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Semisynthesis and Biological Evaluation of Oleanolic Acid 3-O-β-d-Glucuronopyranoside Derivatives for Protecting H9c2 Cardiomyoblasts against H₂O₂-Induced Injury.

Yu TianZhonghao SunWenqian WangHai ShangBaoqi WangDi DengGuoxu MaHaifeng WuNai-Liang ZhuXudong XuGuibo SunXiaobo Sun
Published in: Molecules (Basel, Switzerland) (2018)
A series of novel oleanolic acid 3-O-β-d-glucuronopyranoside derivatives have been designed and synthesized. Biological evaluation has indicated that some of the synthesized compounds exhibit moderate to good activity against H₂O₂-induced injury in rat myocardial cells (H9c2). Particularly, derivative 28-N-isobutyl ursolic amide 3-O-β-d-galactopyranoside (8a) exhibited a greater protective effect than the positive control oleanolic acid 3-O-β-d-glucuronopyranoside, indicating that it possesses a great potential for further development as a cardiovascular disease modulator by structural modification.
Keyphrases
  • cardiovascular disease
  • high glucose
  • diabetic rats
  • induced apoptosis
  • oxidative stress
  • left ventricular
  • cell cycle arrest
  • high intensity
  • metabolic syndrome
  • cardiovascular risk factors
  • cardiovascular events