Iodine promoted synthesis of pyrido[2′,1′:2,3]imidazo[4,5-c]quinoline derivatives via oxidative decarboxylation of phenylacetic acid

2022 ◽  
pp. 1-10
Author(s):  
Rajesh Jinkala ◽  
Shiva Kumar K. B. ◽  
Venkateshwarlu Rapolu ◽  
Nikumbh Satish P. ◽  
Subba Rao Jammula ◽  
...  
2017 ◽  
Vol 4 (4) ◽  
pp. 545-554 ◽  
Author(s):  
Jin-Wei Yuan ◽  
Liang-Ru Yang ◽  
Pu Mao ◽  
Ling-Bo Qu

AgNO3-catalyzed direct C–H arylation of quinolines by oxidative decarboxylation of aromatic carboxylic acids to afford aryl quinoline derivatives in moderate yields was described.


2020 ◽  
Vol 56 (18) ◽  
pp. 2791-2794 ◽  
Author(s):  
Xuan Fu ◽  
Megan Jamison ◽  
Aaron M. Jubb ◽  
Yiju Liao ◽  
Alexandria Aspin ◽  
...  

Efficient and selective effects of copper salts on hydrothermal oxidative decarboxylation have been discovered and studied.


1968 ◽  
Vol 41 (1) ◽  
pp. 242-244 ◽  
Author(s):  
Takao Watanabe ◽  
Naomichi Furukawa ◽  
Shigeru Oae

2006 ◽  
Author(s):  
Robert Musiol ◽  
Josef Jampilek ◽  
Katarina Kralova ◽  
Dominik Tabak ◽  
Barbara Podeszwa ◽  
...  

2020 ◽  
Vol 24 (4) ◽  
pp. 439-464 ◽  
Author(s):  
Rizk E. Khidre ◽  
Tahah A. Ameen ◽  
Mounir A. I. Salem

This review summarizes the synthesis, reactions, and biological activities of tetrazolo[1,5-a]quinoline derivatives. These derivatives were synthesized by several methods such as i) from the reaction of 2-chloroquinoline with sodium azide ii) from diazotization 2-hydrazinylquinoline derivatives, and iii) from intramolecular cyclocondensation of 2-azidoarylidenes. Also, the chemical reactions and pharmacological activities of some tetrazoloquinolines such as tetrazolo[1,5-a]quinoline-4-carbaldehyde, 5-chlorotetrazolo[ 1,5-a]quinoline, 4-(chloromethyl)tetrazolo[1,5-a]quinoline, tetrazolo[1,5- a]quinoline-4-carboxylic acid, and 5-azidotetrazolo[1,5-a]quinoline were discussed.


2020 ◽  
Vol 23 (21) ◽  
pp. 2271-2294 ◽  
Author(s):  
Divya Utreja ◽  
Shivali Sharma ◽  
Akhil Goyal ◽  
Komalpreet Kaur ◽  
Sonia Kaushal

Heterocyclic chemistry is the only branch of chemistry that has applications in varied areas such as dyes, photosensitizers, coordination compounds, polymeric materials, biological, and many other fields. Quinoline and its derivatives have always engrossed both synthetic chemists and biologists because of their diverse chemical and pharmacological properties as these ring systems can be easily found in various natural products, especially in alkaloids. Among alkaloids, quinoline derivatives i.e. quinolinium salts have attracted much attention nowadays owing to their diverse biological profile such as antimicrobial, antitumor, antifungal, hypotensive, anti-HIV, analgesics and anti-inflammatory, etc. Quinoline and its analogs have recently been examined for their modes of function in the inhibition of tyrosine kinases, proteasome, tubulin polymerization, topoisomerase, and DNA repair. These observations have been guiding scientists for the expansion of new quinoline derivatives with improved and varied biological activities. Quinolinium salts have immense possibilities and scope to investigate these compounds as potential drug candidates. Therefore, we shall present a concise compilation of this work to aid in present knowledge and to help researchers explore an interesting quinoline class having medicinal potential.


2013 ◽  
Vol 13 (3) ◽  
pp. 365-372 ◽  
Author(s):  
M. Orhan Puskullu ◽  
Betul Tekiner ◽  
Sibel Suzen

2017 ◽  
Vol 14 (4) ◽  
pp. 374-379 ◽  
Author(s):  
Rebeca Lima ◽  
Kauana Souza ◽  
Jordana Lazzarini ◽  
Isabela Souza ◽  
Adilson Silva ◽  
...  

2019 ◽  
Vol 16 (6) ◽  
pp. 663-669
Author(s):  
Dan Liu ◽  
Aiqi Xue ◽  
Zhixin Liu ◽  
Yi Zhang ◽  
Penghui Peng ◽  
...  

Background: Three series of new 7-fluoro-4-(1-piperazinyl) quinolines (I1~I6, II1~II2 and IV1~IV4) were synthesized. Their anti-tumor activity was evaluated in vitro against three human carcinoma cell lines, namely SGC-7901 cells, BEL-7402 cells and A549 cells expressing high levels of EGFR by Methyl Thiazolyl Terazolium (MTT) assay. Methods: Three series of quinoline derivatives were synthesized, characterized and evaluated for their in vitro anti-tumor activities. Results and Discussion: Structures of the newly synthesized compounds were confirmed by spectral analysis. The preliminary bioassay indicated that compounds I1, I10 and II1 exhibited better anti-tumor activity than the rest of the target compounds and gefitinib against A549 cell based assay, which demonstrated that compounds I1, I10 and II1 are potential agents for cancer therapy. Results suggested that the substitutes on piperazinyl influenced anti-tumor activities remarkably. Conclusion: These results are useful for discovering more potent novel anti-tumor compounds and further studies are ongoing.


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