Processing, Please wait...

  • Home
  • About Us
  • Search:
  • Advanced Search

Growing Science » Current Chemistry Letters » Synthesis, characterization and antibiotic evaluation of various biologically active derivatives of 4-Alkylpyrimidine-5-carbonitrile

Journals

  • IJIEC (777)
  • MSL (2643)
  • DSL (690)
  • CCL (528)
  • USCM (1092)
  • ESM (421)
  • AC (562)
  • JPM (293)
  • IJDS (952)
  • JFS (96)
  • HE (32)
  • SCI (26)

CCL Volumes

    • Volume 1 (23)
      • Issue 1 (7)
      • Issue 2 (5)
      • Issue 3 (6)
      • Issue 4 (5)
    • Volume 2 (26)
      • Issue 1 (7)
      • Issue 2 (6)
      • Issue 3 (6)
      • Issue 4 (7)
    • Volume 3 (30)
      • Issue 1 (7)
      • Issue 2 (10)
      • Issue 3 (8)
      • Issue 4 (5)
    • Volume 4 (21)
      • Issue 1 (5)
      • Issue 2 (5)
      • Issue 3 (6)
      • Issue 4 (5)
    • Volume 5 (20)
      • Issue 1 (5)
      • Issue 2 (5)
      • Issue 3 (5)
      • Issue 4 (5)
    • Volume 6 (20)
      • Issue 1 (5)
      • Issue 2 (5)
      • Issue 3 (5)
      • Issue 4 (5)
    • Volume 7 (15)
      • Issue 1 (4)
      • Issue 2 (4)
      • Issue 3 (4)
      • Issue 4 (3)
    • Volume 8 (20)
      • Issue 1 (5)
      • Issue 2 (5)
      • Issue 3 (5)
      • Issue 4 (5)
    • Volume 9 (20)
      • Issue 1 (5)
      • Issue 2 (5)
      • Issue 3 (5)
      • Issue 4 (5)
    • Volume 10 (43)
      • Issue 1 (5)
      • Issue 2 (7)
      • Issue 3 (17)
      • Issue 4 (14)
    • Volume 11 (43)
      • Issue 1 (14)
      • Issue 2 (11)
      • Issue 3 (10)
      • Issue 4 (8)
    • Volume 12 (78)
      • Issue 1 (21)
      • Issue 2 (22)
      • Issue 3 (20)
      • Issue 4 (15)
    • Volume 13 (68)
      • Issue 1 (23)
      • Issue 2 (17)
      • Issue 3 (16)
      • Issue 4 (12)
    • Volume 14 (68)
      • Issue 1 (20)
      • Issue 2 (13)
      • Issue 3 (22)
      • Issue 4 (13)
    • Volume 15 (33)
      • Issue 1 (13)
      • Issue 2 (20)

Keywords

Supply chain management(168)
Jordan(165)
Vietnam(151)
Customer satisfaction(120)
Performance(115)
Supply chain(112)
Service quality(98)
Competitive advantage(97)
Tehran Stock Exchange(94)
SMEs(89)
optimization(87)
Artificial intelligence(85)
Financial performance(84)
Sustainability(84)
Trust(83)
TOPSIS(83)
Job satisfaction(81)
Factor analysis(78)
Genetic Algorithm(78)
Social media(78)


» Show all keywords

Authors

Naser Azad(82)
Zeplin Jiwa Husada Tarigan(66)
Mohammad Reza Iravani(64)
Endri Endri(45)
Muhammad Alshurideh(42)
Hotlan Siagian(40)
Dmaithan Almajali(37)
Jumadil Saputra(36)
Muhammad Turki Alshurideh(35)
Ahmad Makui(33)
Barween Al Kurdi(32)
Sautma Ronni Basana(31)
Basrowi Basrowi(31)
Hassan Ghodrati(31)
Mohammad Khodaei Valahzaghard(30)
Shankar Chakraborty(29)
Ni Nyoman Kerti Yasa(29)
Sulieman Ibraheem Shelash Al-Hawary(28)
Prasadja Ricardianto(28)
Haitham M. Alzoubi(28)


» Show all authors

Countries

Iran(2190)
Indonesia(1311)
Jordan(813)
India(793)
Vietnam(510)
Saudi Arabia(477)
Malaysia(444)
China(231)
United Arab Emirates(226)
Thailand(160)
United States(114)
Ukraine(110)
Turkey(110)
Egypt(105)
Peru(94)
Canada(92)
Morocco(86)
Pakistan(85)
United Kingdom(80)
Nigeria(78)


» Show all countries

Current Chemistry Letters

ISSN 1927-730x (Online) - ISSN 1927-7296 (Print)
Quarterly Publication
Volume 12 Issue 3 pp. 537-544 , 2023

Synthesis, characterization and antibiotic evaluation of various biologically active derivatives of 4-Alkylpyrimidine-5-carbonitrile Pages 537-544 Right click to download the paper Download PDF

Authors: Pragna H. Thanki, Dhaval V. Hingrajiya, Jayesh J. Modha, Jalpa H. Vadgama

DOI: 10.5267/j.ccl.2023.3.002

Keywords: Pyrimidine Analogs, Biologically active, Pharmacophoric Groups, Antibacterial, Antibiotic Evaluation

Abstract: Extensive research work has been published on Tetrahydro and Dihydropyrimidine derivatives. Pyrimidine-5-Carbonitrile and its analogs have demonstrated a large number of activities. Some 6-Halogenosubstituted pyrimidine analogs have also been reported to be biologically active to a certain extent, but the literature survey reveals not much report on 6-alkylated pyrimidine derivatives. Targeting enhancement in biologically useful properties of a lead molecule through the association of it with active pharmacophoric groups or molecules is a conventional method in pharmaceutical research. With an aim to explore a better useful Dihydropyrimidine derivative, a newer 4-Alkylated-1,6-dihydropyrimidine analog (1) has been prepared. The lead molecule (1) has further been converted to amine derivative (2), hydrazino derivative (3) tri substituted s-triazinyl derivative (4), sulphonamide (5), Schiff’s base (6), a thiazolidinones (7), and 2-Azetidinones (8) respectively using various methods. Compounds 2, 4, 5, and 7 showed 50% and 8 showed 100% bacterial inhibition at 32μg/mL in single-point bacterial inhibition against various bacterial strains.

How to cite this paper
Thanki, P., Hingrajiya, D., Modha, J & Vadgama, J. (2023). Synthesis, characterization and antibiotic evaluation of various biologically active derivatives of 4-Alkylpyrimidine-5-carbonitrile.Current Chemistry Letters, 12(3), 537-544.

Refrences

1. Cooper J. R., Floyd E. B.,Robert H. R. (2007) The complete story of the Benzodiazepines, 7th Ed, Oxford University Press, England.
2. Skerritt J. H., Johnston G. A. (1983) Enhancement of GABA binding by benzodiazepines and related anxiolytics, Eur. J. Pharmacol., 89(3-4), 193-8.
3. Richelson E. (2001) Pharmacology of antidepressants, Mayo Clin. Proc. Elsevier, 76(5), 511-527. (DOI: 10.4065/76.5.511).
4. Joyce P. I., Rizzi D., Calo G., Rowbotham D. J., Lambert D. G. (2002) The effect of guanethidine and local anesthetics on the electrically stimulated mouse vas deferens, Anesth. Analg., 95(5), 1339-43.
5. Guyton A. C., Hall J. E. (2005) Text book of Medical Physiology, 7th Ed, Elsevier- Saunders, New York.
6. Kantor T. G. (1986) Ketoprofen: a review of its pharmacologic and clinical properties, Pharmacotherapy, 6(3), 93-103.
7. Dash C. H. (1975) Penicillin allergy and the cephalosporins, J. Antimicrob. Chemother., 1(3), 107-118.
8. Goldstein E. J. (1987) Norfloxacin, a fluoroquinolone antibacterial agent: classification, mechanism of action, and in vitro activity, Am. J. Med., 82(6B), 3-17.
9. Kingston W. (2004) Streptomycin, Schatz v. Waksman, and the balance of credit for discovery, J. History Med. Allied Sci., 59(3), 441-462.
10. Rani J., Kumar S., Saini M., Mundlia J., Verma P. K. (2016) Biological potential of pyrimidine derivatives in a new era, Res. Chem. Intermed., 42(9), 6777-6804.
11. Kumar S., Lim S. M., Ramasamy K., Mani V., Shah S. A. A., Narasimhan B. (2018) Design, synthesis, antimicrobial and cytotoxicity study on human colorectal carcinoma cell line of new 4, 4′-(1, 4-phenylene) bis (pyrimidin-2-amine) derivatives, Chem. Cent. J., 12(1), 1-13.
12. Meneghesso S., Vanderlinden E., Stevaert A., McGuigan C., Balzarini, J., Naesens L. (2012) Synthesis and biological evaluation of pyrimidine nucleoside monophosphate prodrugs targeted against influenza virus, Antiviral res., 94(1), 35-43.
13. Ashour H. M., Shaaban O. G., Rizk O. H., El-Ashmawy I. M. (2013) Synthesis and biological evaluation of thieno [2′, 3′: 4, 5] pyrimido [1, 2-b][1, 2, 4] triazines and thieno [2, 3-d][1, 2, 4] triazolo [1, 5-a] pyrimidines as anti-inflammatory and analgesic agents, Eur. J. Med. Chem., 62, 341-351.
14. Yejella R. P., Atla S. R. (2011) A study of anti-inflammatory and analgesic activity of new 2, 4, 6-trisubstituted pyrimidines, Chem. Pharm. Bull., 59(9), 1079-1082.
15. Kumar S., Narasimhan B. (2018) Therapeutic potential of heterocyclic pyrimidine scaffolds, Chem. Cent. J., 12 (1) 1-29.
16. Bhalgat C. M., Ali M. I., Ramesh B., Ramu G. (2014) Novel pyrimidine and its triazole fused derivatives: synthesis and investigation of antioxidant and anti-inflammatory activity, Arab. J. Chem., 7(6), 986-993.
17. Bhatewara A., Jetti S. R., Kadre T., Paliwal P., Jain S. (2012) An efficient one-pot multi component synthesis of pyrimidine derivatives in aqueous media, Arch. Appl. Sci. Res., 4(3), 1274-1278.
18. Kumar S., Kaushik A., Narasimhan B., Shah S. A. A., Lim S. M., Ramasamy K., Mani V. (2019) Molecular docking, synthesis and biological significance of pyrimidine analogues as prospective antimicrobial and antiproliferative agents, BMC Chem., 13(1), 1-17.
19. Kumar S., Lim S. M., Ramasamy K., Vasudevan M., Shah S. A. A., Narasimhan B. (2017) Bis-pyrimidine acetamides: design, synthesis and biological evaluation, Chem. Cent. J., 11(1), 1-14.
20. Ram V. J. (1990) Chemotherapeutic agents, XVIII: synthesis of π‐deficient pyrimidines and fused pyrimidines as leishmanicidal agents, Arch. Pharm., 323(11), 895-899. (DOI: 10.1002/ardp.19903231103).
21. Thanki P. H., Hingrajia D. V., Modha, J. J. (2022) Synthesis, characterization and biological screening of various pharmacophoric derivatives of 4-alkylpyrimidine-5-carbonitrile, Indian J. Chem., 61(1), 81-87.
22. Malig T. C., Yu D., Hein J. E. (2018) A revised mechanism for the Kinugasa reaction, J. Am. Chem. Soc., 140(29), 9167-9173.
23. Jasiński R. (2015) A new mechanistic insight on β-lactam systems formation from 5-nitroisoxazolidines, RSC Adv., 5(62), 50070-50072.
24. Corey E. J., Kürti L. (2010) Enantioselective chemical synthesis: methods, logic, and practice, Academic Press, United States.
25. Verma A., Saraf S. K., (2008) 4-Thiazolidinone – A biologically active scaffold, Euro. J. Med. Chem., 43(5), 897-905.
26. Thanki P. H., Hingrajia D. V., Modha J. J. (2018) Synthesis and characterization of derivatives of pyrimidine-5-carbonitrile and their biological screening, Indian J. Heterocycl. Chem., 28(2), 201-206.
27. Modha J. J., Datta N., Parekh H. (2001) Synthesis and biological evaluation of some new 3,4-dihydropyrimidin-4-ones, Il Farmaco, 56(9), 641-646.
28. Wikler M. A. (2006) Methods for dilution antimicrobial susceptibility tests for bacteria that grow aerobically: approved standard, Clsi (Nccls), 26, M7-A7.
  • 17
  • 1
  • 2
  • 3
  • 4
  • 5

Journal: Current Chemistry Letters | Year: 2023 | Volume: 12 | Issue: 3 | Views: 789 | Reviews: 0

Related Articles:
  • Design, synthesis, molecular docking and biological evaluation of some pyri ...
  • Synthesis and biological evaluation of pyrazole analogues linked with 1,2,3 ...
  • Synthesis, anti-tubercular evaluation and molecular docking studies of Nitr ...
  • Synthesis and characterization of 4-amino-4H-1,2,4-triazole derivatives: An ...
  • The synthesis of 2-arylquinoxaline derivatives

Add Reviews

Name:*
E-Mail:
Review:
Bold Italic Underline Strike | Align left Center Align right | Insert smilies Insert link URLInsert protected URL Select color | Add Hidden Text Insert Quote Convert selected text from selection to Cyrillic (Russian) alphabet Insert spoiler
winkwinkedsmileam
belayfeelfellowlaughing
lollovenorecourse
requestsadtonguewassat
cryingwhatbullyangry
Security Code: *
Include security image CAPCHA.
Refresh Code

® 2010-2026 GrowingScience.Com