| Literature DB >> 24860735 |
Mehrdad Iranshahi1, Chantal Barthomeuf2, Mathilde Bayet-Robert3, Philippe Chollet3, Davood Davoodi1, Sonia Piacente4, Ramin Rezaee5, Amirhossein Sahebkar6.
Abstract
Multidrug resistance (MDR) is the main cause of failure in the chemotherapy of cancer patients. The present study aimed to evaluate the effects of sesquiterpene coumarins of Ferula gummosa fruits on P-glycoprotein (P-gp)-mediated MDR. Drimane-type sesquiterpene coumarins from the fruits of F. gummosa were extracted with dichloromethane and subjected to column chromatography. The effects of the isolated compounds on P-gp-mediated MDR were evaluated in the breast cancer cell line MCF-7 which shows high resistance to doxoribicin (MCF-7/Dox). Phytochemical investigation of dichloromethane extract of F. gummosa fruits resulted in three sesquiterpene coumarins including conferone (1), mogoltacin (2), and feselol (3). The structures of these compounds were confirmed by 1D and 2D Nuclear Magnetic Resonance (NMR) spectroscopy. Exposure of cells to conferone, mogoltacin, feselol, and verapamil (positive control) enhanced doxorubicin uptake by MCF-7/Dox cells. This effect was dose dependent, but varied with the structure of the chemical. At 25 μM, all the tested sesquiterpene coumarins restored at least 50% of the reference uptake (uptake by sensitive cells); but at 10 μM, their potency varied where conferone showed the highest potency and feselol showed the lowest potency. Conferone, mogoltacin, and feselol from F. gummosa suppress P-gp-mediated drug efflux in highly resistant human breast cancer cells.Entities:
Keywords: Breast cancer; Ferula gummosa; P-glycoprotein inhibitor; Sesquiterpene coumarins
Year: 2014 PMID: 24860735 PMCID: PMC4003701 DOI: 10.4103/2225-4110.126181
Source DB: PubMed Journal: J Tradit Complement Med ISSN: 2225-4110
Figure 1Chemical structures of the compounds isolated from Ferula gummosa fruits conferone (1), mogoltacin (2) and feselol (3) and the structure of diportlandin (4)
1H-NMR data obtained with compounds 1-5 (600 MHz, δ ppm)*
13C-NMR data obtained with compounds 1–5 (125.7 MHz, δ ppm)
Figure 2The 1H-NMR spectrum of conferone (1)
Figure 3The 13C-NMR spectrum of conferone (1)
Figure 4The 1H-NMR spectrum of mogoltacin (2)
Figure 5The 13C-NMR spectrum of mogoltacin (2)
Figure 6The 1H-NMR spectrum of feselol (3)
Figure 7The 13C-NMR spectrum of feselol (3)
Figure 8Enhanced accumulation of Dox in MCF-7/Dox cells by conferone, feselol, mogoltacin, and VPM. MCF-7/Dox (dark) and sensitive MCF-7 (light) cells were incubated with Dox (10 μM) in the presence of the indicated concentrations of feselol, mogoltacin, and conferone. Control cells were not incubated with any compound. VPM (10 μM) was used as positive control. Each experiment was performed in triplicate. P-values refer to the comparison between each tested compound and the negative control group. *P< 0.05; ***P< 0.001