Exploration of Pharmacophore in Chrysosplenol C as Activator in Ventricular Myocyte Contraction

  • ACS Med Chem Lett. 2015 May 20;6(7):758-63. doi: 10.1021/acsmedchemlett.5b00043.
Eeda Venkateswararao  1 Min-Jeong Son  1 Niti Sharma  1 Manoj Manickam  1 PullaReddy Boggu  1 Young Ho Kim  1 Sun-Hee Woo  1 Sang-Hun Jung  1
Affiliations
  • 1. College of Pharmacy and Institute of Drug Research and Development, Chungnam National University , Daejeon 305-764, South Korea.
Abstract

Chrysosplenol C (4',5,6-trihydroxy-3,3',7-trimethoxyflavone) isolated from Miliusa balansae has unique structural features as a reversible inotropic agent independent of β-adrenergic signaling and with selective activation of cardiac Myosin ATPase. Hence, a series of chrysosplenol analogues were synthesized and explored for identification of pharmacophore that is essential for the increasing contractility in rat ventricular myocytes. Analogue 7-chloro-2-(3-hydroxyphenyl)-3-methoxy-4H-chromen-4-one showed highly potent contractility (54.8% at 10 μM) through activating cardiac Myosin ATPase (38.7% at 10 μM). Our systematic structure-activity relationship study revealed that flavonoid nucleus of chrososplenol C appears to be an essential basic skeleton and hydrophobic substituent at position 7 of chromenone such as methoxy or chloro enhances the activity. Additionally, our ATPase study suggested that these chrysosplenol analogues have selectivity toward cardiac Myosin activation. Thus, the novel flavonone with 3-/7-hydrophobic substituent and 3'-hydrogen bonding donor function is a novel scaffold for discovery of a new positive inotropic agent.

Keywords
Chrysosplenol C; contractility; myosin activation; positive inotrope.
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