Semisynthesis and Evaluation of Anti-Inflammatory Activity of the Cassane-Type Diterpenoid Taepeenin F and of Some Synthetic Intermediates
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Zentar, Houda; Jannus, Fatin; Gutiérrez, Pilar; Medina O'Donnell, Marta; Lupiáñez Cara, José Antonio; Reyes Zurita, Fernando Jesús; Álvarez De Manzaneda Roldán, Enrique; Chahboun Karimi, RachidEditorial
American Chemical Society
Date
2022-10-10Referencia bibliográfica
J. Nat. Prod. 2022, 85, 2372−2384. [https://doi.org/10.1021/acs.jnatprod.2c00578]
Sponsorship
Junta de Andalucia B-FQM-278-UGR20 B-FQM-650-UGR20 FQM-348 BIO-157; Universidad de Granada/CBUAAbstract
A new strategy for the semisynthesis of the aromatic
cassane-type diterpene taepeenin F (6) is reported. The
introduction of the methyl group at C-14, characteristic of the
target compound, was achieved via dienone 13, easily prepared
from abietic acid (10), the major compound in renewable rosin.
Biological assays of selected compounds are reported. The
antiproliferative activity against HT29, B16-F10, and HepG2
tumor cell lines has been investigated. Salicylaldehyde 21 was the
most active compound (IC50 = 7.72 μM). Products 16 and 21
displayed apoptotic effects in B16-F10 cells, with total apoptosis
rates of 46 and 38.4%, respectively. This apoptotic process involves
a significant arrest of the B16-F10 cell cycle, blocking the G0/G1
phase. Dienone 16 did not cause any loss of the mitochondrial
membrane potential (MMP), while salicylaldehyde 21 caused a partial loss of the MMP. The anti-inflammatory activity of the
selected compounds was investigated with the LPS-stimulated RAW 264.7 macrophages. All compounds showed potent NO
inhibition, with percentages between 80 and 99% at subcytotoxic concentrations. Dienone 16 inhibited LPS-induced differentiation
of RAW 264.7 cells, by increasing the proportion of cells in the S phase. In addition, salicylaldehyde 21 had effects on the cell cycle,
recovering the cells from the G0/G1 full arrest produced in response to LPS action.