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Zastosowania zasad Mannicha

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
EN
Applications of Mannich bases
Języki publikacji
PL
Abstrakty
PL
Reakcja Mannicha, znana od początku XX wieku, znalazła zastosowanie w wielu gałęziach przemysłu. W przemyśle farmaceutycznym wykorzystywana jest w otrzymywaniu środków o właściwościach leczniczych i zapobiegających rozwojowi różnych chorób m.in. gruźlicy, Alzheimera, malarii, zapalenia otrzewnej oraz przeciwko wirusowi HIV. Produkcja nawozów dla roślin oraz środków ochrony roślin w rolnictwie to również obszary, w których stosuje się zasady Mannicha. Ponadto reakcja odgrywa rolę w produkcji wyrobów antykorozyjnych, oczyszczaniu ścieków oraz przedłużeniu terminu spożycia żywności. W pracy przedstawiono wybrane zastosowania produktów reakcji Mannicha.
EN
The Mannich reaction, known since the early 20th century, has found applications in many branches of industry. In the pharmaceutical industry, it is used to produce substances with therapeutic properties that prevent the development of various diseases, including tuberculosis, Alzheimer’s, malaria, peritonitis, and the HIV virus. The production of plant fertilizers and plant protection products in agriculture are also areas where the Mannich bases are applied. Furthermore, the reaction plays a role in the production of anti-corrosive products, wastewater treatment, and extending the shelf life of food. This paper presents selected applications of Mannich reaction products.
Czasopismo
Rocznik
Tom
Strony
189--193
Opis fizyczny
Bibliogr. 42 poz., rys.
Twórcy
  • Katedra Technologii Chemicznej Organicznej i Petrochemii, Wydział Chemiczny, Politechnika Śląska, Gliwice
  • Katedra Technologii Chemicznej Organicznej i Petrochemii, Wydział Chemiczny, Politechnika Śląska, Gliwice
Bibliografia
  • [1 ] Paul J., Presset M., Gall E. L., Multicomponent Mannich-Like Reactions of Organometallic Species, European Journal of Organic Chemistry, 2017, 2017(17), 2386-2406.
  • [2] Mazurkiewicz R., Październiok-Holewa A., Adamek J., Zielińska K., Chapter Two - α-Amidoalkylating Agents: Structure, Synthesis, Reactivity and Application, Advances in Heterocyclic Chemistry, 2014, 111, 43-94.
  • [3] Arend M., Westermann B., Risch N., Modern Variants of the Mannich Reaction, Angewandte Chemie International Edition, 1998, 37(8), 1044-1070.
  • [4] Mannich C., Krösche W., Ueber ein Kondensationsprodukt aus Formaldehyd, Ammoniak und Antipyrin, Archiv der Pharmazie, 1912, 250(1), 647-667.
  • [5] Kumar V., Sharma U., Verma P. K., Kumar N., Singh B., Silica-supported boric acid with ionic liquid: a novel recyclable catalytic system for onepot three-component Mannich reaction, Chem Pharm Bull (Tokyo), 2011, 59(5), 639-645.
  • [6] Shi Y., Wang Q., Gao S., Recent advances of Intramolecular Mannich Reaction in Natural Products Total Synthesis, Organic Chemistry Frontiers, 2018, 5(6), 1049-1066.
  • [7] Kleinman E. F., The Bimolecular Aliphatic Mannich and Related Reactions, Comprehensive Organic Synthesis, 1991, 2, 893-951.
  • [8] Raoof S. S., Sadiq A. S., Mannich Bases: Synthesis, Pharmacological Activity, and Applications: A Review, Iraqi Journal of Science, 2022, 5086-5105.
  • [9] Pu M. X., Guo H. Y., Quan Z. S., Li X., Shen Q. K., Application of the Mannich reaction in the structural modification of natural products, Journal of Enzyme Inhibition and Medicinal Chemistry, 2023, 38(1).
  • [10] Wang H., Chen X., Zhang L., Li Z., Fan X., Sun S., Efficient production of lignin-based slow-release nitrogen fertilizer via microwave heating, Industrial Crops and Products, 2021, 166, 113481.
  • [11] da Rosa F. A. F., Rebelo R. A., Nascimento M. G., Synthesis of new indolecarboxylic acids related to the plant hormone indoleacetic acid IAA, Journal of the Brazilian Chemical Society, 2003, 14(1).
  • [12] Song C., Gao C., Fatehi P., Wang S., Jiang C., Kong F., Influence of structure and functional group of modified kraft lignin on adsorption behavior of dye, International Journal of Biological Macromolecules, 2023, 240, 124368.
  • [13] Li Y., Gong D., Zhou Y., Zhang C., Zhang C., Sheng Y., Peng S., Respiratory Adsorption of Organic Pollutants in Wastewater by Superhydrophobic Phenolic Xerogels, Polymers, 2022, 14(8), 1596.
  • [14] Zong E., Wang X., Zhang L., Yang J., Liu X., A Recyclable Magnetic Aminated Lignin Supported Zr-La Dual-Metal Hydroxide for Rapid Separation and Highly Efficient Sequestration of Phosphate, Molecul es, 2023, 28(7), 2923.
  • [15] Meng J., Wang Q., Zhu Z., Lin X., Wang L., Novel single agent of imidazoline – phosphate copolymer with excellent corrosion and scale inhibition effect for wells flooded by CO2, Energy proceedings, 2023, 34.
  • [16] Al-Amiery A. A., Al-Azzawi W. K., Mannich bases as corrosion inhibitors: An extensive review, Journal of Molecular Structure, 2023, 1294, 136421.
  • [17] Pei L., Zhao S., Li H., Zhang X., Fan X., Wang W., Zhang C., Zhao G., Wang Z., Preparation of low temperature cure polybenzoxazine coating with enhanced thermal stability and mechanical properties by combustion synthesis approach, Polymer, 2021, 220, 123573.
  • [18] Loganathan V., Akbar I., Ahmed M. Z., Kazmi S., Raman G., Spectroscopic studies on the antioxidant and anti-tyrosinase activities of anthraqui-none derivatives, Journal of King Saud University – Science, 2023, 35(10), 102971.
  • [19] Sriharshitha S., Krishnadevi K., Prasanna D., Vitrimers trigger covalent bonded bio-silica fused composite materials for recycling, reshaping, and self-healing applications, RSC Advances, 2022, 12(41), 26934-26944.
  • [20] Hu S., Li Y., Yue F., Chen Y., Qi H., Bio-inspired synthesis of amino acids modified sulfated cellulose nanofibrils into multivalent viral inhibitors via the Mannich reaction, Carbohydrate Polymers, 2023, 299, 120202.
  • [21] Zhao B., Kolibaba T. J., Lazar S., Grunlan J. C., Environmentally-benign, water-based covalent polymer network for flame retardant cotton, Cellulose, 2021, 28, 5855–5866.
  • [22] Brattig N., Bergquist R., Vienneau D., Zhou X. N., Geography and health: role of human translocation and access to care, Infect Dis Poverty, 2024, 13(1), 37.
  • [23] Marinescu M., Cinteză L. O., Marton G. I., Chifiriuc M. C., Popa M., Stănculescu I., Zălaru C. M., Stavarache C. E., Synthesis, density functional theory study and in vitro antimicrobial evaluation of new benzimidazole Mannich bases, BMC Chemistry, 2020, 14(1), 45.
  • [24] Vinoth Kumar S., Subramanian M. R., Chinnaiyan S. K., Synthesis, characterisation and evaluation of N-mannich bases of 2-substituted Benzimidazole derivatives, J Young Pharm, 2013, 5(4), 154-159.
  • [25] Bloom B. R., Atun R., Cohen T., Dye C., Fraser H., Gomez G. B., Knight G., Murray M., Nardell E., Rubin E., Salomon J., Vassall A., Volchenkov G., White R., Wilson D., Yadav P., Tuberculosis, Major Infectious Diseases. 3rd ed. Washington (DC): The International Bank for Reconstruction and Development / The World Bank, 2017,
  • [26] Global tuberculosis report 2023. Geneva: World Health Organization; 2023. Licence: CC BY-NC-SA 3.0 IGO.
  • [27] Gopi C., Dhanaraju M. D., Pranusha K., Deepan T., Magesh A. R., Kavitha D., Design, Synthesis, Characterization and Antitubercular Activity of Novel Benzimidazole Mannich Base Derivatives: Anti-tubercular activity of novel Benzimidazole Mannich base derivatives, Asian Journal of Chemistry, 2024, 36(4), 969–973.
  • [28] Klein D. J., Boukouvala S., McDonagh E. M., Shuldiner S. R., Laurieri N., Thorn C. F., Altman R. B., Klein T. E., PharmGKB summary: isoniazid pathway, pharmacokinetics. Pharmacogenet Genomics, 2016, 26(9), 436-444.
  • [29] Raorane C. J., Periyasamy T., Haldhar R., Asrafali S. P., Raj V., Kim S. C., Synthesis of Bio-Based Polybenzoxazine and Its Antibiofilm and Anticorrosive Activities, Materials, 2023, 16(6), 2249.
  • [30] Gu H., Liu S., Liang K., Xia Z., Zhang G., Li B., Liu S., Design and Synthesisof Dimethylaminomethyl-Substituted Curcumin Derivatives: Potent AntiInflammatory, Anti-Oxidant, and Radioprotection Activity, Improved Aqueous Solubility Compared with Curcumin, Molecules, 2024, 29(9), 1985.
  • [31] https://aids.gov.pl/ Krajowe Centrum ds. AIDS – Agenda Ministra Zdrowia koordynująca zadania mające na celu zapobieganie HIV i zwalczanie AIDS w Polsce [dostęp 28.07.2024 r.]
  • [32] https://naukawpolsce.pl/ Kolejny wzrost zakażeń z powodu HIV w 2023 r.| Nauka w Polsce [dostęp 28.07.2024 r.]
  • [33] Swinkels H. M., Justiz Vaillant A. A., Nguyen A. D., Gulick P. G., Pinto K.M., HIV and AIDS (Nursing), In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2024 Jan–. PMID: 33760438. Available from: https://www.ncbi.nlm.nih.gov/books/NBK568679/ [dostęp 28.07.2024 r.]
  • [34] Li G., Zhang Y., Zeng H., Feng X., Su Z., Lin L., Water Enables Diastereodivergency in Bispidine-Based Chiral Amine-Catalyzed Asymmetric Mannich Reaction of Cyclic N -Sulfonyl Ketimines with Ketones, Chemical Science, 2022, 13(15), 4313-4320.
  • [35] Long J. M., Holtzman D. M., Alzheimer Disease: An Update on Pathobiology and Treatment Strategies, Cell, 2019, 179(2), 312-339.
  • [36] https://stat.gov.pl/en/ Statistics Poland [dostęp 28.07.2024 r.]
  • [37] Alhazmi H. A., Albratty M., An update on the novel and approved drugs for Alzheimer disease, Saudi Pharmaceutical Journal, 2022, 30(12), 1755-1764.
  • [38] He Y., Xiao G., Yu G., Song Q., Zhang H., Liu Z., Tan Z., Deng Y., 2-(3-Hydroxybenzyl)benzo[d]isothiazol-3(2H)-one Mannich base derivatives as potential multifunctional anti-Alzheimer’s agents, Medical Chemistry Research, 2021, 30, 1249–1264.
  • [39] Marucci G., Buccioni M., Ben D. D., Lambertucci C., Volpini R., Amenta F., Efficacy of acetylcholinesterase inhibitors in Alzheimer’s disease, Neuropharmacology, 2021, 190, 108352.
  • [40] Kumar S., Arora D., Bhardwaj T. R., Dhingra N., Design, synthesis and studies on novel N-Mannich base derivatives of isatin targeting dihydrofolate reductase receptor, Journal of Molecular Structure, 2024, 1311, 138385.
  • [41] Dong J., Wang T., Li H., Zhang J., Zhang H., Liu W., You X., Gu Z., Li Y., Chen X., Fu Q., Polyphenol-based antibacterial and antioxidative nanoparticles for improved peritonitis therapy, Collagen and Leather, 2023, 5(1).
  • [42] Quiroga D., Coy-Barrera E., Synthesis of Antifungal Heterocycle-Containing Mannich Bases: A Comprehensive Review, Organics, 2023, 4(4), 503-523.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c8656360-d885-41a1-84f8-d3dabcdae7ea
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