118299-82-4Relevant academic research and scientific papers
Design, Synthesis, and Biological Evaluation of Novel 1,3-Oxazole Sulfonamides as Tubulin Polymerization Inhibitors
Barnes, Korry L.,Sisco, Edward
, p. 1030 - 1037 (2021)
A series of novel 1,3-oxazole sulfonamides were constructed and screened for their potential to inhibit cancer cell growth. These compounds were evaluated against the full NCI-60 human tumor cell lines, with the majority exhibiting promising overall growth inhibitory properties. They displayed high specificity within the panel of leukemia cell lines versus all other lines tested. When examined in the dose-response assay, GI50 values fell within the low micromolar to nanomolar ranges. 1,3-Oxazole sulfonamide 16 displayed the best average growth inhibition, whereas the 2-chloro-5-methylphenyl and 1-naphthyl substituents on the sulfonamide nitrogen proved to be the most potent leukemia inhibitors with mean GI50 values of 48.8 and 44.7 nM, respectively. In vitro tubulin polymerization experiments revealed that this class of compounds effectively binds to tubulin and induces the depolymerization of microtubules within cells.
4 - Substituted benzene sulfonamide derivative and its preparation method and application
-
Paragraph 0201-0204, (2018/04/21)
The present invention discloses a class of new 4-substituted benzene sulfonamide derivatives represented by a formula (I), wherein the 4-substituted benzene sulfonamide derivatives have good antitumor activity, and each group is defined in the specification. The present invention further discloses a preparation method of the derivative, a pharmaceutical composition containing the derivative, and applications of the 4-substituted benzene sulfonamide derivative and the pharmaceutical composition containing the derivative as the antitumor drug. The formula I is defined in the specification.
Synthesis, anti-cancer evaluation of benzenesulfonamide derivatives as potent tubulin-targeting agents
Yang, Jun,Yang, Simin,Zhou, Shanshan,Lu, Dongbo,Ji, Liyan,Li, Zhongjun,Yu, Siwang,Meng, Xiangbao
, p. 488 - 496 (2016/07/19)
A series of benzenesulfonamide derivatives were synthesized and evaluated for their anti-proliferative activity and interaction with tubulin. These new derivatives showed significant activities against cellular proliferative and tubulin polymerization. Compound BA-3b proved to be the most potent compound with IC50value ranging from 0.007 to 0.036 μM against seven cancer cell lines, and three drug-resistant cancer cell lines, which indicated a promising anti-cancer agent. The target tubulin was also verified by dynamic tubulin polymerization assay and tubulin intensity assay.
Probing the 'bipolar' nature of the carbonic anhydrase active site: Aromatic sulfonamides containing 1,3-oxazol-5-yl moiety as picomolar inhibitors of cytosolic CA I and CA II isoforms
Krasavin, Mikhail,Korsakov, Mikhail,Dorogov, Mikhail,Tuccinardi, Tiziano,Dedeoglu, Nurcan,Supuran, Claudiu T.
, p. 334 - 347 (2015/07/28)
Abstract A series of potent inhibitors of human carbonic anhydrase (CA) isoforms I and II has been prepared via a direct, chemoselective sulfochlorination of a range of 1,3-oxazolyl benzenes and thiophenes, followed by primary sulfonamide synthesis. The latter functionality is a known zinc-binding group (ZBG) responsible for anchoring the inhibitors to the CA's zinc metal ion. The compound's periphery as well as the overall scaffold geometry was designed to enable optimal interactions with the two distinct sides of the enzyme's active site, one of which is lined with hydrophobic residues and while the other is predominantly hydrophilic. As a result, several compounds inhibiting the therapeutically important cytosolic CA I and CA II in picomolar range have been identified. These compounds are one of the most potent CA inhibitors identified to-date. Not only the remarkable (>10 000-fold), cytosolic CA I and CA II selectivity vs. the membrane-bound CA IX and CA XII isoforms, but also the pronounced CA II/I selectivity observed in some cases, allow considering this series as a set of isoform-selective chemical biology tools and promising starting points for drug candidate development.
A novel and direct synthesis of 2-alkyl-5-aryl disubstituted oxazoles
Lee, Jong Chan,Hong, Taiyoung
, p. 8959 - 8960 (2007/10/03)
A direct and efficient method for the preparation of 2-alkyl-5-aryl disubstituted oxazoles was realized by reaction of aromatic α-methyl ketones with various aliphatic nitriles in the presence of T1(OTf)3.
A New Versatile Synthesis of Oxazoles by Intramolecular Aza-Wittig Reaction
Takeuchi, Hisato,Yanagida, Shun-ichi,Ozaki, Tooru,Hagiwara, Satoshi,Eguchi, Shoji
, p. 431 - 434 (2007/10/02)
A new synthesis of oxazoles by an intramolecular aza-Wittig reaction is described.Readily available α-azido ketones 2 were converted to (Z)-β-(acyloxy)vinyl azides 3 by selective enol acylation.These vinyl azides 3 reacted with triethyl phosphite to afford the corresponding oxazole derivatives 5 via the Staudinger reaction, followed by an intramolecular aza-Wittig reaction.In particular, this oxazole synthesis was useful for oxazoles having acid-labile substituents.
