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Diastereoselective Synthesis of Salacinol-Type α-Glucosidase Inhibitors.

Fumihiro IshikawaKazumi JinnoEri KinouchiKiyofumi NinomiyaShinsuke MarumotoWeijia XieOsamu MuraokaToshio MorikawaGenzoh Tanabe
Published in: The Journal of organic chemistry (2017)
A facile and highly diastereoselective approach toward the synthesis of potent salacinol-type α-glucosidase inhibitors, originally isolated from plants of the genus "Salacia", was developed using the S-alkylation of thiosugars with epoxides in HFIP (∼90%, dr, α/β = ∼ 26/1). The dr ratio of the product was significantly improved by the protocol as compared to that of the conventional S-alkylation of thiosugars (dr, α/β = ∼ 8/1). The protocol could be used for gram scale synthesis of the desired compounds. The 3'-O-benzylated salacinol analogs, which are the most potent in vitro inhibitors to date, were synthesized and evaluated in vivo; all analogs suppressed blood glucose levels in maltose-loaded mice, at levels comparable to those of the antidiabetic agent, voglibose.
Keyphrases
  • blood glucose
  • molecular docking
  • editorial comment
  • randomized controlled trial
  • drug delivery
  • glycemic control
  • adipose tissue
  • cancer therapy
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  • metabolic syndrome
  • weight loss
  • multidrug resistant