chemistry of heterocyclic compounds]. 2014. No. 9. Pp. 1366-1377 (in Russian).
13. Flipo M., Willand N., Lecat-Guillet N., Hounsou C., Desroses M., Leroux F., Déprez B. Discovery of Novel N-Phenylphenoxyacetamide Derivatives as EthR Inhibitors and Ethionamide Boosters by Combining High-Throughput Screening and Synthesis // J.Med. Chem. 2012. 55(14). 6391–6402. DOIhttps://doi.org/10.1021/jm300377g.
14. Baughman T. W., Sworen J. C., Wagener K. B. The facile preparation of alkenyl metathesis synthons // Tetrahedron. 2004. 60. 10943-10948.
15. Kulikova E. A., Basanova E. I., Perevalov V. P., Nikitina P. A. Alkilirovanie 1-gidroksiimidazolov [Alkylation of 1-hydroxyimidazoles] // Uspekhi v khimii i khimicheskoi tekhnologii [Successes in Chemistry and Chemical Technology]. XXXVI. 2022. No. 8. Pp. 97-99 (in Russian).
16. Poplavskaya I. A., Kurmangalieva R. G. Chemistry of amidoximes. Alma-Ata: Nauka. 1988. 144 p. (In Russian).
17. Dürüst Y., Karakus H., Kaiser M., Tasdemir D. Synthesis and antiprotozoal activity of novel dihydropyrrolo[3,4-d][1,2,3]triazoles // Eur. J. Med. Chem. 2012. V. 48. P. 296-304. DOI:https://doi.org/10.1016/j.ejmech.2011.12.028.