Javascript must be enabled to continue!
Ginkgo biloba leaf extract induces DNA damage by inhibiting topoisomerase II activity in human hepatic cells
View through CrossRef
AbstractGinkgo biloba leaf extract has been shown to increase the incidence in liver tumors in mice in a 2-year bioassay conducted by the National Toxicology Program. In this study, the DNA damaging effects of Ginkgo biloba leaf extract and many of its constituents were evaluated in human hepatic HepG2 cells and the underlying mechanism was determined. A molecular docking study revealed that quercetin, a flavonoid constituent of Ginkgo biloba, showed a higher potential to interact with topoisomerase II (Topo II) than did the other Ginkgo biloba constituents; this in silico prediction was confirmed by using a biochemical assay to study Topo II enzyme inhibition. Moreover, as measured by the Comet assay and the induction of γ-H2A.X, quercetin, followed by keampferol and isorhamnetin, appeared to be the most potent DNA damage inducer in HepG2 cells. In Topo II knockdown cells, DNA damage triggered by Ginkgo biloba leaf extract or quercetin was dramatically decreased, indicating that DNA damage is directly associated with Topo II. DNA damage was also observed when cells were treated with commercially available Ginkgo biloba extract product. Our findings suggest that Ginkgo biloba leaf extract- and quercetin-induced in vitro genotoxicity may be the result of Topo II inhibition.
Springer Science and Business Media LLC
Title: Ginkgo biloba leaf extract induces DNA damage by inhibiting topoisomerase II activity in human hepatic cells
Description:
AbstractGinkgo biloba leaf extract has been shown to increase the incidence in liver tumors in mice in a 2-year bioassay conducted by the National Toxicology Program.
In this study, the DNA damaging effects of Ginkgo biloba leaf extract and many of its constituents were evaluated in human hepatic HepG2 cells and the underlying mechanism was determined.
A molecular docking study revealed that quercetin, a flavonoid constituent of Ginkgo biloba, showed a higher potential to interact with topoisomerase II (Topo II) than did the other Ginkgo biloba constituents; this in silico prediction was confirmed by using a biochemical assay to study Topo II enzyme inhibition.
Moreover, as measured by the Comet assay and the induction of γ-H2A.
X, quercetin, followed by keampferol and isorhamnetin, appeared to be the most potent DNA damage inducer in HepG2 cells.
In Topo II knockdown cells, DNA damage triggered by Ginkgo biloba leaf extract or quercetin was dramatically decreased, indicating that DNA damage is directly associated with Topo II.
DNA damage was also observed when cells were treated with commercially available Ginkgo biloba extract product.
Our findings suggest that Ginkgo biloba leaf extract- and quercetin-induced in vitro genotoxicity may be the result of Topo II inhibition.
Related Results
USOS TERAPÉUTICOS DEL GINKGO BILOBA: VENTAJAS, DESVENTAJAS Y PERSPECTIVAS
USOS TERAPÉUTICOS DEL GINKGO BILOBA: VENTAJAS, DESVENTAJAS Y PERSPECTIVAS
INTRODUCCIÓN: Mundialmente, el empleo de extrac- tos obtenidos de plantas para tratar y prevenir una gran variedad de enfermedades se ha incrementado conside- rablemente. Entre ell...
KEGUNAAN GINKGO BILOBA UNTUK PENGOBATAN PENYAKIT NEUROLOGIS
KEGUNAAN GINKGO BILOBA UNTUK PENGOBATAN PENYAKIT NEUROLOGIS
Ginkgo Biloba adalah Salah satu tanaman yang tergolong sebagai fitofarmaka atau obat-obatan yang berasal dari tanaman ialah Ginkgo biloba Tanaman G.biloba (Gb) termasuk dalam famil...
KEGUNAAN GINKGO BILOBA UNTUK PENGOBATAN PENYAKIT NEUROLOGIS
KEGUNAAN GINKGO BILOBA UNTUK PENGOBATAN PENYAKIT NEUROLOGIS
Ginkgo Biloba adalah Salah satu tanaman yang tergolong sebagai fitofarmaka atau obat-obatan yang berasal dari tanaman ialah Ginkgo biloba Tanaman G.biloba (Gb) termasuk dalam famil...
Awareness of Medical Applications of Gingko Biloba Among Dental Students
Awareness of Medical Applications of Gingko Biloba Among Dental Students
Herbal medicines reflect a significant portion of new interest in alternative therapies and Ginkgo biloba (GB) features significantly throughout this regard. The GB concentrate and...
Topoisomerase Assays
Topoisomerase Assays
AbstractTopoisomerases are enzymes that play essential roles in DNA replication, transcription, chromosome segregation, and recombination. All cells have two major forms of DNA top...
Authentication of Ginkgo biloba Herbal Products by a Novel Quantitative Real-Time PCR Approach
Authentication of Ginkgo biloba Herbal Products by a Novel Quantitative Real-Time PCR Approach
Ginkgo biloba is a widely used medicinal plant. Due to its potential therapeutic effects, it is an ingredient in several herbal products, such as plant infusions and plant food sup...
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Abstract
Background: Age-associated epigenetic alteration is the underlying cause of DNA damage in aging cells. Two types of youth-associated DNA-protection epigenetic mark...
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Introduction: The United States currently faces two opioid crises, an evolved crisis currently manifesting as widespread abuse of illicit opioids, and a crisis in pain management l...

