Synthesis and Antimitotic and Tubulin Interaction Profiles of Novel Pinacol Derivatives of Podophyllotoxins
Citations Over TimeTop 11% of 2012 papers
Abstract
Several pinacol derivatives of podophyllotoxins bearing different side chains and functions at C-7 were synthesized through reductive cross-coupling of podophyllotoxone and several aldehydes and ketones. While possessing a hydroxylated chain at C-7, the compounds retained their respective hydroxyl group with either the 7α (podo) or 7β (epipodo) configuration. Along with pinacols, some C-7 alkylidene and C-7 alkyl derivatives were also prepared. Cytotoxicities against neoplastic cells followed by cell cycle arrest and cellular microtubule disruption were evaluated and mechanistically characterized through tubulin polymerization inhibition and assays of binding to the colchicine site. Compounds of the epipodopinacol (7β-OH) series behaved similarly to podophyllotoxin in all the assays and proved to be the most potent inhibitors. Significantly, 7α-isopropyl-7-deoxypodophyllotoxin (20), without any hydroxyl function, appeared as a promising lead compound for a novel type of tubulin polymerization inhibitors. Experimental results were in overall agreement with modeling and docking studies performed on representative compounds of each series.
Related Papers
- → Lignans and neolignans as lead compounds(2003)196 cited
- → Structure activity relationship and optimization of N-(3-(2-aminothiazol-4-yl)aryl)benzenesulfonamides as anti-cancer compounds against sensitive and resistant cells(2017)15 cited
- → Discovery of benzhydrylpiperazine derivatives as CB1 receptor inverse agonists via privileged structure-based approach(2009)20 cited
- → Synthesis and SAR studies of a novel class of S1P1 receptor antagonists(2007)14 cited
- Study on the relationship between structure and insecticidal activity of podophyllotoxin analogues II.Analysis of structure-activity relationship and prediction of optimal structure(2000)