1. Academic Validation
  2. Design and Synthesis of Antitumor Heck-Coupled Sclareol Analogues: Modulation of BH3 Family Members by SS-12 in Autophagy and Apoptotic Cell Death

Design and Synthesis of Antitumor Heck-Coupled Sclareol Analogues: Modulation of BH3 Family Members by SS-12 in Autophagy and Apoptotic Cell Death

  • J Med Chem. 2015 Apr 23;58(8):3432-44. doi: 10.1021/jm501942m.
Shakeel-u-Rehman Bilal Rah Shabir H Lone Reyaz Ur Rasool Saleem Farooq Debasis Nayak Naveed Anjum Chikan 1 Souneek Chakraborty Akanksha Behl Dilip Manikaro Mondhe Anindya Goswami Khursheed Ahmad Bhat
Affiliations

Affiliation

  • 1 ⊥School of Bioscience and Technology, Division of Medical Biotechnology, VIT University, Vellore, Tamilnadu-632014, India.
Abstract

Sclareol, a promising Anticancer labdane diterpene, was isolated from Salvia sclarea. Keeping the basic stereochemistry-rich framework of the molecule intact, a method for the synthesis of novel sclareol analogues was designed using palladium(II)-catalyzed oxidative Heck coupling reaction in order to study their structure-activity relationship. Both sclareol and its derivatives showed an interesting cytotoxicity profile, with 15-(4-fluorophenyl)sclareol (SS-12) as the most potent analogue, having IC50 = 0.082 μM against PC-3 cells. It was found that SS-12 commonly interacts with Bcl-2 and Beclin 1 BH3 domain proteins and enhances autophagic flux by modulating autophagy-related proteins. Moreover, inhibition of Autophagy by Autophagy inhibitors protected against SS-12-induced Apoptosis. Finally, SS-12 effectively suppressed tumor growth in vivo in Ehrlich's ascitic and solid Sarcoma-180 mouse models.

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