Literature DB >> 29238899

Induction of apoptosis in human glioma cell lines of various grades through the ROS-mediated mitochondrial pathway and caspase activation by Rhaponticum carthamoides transformed root extract.

Ewa Skała1, Tomasz Kowalczyk2, Monika Toma3, Janusz Szemraj4, Maciej Radek5, Dariusz Pytel6, Joanna Wieczfinska7, Halina Wysokińska8, Tomasz Śliwiński3, Przemysław Sitarek8.   

Abstract

The present study is the first investigation of the inhibitory effect of Rhaponticum carthamoides transformed roots (TR) extract on the proliferation of grade II and III human glioma cells. TR extract showed the cytotoxic effect and inhibited the colony formation of both glioma cell lines in dose-dependent manner. The root extract induced apoptosis by increasing of the reactive oxygen species (about threefold compared to the control cells) leading to a disruption of mitochondrial membrane potential. Additionally, the mRNA levels of the apoptotic factors such as Bax, Tp53, caspase-3, and caspase-9 were observed to increase. These results indicate that the TR extract possesses anticancer activity by inhibiting glioma cell proliferation and inducing apoptotic cell death, and may be used as a promising anticancer agent.

Entities:  

Keywords:  Apoptosis; Bax; Bcl-2; Caffeic acid derivatives; Caspase-3; Caspase-9 gene expressions; Human glioma cells; Rhaponticum carthamoides; Tp53; Transformed roots

Mesh:

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Year:  2017        PMID: 29238899     DOI: 10.1007/s11010-017-3254-z

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  25 in total

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6.  Inhibition of human glioma cell proliferation by altered Bax/Bcl-2-p53 expression and apoptosis induction by Rhaponticum carthamoides extracts from transformed and normal roots.

Authors:  Ewa Skała; Przemysław Sitarek; Monika Toma; Janusz Szemraj; Maciej Radek; Malgorzata Nieborowska-Skorska; Tomasz Skorski; Halina Wysokińska; Tomasz Śliwiński
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  4 in total

1.  Rhaponticum carthamoides transformed root extract inhibits human glioma cells viability, induces double strand DNA damage, H2A.X phosphorylation, and PARP1 cleavage.

Authors:  Ewa Skała; Monika Toma; Tomasz Kowalczyk; Tomasz Śliwiński; Przemysław Sitarek
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