The Growth Suppressing Effects of Girinimbine on Hepg2 Involve Induction of Apoptosis and Cell Cycle Arrest

Murraya koenigii is an edible herb widely used in folk medicine. Here we report that girinimbine, a carbazole alkaloid isolated from this plant, inhibited the growth and induced apoptosis in human hepatocellular carcinoma, HepG2 cells. The MTT and LDH assay results showed that girinimbine decreased...

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Main Authors: Tang Sook Wah, Syam Mohan, Siddig Ibrahim Abdelwahab, Suvitha Syam, Mohd. Aspollah Sukari, Ahmad Bustamam Abdul
Format: Article
Language:English
Published: MDPI AG 2011-08-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/16/8/7155/
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spelling doaj-bc58d7269da643e19c1b9e5293de62c82020-11-24T20:57:18ZengMDPI AGMolecules1420-30492011-08-011687155717010.3390/molecules16087155The Growth Suppressing Effects of Girinimbine on Hepg2 Involve Induction of Apoptosis and Cell Cycle ArrestTang Sook WahSyam MohanSiddig Ibrahim AbdelwahabSuvitha SyamMohd. Aspollah SukariAhmad Bustamam AbdulMurraya koenigii is an edible herb widely used in folk medicine. Here we report that girinimbine, a carbazole alkaloid isolated from this plant, inhibited the growth and induced apoptosis in human hepatocellular carcinoma, HepG2 cells. The MTT and LDH assay results showed that girinimbine decreased cell viability and increased cytotoxicity in a dose-and time-dependent manner selectively. Girinimbine-treated HepG2 cells showed typical morphological features of apoptosis, as observed from normal inverted microscopy and Hoechst 33342 assay. Furthermore, girinimbine treatment resulted in DNA fragmentation and elevated levels of caspase-3 in HepG2 cells. Girinimbine treatment also displayed a time-dependent accumulation of the Sub-G0/G1 peak (hypodiploid) and caused G0/G1-phase arrest. Together, these results demonstrated for the first time that girinimbine could effectively induce programmed cell death in HepG2 cells and suggests the importance of conducting further investigations in preclinical human hepatocellular carcinoma models, especially on in vivo efficacy, to promote girinimbine for use as an anticancer agent against hepatocellular carcinoma.http://www.mdpi.com/1420-3049/16/8/7155/anticancerapoptosiscarbazole alkaloidcell cycle arrestgirinimbinepyranocarbazole
collection DOAJ
language English
format Article
sources DOAJ
author Tang Sook Wah
Syam Mohan
Siddig Ibrahim Abdelwahab
Suvitha Syam
Mohd. Aspollah Sukari
Ahmad Bustamam Abdul
spellingShingle Tang Sook Wah
Syam Mohan
Siddig Ibrahim Abdelwahab
Suvitha Syam
Mohd. Aspollah Sukari
Ahmad Bustamam Abdul
The Growth Suppressing Effects of Girinimbine on Hepg2 Involve Induction of Apoptosis and Cell Cycle Arrest
Molecules
anticancer
apoptosis
carbazole alkaloid
cell cycle arrest
girinimbine
pyranocarbazole
author_facet Tang Sook Wah
Syam Mohan
Siddig Ibrahim Abdelwahab
Suvitha Syam
Mohd. Aspollah Sukari
Ahmad Bustamam Abdul
author_sort Tang Sook Wah
title The Growth Suppressing Effects of Girinimbine on Hepg2 Involve Induction of Apoptosis and Cell Cycle Arrest
title_short The Growth Suppressing Effects of Girinimbine on Hepg2 Involve Induction of Apoptosis and Cell Cycle Arrest
title_full The Growth Suppressing Effects of Girinimbine on Hepg2 Involve Induction of Apoptosis and Cell Cycle Arrest
title_fullStr The Growth Suppressing Effects of Girinimbine on Hepg2 Involve Induction of Apoptosis and Cell Cycle Arrest
title_full_unstemmed The Growth Suppressing Effects of Girinimbine on Hepg2 Involve Induction of Apoptosis and Cell Cycle Arrest
title_sort growth suppressing effects of girinimbine on hepg2 involve induction of apoptosis and cell cycle arrest
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2011-08-01
description Murraya koenigii is an edible herb widely used in folk medicine. Here we report that girinimbine, a carbazole alkaloid isolated from this plant, inhibited the growth and induced apoptosis in human hepatocellular carcinoma, HepG2 cells. The MTT and LDH assay results showed that girinimbine decreased cell viability and increased cytotoxicity in a dose-and time-dependent manner selectively. Girinimbine-treated HepG2 cells showed typical morphological features of apoptosis, as observed from normal inverted microscopy and Hoechst 33342 assay. Furthermore, girinimbine treatment resulted in DNA fragmentation and elevated levels of caspase-3 in HepG2 cells. Girinimbine treatment also displayed a time-dependent accumulation of the Sub-G0/G1 peak (hypodiploid) and caused G0/G1-phase arrest. Together, these results demonstrated for the first time that girinimbine could effectively induce programmed cell death in HepG2 cells and suggests the importance of conducting further investigations in preclinical human hepatocellular carcinoma models, especially on in vivo efficacy, to promote girinimbine for use as an anticancer agent against hepatocellular carcinoma.
topic anticancer
apoptosis
carbazole alkaloid
cell cycle arrest
girinimbine
pyranocarbazole
url http://www.mdpi.com/1420-3049/16/8/7155/
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