彗星试验
DNA损伤
化学
生物化学
脂质过氧化
抗氧化剂
氧化应激
生物
类黄酮
遗传毒性
异鼠李素
DNA
分子生物学
山奈酚
毒性
有机化学
作者
Inès Bouhlel,Inès Skandrani,Aicha Nefatti,Kita Valenti,Kamel Ghédira,A.‐M. Mariotte,Isabelle Hininger‐Favier,François Laporte,Marie‐Geneviève Dijoux‐Franca,Leila Chekir‐Ghedira
标识
DOI:10.1080/01480540902882192
摘要
Antioxidant activity of isorhamnetin 3-O neohesperidoside (I3ON), isolated from the leaves of Acacia salicina, was determined by the ability of this compound to inhibit lipid peroxidation and to protect against hydroxyl radical–induced DNA damage in pKS plasmid DNA and Escherichia coli cultures. Antigenotoxic activity was assessed by using the comet assay. The IC50 value of the inhibitory activity toward lipid peroxidation by I3ON is 0.6 mM. This compound was also able to protect against hydroxyl radical–induced DNA damage in pKS plasmid DNA. Moreover, this compound induced an inhibitory activity toward H2O2-induced genotoxicity. The protective effect exhibited by this molecule was also determined by analysis of gene expression as a response to an oxidative stress, using a cDNA microarray. Transcription of several genes related to the antioxidant system (HMOX2 and TXNL) and to the DNA repair pathway (XPC, POLD1, POLD2, PCNA, DDIT3, APEX, and LIG4) were upregulated after incubation with I3ON. Taken together, these observations provide evidence that the I3ON, isolated from the leaves of A. salicina, is able to protect cells against oxidative stress.
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