90172-26-2Relevant academic research and scientific papers
Synthesis and evaluation of novel benzophenone-thiazole derivatives as potent VEGF-A inhibitors
Prashanth,Thirusangu, Prabhu,Vijay Avin,Lakshmi Ranganatha,Prabhakar,Khanum, Shaukath Ara
, p. 274 - 283 (2015/02/19)
A series of 2-(4-benzoyl-phenoxy)-N-(4-phenyl-thiazol-2-yl)-Acetamides (10a-n) were synthesized by multistep reaction sequence and all the compounds were well characterized for structural elucidation. The in vitro cytotoxicity of compounds 10a-n was evaluated against EAC and DLA cell lines using trypan blue dye exclusion method. Further MTT assay and LDH release assay, followed by in vivo studies on murine model were also evaluated. The compound 10h with a methyl and fluoro groups at benzophenone moiety and methoxy group at phenyl ring was in a leading position to exhibit the promising antiproliferative effect through translational VEGF-A inhibition.
Design, synthesis, and anticancer properties of novel benzophenone- conjugated coumarin analogs
Lakshmi Ranganatha,Zameer, Farhan,Meghashri,Rekha,Girish,Gurupadaswamy,Khanum, Shaukath Ara
, p. 901 - 911 (2014/01/06)
In the current scenario, development of anticancer drugs with specific targets is of prime importance in modern chemical biology. Observing the importance of benzophenone and coumarin nucleus, it would be worthwhile to design and synthesize novel benzophenone derivatives (8a-o) bearing the coumarin nucleus. Further, they were screened for prospective anticancer activities in vitro against the Michigan Cancer Foundation-7 (MCF-7) and Ehrlich's ascites tumor (EAT) cell lines and their biomarkers, followed by in silico studies regarding phosphoinositide 3-kinase (PI3K) and caspase by molecular docking. Benzophenones have been reported as potential drugs targeting tumor angiogenesis; thus, the formation of neovessels in an in vivo model system like CAM, which is angiogenesis dependent, was observed in the presence of compounds 8a-o. The above findings would help in understanding their putative potential as therapeutic agents for cancer patients. Coumarin-integrated benzophenone conjugates (8a-o) were designed, synthesized, and screened for prospective anticancer activities in vitro against the MCF-7 and EAT cell lines. Molecular docking studies with regard to phosphoinositide 3-kinase and caspase were performed. In addition, neovessel formation was observed in an in vivo model system.
Benzophenone-N-ethyl piperidine ether analogues-Synthesis and efficacy as anti-inflammatory agent
Khanum, Shaukath A.,Girish,Suparshwa,Khanum, Noor Fatima
body text, p. 1887 - 1891 (2009/11/30)
A sequence of substituted benzophenone-N-ethyl piperidine ether analogues has been synthesized and evaluated as orally active anti-inflammatory agents with reduced side effects. The anti-inflammatory and ulcerogenic activities of the compounds were compared with naproxen, indomethacin, and phenylbutazone. These analogues showed an interesting anti-inflammatory activity in carrageenan-induced foot pad edema assay. In the air-pouch test, some of the analogues reduced the total number of leukocytes of the exudate, which indicates inhibition of prostaglandin production. Side effects of the compounds were examined on gastric mucosa, in the liver and stomach. None of the compounds illustrated significant side effects compared with standard drugs like indomethacin and naproxen.
p-Fluorobenzoyl Chloride for Characterization of Active Hydrogen Functional Groups by Fluorine-19 Nuclear Magnetic Resonance Spectrometry
Spratt, M. P.,Dorn, H. C.
, p. 2038 - 2043 (2007/10/02)
The base-catalyzed reactions of p-fluorobenzoyl chloride provide a convenient method for (19)F NMR analysis of alcohols, phenols, carboxylic acids, amines, and thiols.The (19)F chemical shift and yield data for p-fluorobenzoyl derivatives for nearly 100 compounds are presented.The yield data for these p-fluorobenzoyl derivatives suggest a simple, and in many cases, quantitative method for introducing a fluorine tagging group.The (19)F chemical shifts indicate a wide chemical shift range (ca. 10 ppm) for a large number of compounds.Furthermore, most chemical classes (e.g., phenols, alcohols, etc.) have fairly well resolved chemical shift regions.
