13359-20-1Relevant academic research and scientific papers
Intramolecular cyclization of N-hydroxy-2-phenoxyacetamides and 3-phenoxypropanamides
Dittakavi, Ramachandran,Madhavarao, Nagarajan,Mannam, Krishnamurthy,Nagalingam, Viswanath,Sreenivasulu, Reddymasu
, (2020/08/06)
Abstract: A novel route for the preparation of 2H-1,4- benzoxazin-3(4H)one and 1,5 benzoxazepinones by intramolecular cyclization of N-hydroxy 2-phenoxyacetamide and N-hydroxy -3 phenoxypropanamide using PPA and Lewis acid has been discussed. Graphical abstract: [Figure not available: see fulltext. Caption: Preparation of 2H-1,4- benzoxazin-3(4H)one and 1,5 benzoxazepinones by electrophilic aromatic substitution from N-hydroxy 2-phenoxyacetamide and N-hydroxy -3 phenoxypropanamide and their acetyl and benzoyl derivatives using PPA and Lewis acids.]
The synthesis and evaluation of phenoxyacylhydroxamic acids as potential agents for Helicobacter pylori infections
Ni, Wei-Wei,Liu, Qi,Ren, Shen-Zhen,Li, Wei-Yi,Yi, Li-Li,Jing, Heng,Sheng, Li-Xin,Wan, Qin,Zhong, Ping-Fu,Fang, Hai-Lian,Ouyang, Hui,Xiao, Zhu-Ping,Zhu, Hai-Liang
, p. 4145 - 4152 (2018/07/13)
Two series of ω-phenoxy contained acylhydroxamic acids as novel urease inhibitors were designed and synthesized. Biological activity evaluations revealed that ω-phenoxypropinoylhydroxamic acids were more active than phenoxyacetohydroxamic acids. Out of these compounds, 3-(3,4-dichlorophenoxy)propionylhydroxamic acid c24 showed significant potency against urease in both cell free extract (IC50 = 0.061 ± 0.003 μM) and intact cell (IC50 = 0.89 ± 0.05 μM), being over 450- and 120-fold more potent than the clinically prescribed urease inhibitor AHA, repectively. Non-linear fitting of experimental data (V-[S]) suggested a mixed-type inhibition mechanism and a dual site binding mode of these compounds.
