155421-11-7Relevant articles and documents
Preparation method of sitafloxacin hydrate
-
, (2019/02/04)
The invention discloses a preparation method of sitafloxacin hydrate. The method comprises the following steps: taking ethyl 4-bromoacetoacetate used as a raw material, enabling ethyl 4-bromoacetoacetate to be fully reacted with 1,2-dibromoethane and preparing the obtained product into a compound II in the presence of carbonyl reduction enzyme; taking the compound II, enabling the compound II to carry out cyclization reaction with benzylamine in a solvent in the presence of cesium carbonate, enabling the obtained product to be reacted with DPPA and preparing a compound IV; reducing nitrine group of the compound IV to prepare a compound V; connecting primary amine group of the compound V with a BOC protection group to obtain a compound VI; reducing the compound VI through Pd/C, enabling theobtained product to be reacted with 8-chlorine-6,7-difluoro-1-[(1R,2s)-2-fluorocyclopropyl]-4-oxo-1,4-dihydroquinoline-3-carboxylic acid ethyl ester to prepare a compound VIII; and carrying out deprotection of the compound VIII to obtain sitafloxacin hydrate. The sitafloxacin hydrate is few in preparation steps, simple in post-treatment and relatively high in yield.
A method for synthesizing Sitafloxacine (by machine translation)
-
Paragraph 0024; 0025, (2016/10/10)
The invention is in the field of organic synthesis, relates to a method for synthesizing Sitafloxacine. Compared with the prior art, the technical scheme of the invention the-west he sand star production rate, SSR, RRS and RSR isomer content is low, production can be carried out directly. (by machine translation)
Synthesis and characterization of sitafloxacin
Liu, Yu,Liu, Lianxin,Shi, Guangxia
, p. 7049 - 7051 (2015/02/19)
The convenient protocol for the synthesis of sitafloxacin is described. Reaction of ethyl 3-(3-choloro-2,4,5-trifluorophenyl)-3-oxopropanoate with triethylorthoformate and (1R,2S)-(-)-cis-1,2 fluorine cyclopropane amino-p-toluene sulfonic acid salt by condensation under sodium hydrogen condition. The reaction mixture take place hydrolysis of ester in hydrochloric acid solution. Subsequence reacted with (S)-N[(oxoboryl) methylene] -5-azaspiro[2,4]heptan-7-amine by condensation. In the end taken off the protection group gives sitafloxacin and total conversion about 52-65%. The structure of sitafloxacin was characterized by 1H NMR, 13C NMR, IR, MS and elemental analysis.