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PMID: 23634235 Published · ppublish English

Gamma-tocotrienol modulated gene expression in senescent human diploid fibroblasts as revealed by microarray analysis.

Oxidative medicine and cellular longevity ·Vol. 2013 ·2013-08-20

Makpol Suzana, Zainuddin Azalina, Chua Kien Hui, Mohd Yusof Yasmin Anum, Ngah Wan Zurinah Wan

Abstract

The effect of γ -tocotrienol, a vitamin E isomer, in modulating gene expression in cellular aging of human diploid fibroblasts was studied. Senescent cells at passage 30 were incubated with 70  μ M of γ -tocotrienol for 24 h. Gene expression patterns were evaluated using Sentrix HumanRef-8 Expression BeadChip from Illumina, analysed using GeneSpring GX10 software, and validated using quantitative RT-PCR. A total of 100 genes were differentially expressed (P < 0.001) by at least 1.5 fold in response to γ -tocotrienol treatment. Amongst the genes were IRAK3, SelS, HSPA5, HERPUD1, DNAJB9, SEPR1, C18orf55, ARF4, RINT1, NXT1, CADPS2, COG6, and GLRX5. Significant gene list was further analysed by Gene Set Enrichment Analysis (GSEA), and the Normalized Enrichment Score (NES) showed that biological processes such as inflammation, protein transport, apoptosis, and cell redox homeostasis were modulated in senescent fibroblasts treated with γ -tocotrienol. These findings revealed that γ -tocotrienol may prevent cellular aging of human diploid fibroblasts by modulating gene expression.

Article Info
Journal
Oxidative medicine and cellular longevity
Abbr.
Oxid Med Cell Longev
ISSN
1942-0994
Published
2013-08-20
Indexed
2013-05-01
Updated
2016-03-24
Language
English
Country/Region
United States
NLM ID
101479826
External Links
PubMed source
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