Academic literature on the topic 'Substituted Nicotinic acid'

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Journal articles on the topic "Substituted Nicotinic acid"

1

Sokolenko, Taras M., and Yurii L. Yagupolskii. "5-Trifluoromethoxy-substituted Nicotinic Acid, Nicotinamide and Related Compounds." Журнал органічної та фармацевтичної хімії 22, no. 1 (2024): 22–30. http://dx.doi.org/10.24959/ophcj.24.302435.

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A practical and convenient method for synthesizing nicotinic acid and nicotinamide with the trifluoromethoxy group in position 5 of the ring has been developed. A series of related compounds, for example, nicotinic aldehyde and nicotinic alcohol, have been synthesized. It has been shown that 3-bromo-5-trifluoromethoxypyridine is a convenient and efficient synthon for palladium-catalyzed coupling reactions. The trifluoromethoxy group has been found to be remarkably stable against hydroiodic acid in contrast to the methoxy group.
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2

N., Hariraj1* N. Kannappan2 Siju.E.N3. "Synthesis of certain Pyrazoline 5-One Derivatives of 6-Methyl Nicotinicacid and Evaluation of their Antimicrobial activities." Journal of Pharma Research 1, no. 2 (2012): 16–17. https://doi.org/10.5281/zenodo.1098657.

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<strong><em>ABSTRACT</em></strong> <em>Pyrazolines are known to possess a wide variety of biological activities. Due to the wide range of biological activities that Pyrazolines posses, it was our aim to prepare pyrazolin-5-one derivatives containing substituted Nicotinic acid and to explore, their therapeutic advantage. Among the six newly synthesized pyrazoline-5-one derivatives MPZ-1 showed promising antimicrobial activity even at a concentration 250mcg/disc. and MPZ-2 showed moderate antimicrobial activity at a concentration 500mcg/disc.</em> <strong><em>Keywords: </em></strong><em>Pyrazoline-5- one derivatives, substituted Nicotinic acid, Antibacterial, antifungal.</em>
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3

Nandi, Goutam, Ranjit Thakuria, Hatem M. Titi, Ranjan Patra, and Israel Goldberg. "Synthesis, structure, topology and magnetic properties of new coordination polymers based on 5(–Br/–COOH)-substituted nicotinic acid." CrystEngComm 16, no. 24 (2014): 5244–56. http://dx.doi.org/10.1039/c4ce00300d.

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4

Jain, Pooja, James T. Slama, LeRoy A. Perez-Haddock, and Timothy F. Walseth. "Nicotinic Acid Adenine Dinucleotide Phosphate Analogues Containing Substituted Nicotinic Acid: Effect of Modification on Ca2+Release." Journal of Medicinal Chemistry 53, no. 21 (2010): 7599–612. http://dx.doi.org/10.1021/jm1007209.

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5

Nenajdenko, Valentine G., Sergey V. Druzhinin, and Elizabeth S. Balenkova. "Efficient route to 6-CF3-substituted nicotinic acid derivatives." Journal of Fluorine Chemistry 127, no. 7 (2006): 865–73. http://dx.doi.org/10.1016/j.jfluchem.2006.03.007.

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6

Kmoníček, Vojtěch, Martin Valchář, and Zdeněk Polívka. "Some 4-Substituted 1-(3-Pyridylmethyl)piperazines with Antihistamine Activity." Collection of Czechoslovak Chemical Communications 59, no. 10 (1994): 2343–50. http://dx.doi.org/10.1135/cccc19942343.

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Several compounds derived from nicotinic acid were prepared within a more extensive programme aiming at the synthesis of new substances with expected antihistamine and antidepressant activity. Some of these compounds display certain structural resemblance with the antidepressant agent piberaline (EGYT 475, Trelibet®, I) and its analogues. The products were used as intermediates for the synthesis of further compounds and most of them were subjected to pharmacological testing. Substituted nicotinic acid piperazides IIa - IId and IVa - IVe were obtained by reactions of nicotinoyl chloride (prepared in situ) with the correspondingly substituted piperazines. Reduction of the piperazides IIa - IId and IVa - IVd with diborane in situ in tetrahydrofuran afforded corresponding 1-substituted 4-(3-pyridylmethyl)piperazines IIIa - IIId and Va - Vd. Whereas the alkylation of 1-(2-pyrimidinyl)piperazine with 2-(chloromethyl)pyridine in ethanol in the presence of triethylamine resulted in compounds Ve, compound Vf was obtained by the addition reaction of 1-(3-pyridylmethyl)piperazine to acrylamide. The piperazides VIe and VIf were prepared by reactions of 2-(3-pyridyl)acetic acid with 1-(2-pyrimidinyl)piperazine or 3-(1-piperazinyl)propionamide in N,N-dimethylformamide in the presence 1,1'-carbonyldiimidazole. A similar procedure starting from nicotinic acid afforded the piperazide IVf. Compounds Vc and Vd showed significant affinity for the histamine H1-receptors (inhibition of binding of 2 nmol/l [3H]mepyramine in membranes from the rat brain: Vc, IC50 = 28 nmol/l; Vd, IC50 = 148 nmol/l). They also proved active in test of histamine aerosol in guinea pigs (PD50 = 4.1 mg/kg p.o. for compound Vc and 2.4 for compound Vd). Results of a more detailed pharmacological testing of these compounds will be published elsewhere.
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7

Akishina, E. A., D. V. Kazak, and E. A. Dikusar. "Synthesis of functionally substituted esters of nicotinic and isonicotinic acid." Proceedings of the National Academy of Sciences of Belarus, Chemical Series 56, no. 3 (2020): 301–10. http://dx.doi.org/10.29235/1561-8331-2020-56-3-301-310.

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8

Dikusar, E. A., S. V. Dubovik, N. G. Kozlov, and A. P. Yuvchenko. "Salts of Nicotinic Acid with a Series of Substituted Amines." Chemistry of Natural Compounds 39, no. 6 (2003): 607–8. http://dx.doi.org/10.1023/b:conc.0000018124.22112.7f.

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9

Kazak, D. V., E. A. Dikusar, and S. G. Stepin. "NEW APPROACHES TO SYNTHESIS OF HETEROCYCLIC DERIVATIVES OF PYRIDINE CARBOXYLIC ACIDS, ACRIDINE AND PYRAZOLONE." Vestnik Farmacii 91, no. 1 (2021): 65–85. http://dx.doi.org/10.52540/2074-9457.2021.1.65.

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The urgent task of modern pharmaceutical chemistry is the development of new methods of synthesis, the study of chemical properties, as well as the search for biologically active compounds among derivatives of nicotinic and isonicotinic acids. The review examines synthetic approaches to the production of carboxylic acid esters including nicotinic and isonicotinic acids, gives examples of the biological activity of nicotinic and isonicotinic acids and their derivatives. The methods for the synthesis of azomethines, substituted acridines and pyrazolones are discussed, examples of their biological activity are given. A promising concept for the synthesis of new potential drugs based on heterocyclic derivatives of nicotinic and isonicotinic acids is presented. The methods of functionalization of organic compounds considered in this review with regard to the synthesis of heterocyclic derivatives of nicotinic and isonicotinic acids make it possible to obtain new promising compounds potentially having antibacterial, antiviral, fungicidal and antitumor activity.
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10

Trabbic, Christopher J., Fan Zhang, Timothy F. Walseth, and James T. Slama. "Nicotinic Acid Adenine Dinucleotide Phosphate Analogues Substituted on the Nicotinic Acid and Adenine Ribosides. Effects on ReceptorMediated Ca2+Release." Journal of Medicinal Chemistry 58, no. 8 (2015): 3593–610. http://dx.doi.org/10.1021/acs.jmedchem.5b00279.

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