In our pursuit of developing a novel and potent potassium-competitive acid blocker (P-CAB), we synthesized pyrrole derivatives focusing on compounds with low log D and high ligand-lipophilicity efficiency (LLE) values. Among the compounds synthesized, the compound 13e exhibited potent H(+),K(+)-ATPase inhibitory activity and potent gastric acid secretion inhibitory action in vivo. Its maximum efficacy was more potent and its duration of action was much longer than those of proton pump inhibitors (PPIs). Therefore, compound 13e (1-[5-(2-fluorophenyl)-1-(pyridin-3-ylsulfonyl)-1H-pyrrol-3-yl]-N-methylmethanamine fumarate, TAK-438) was selected as a drug candidate for the treatment of gastroesophageal reflux disease (GERD), peptic ulcer, and other acid-related diseases.
An efficient and highly stereoselective total synthesis of the natural product (±)-welwitindolinone
A isonitrile (1) is described. The bicyclo[4.2.0]octane core of 1 was established by a regio- and
diastereoselective [2+2] ketene cycloaddition. The C12 quaternary center and vicinal stereogenic chlorine
were installed in a single operation with excellent stereocontrol via a chloronium ion mediated semipinacol
rearrangement. Described strategies for construction of the spiro-oxinole include a SmI2−LiCl mediated
reductive cyclization and a novel anionic cyclization that simultaneously constructs the spiro-oxindole and
vinyl isonitrile moieties.
A highly stereoselective total synthesis of the alkaloid natural product welwitindolinone A isonitrile has been completed. The synthesis utilizes a chloronium ion mediated semi-pinacol rearrangement to simultaneously install the C10 quaternary center and neopentyl chlorine and a novel anionic cyclization to construct the spiro-oxindole with complete stereocontrol.
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