Radiosensitizing effect of ferulic acid on human cervical carcinoma cells in vitro
► Adjuvant for cancer radiotherapy. ► Dietary natural phenolics for radiosensitisation. ► Ferulic acid exhibits prooxidant property in cancer cells. ► Ferulic acid augmenting radiation effect in cervical carcinoma cells. Radiotherapy may be effectively combined with plant derived radiosensitizers. F...
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Published in | Toxicology in vitro Vol. 25; no. 7; pp. 1366 - 1375 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
England
Elsevier Ltd
01.10.2011
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Abstract | ► Adjuvant for cancer radiotherapy. ► Dietary natural phenolics for radiosensitisation. ► Ferulic acid exhibits prooxidant property in cancer cells. ► Ferulic acid augmenting radiation effect in cervical carcinoma cells.
Radiotherapy may be effectively combined with plant derived radiosensitizers. Ferulic acid, a naturally occurring phenolic acid, has been reported to have free radical producing properties. In the present study, the radiosensitisation potential of ferulic acid has been tested in two cervical cancer cell lines (HeLa and ME-180) in vitro. Percentage of growth inhibition (MTT assay), colony survival, levels of lipid peroxidation (TBARS, CD and LHP), antioxidant status (SOD, CAT, GPx and GSH), oxidative DNA damage (% tail DNA, tail length, tail moment and Olive tail moment), apoptotic morphological changes (AO/EtBr staining) and intracellular ROS levels (DCFH-DA) were estimated. The present results show that ferulic acid (FA) enhances radiation effects by increasing lipid peroxidative markers in HeLa and ME-180 cells. We observed significant enhancement of ROS levels during ferulic acid plus radiation treatment. FA treatment alone increased intracellular ROS levels indicate its prooxidant nature. Similarly, we observed enhanced oxidative DNA damage and apoptotic morphological changes in FA plus radiation treated cells. The present data suggest radiation sensitizing property of FA in cervical cancer cells. Further investigations warrants to substantiate the present findings. |
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AbstractList | Radiotherapy may be effectively combined with plant derived radiosensitizers. Ferulic acid, a naturally occurring phenolic acid, has been reported to have free radical producing properties. In the present study, the radiosensitisation potential of ferulic acid has been tested in two cervical cancer cell lines (HeLa and ME-180) in vitro. Percentage of growth inhibition (MTT assay), colony survival, levels of lipid peroxidation (TBARS, CD and LHP), antioxidant status (SOD, CAT, GPx and GSH), oxidative DNA damage (% tail DNA, tail length, tail moment and Olive tail moment), apoptotic morphological changes (AO/EtBr staining) and intracellular ROS levels (DCFH-DA) were estimated. The present results show that ferulic acid (FA) enhances radiation effects by increasing lipid peroxidative markers in HeLa and ME-180 cells. We observed significant enhancement of ROS levels during ferulic acid plus radiation treatment. FA treatment alone increased intracellular ROS levels indicate its prooxidant nature. Similarly, we observed enhanced oxidative DNA damage and apoptotic morphological changes in FA plus radiation treated cells. The present data suggest radiation sensitizing property of FA in cervical cancer cells. Further investigations warrants to substantiate the present findings. ► Adjuvant for cancer radiotherapy. ► Dietary natural phenolics for radiosensitisation. ► Ferulic acid exhibits prooxidant property in cancer cells. ► Ferulic acid augmenting radiation effect in cervical carcinoma cells. Radiotherapy may be effectively combined with plant derived radiosensitizers. Ferulic acid, a naturally occurring phenolic acid, has been reported to have free radical producing properties. In the present study, the radiosensitisation potential of ferulic acid has been tested in two cervical cancer cell lines (HeLa and ME-180) in vitro. Percentage of growth inhibition (MTT assay), colony survival, levels of lipid peroxidation (TBARS, CD and LHP), antioxidant status (SOD, CAT, GPx and GSH), oxidative DNA damage (% tail DNA, tail length, tail moment and Olive tail moment), apoptotic morphological changes (AO/EtBr staining) and intracellular ROS levels (DCFH-DA) were estimated. The present results show that ferulic acid (FA) enhances radiation effects by increasing lipid peroxidative markers in HeLa and ME-180 cells. We observed significant enhancement of ROS levels during ferulic acid plus radiation treatment. FA treatment alone increased intracellular ROS levels indicate its prooxidant nature. Similarly, we observed enhanced oxidative DNA damage and apoptotic morphological changes in FA plus radiation treated cells. The present data suggest radiation sensitizing property of FA in cervical cancer cells. Further investigations warrants to substantiate the present findings. |
Author | Mahalakshmi, Rajendran Karthikeyan, Subburayan Prasad, Nagarajan Rajendra Kanimozhi, Govindhasamy |
Author_xml | – sequence: 1 givenname: Subburayan surname: Karthikeyan fullname: Karthikeyan, Subburayan organization: Department of Biochemistry and Biotechnology, Annamalai University, Annamalainagar, Tamilnadu 608 002, India – sequence: 2 givenname: Govindhasamy surname: Kanimozhi fullname: Kanimozhi, Govindhasamy organization: Department of Biochemistry and Biotechnology, Annamalai University, Annamalainagar, Tamilnadu 608 002, India – sequence: 3 givenname: Nagarajan Rajendra surname: Prasad fullname: Prasad, Nagarajan Rajendra email: drprasadnr@gmail.com organization: Department of Biochemistry and Biotechnology, Annamalai University, Annamalainagar, Tamilnadu 608 002, India – sequence: 4 givenname: Rajendran surname: Mahalakshmi fullname: Mahalakshmi, Rajendran organization: Cancer Cure Center, GVN Institute of Oncology, Tirichirapalli 620 002, India |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/21600977$$D View this record in MEDLINE/PubMed |
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Keywords | Radiosensitization Cervical cancer Radiation ROS Ferulic acid |
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Snippet | ► Adjuvant for cancer radiotherapy. ► Dietary natural phenolics for radiosensitisation. ► Ferulic acid exhibits prooxidant property in cancer cells. ► Ferulic... Radiotherapy may be effectively combined with plant derived radiosensitizers. Ferulic acid, a naturally occurring phenolic acid, has been reported to have free... |
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SubjectTerms | Antioxidants Antioxidants - metabolism Apoptosis - drug effects Apoptosis - radiation effects Carcinoma - drug therapy Carcinoma - radiotherapy Cell Line, Tumor Cervical cancer Coumaric Acids - chemistry Coumaric Acids - pharmacology DNA Damage - drug effects DNA Damage - radiation effects Dose-Response Relationship, Drug Dose-Response Relationship, Radiation Female Ferulic acid HeLa Cells Humans Inhibitory Concentration 50 Lipid Peroxidation Molecular Structure Olea Radiation Radiation-Sensitizing Agents - chemistry Radiation-Sensitizing Agents - pharmacology Radiosensitization Reactive Oxygen Species - metabolism ROS Uterine Cervical Neoplasms - drug therapy Uterine Cervical Neoplasms - radiotherapy |
Title | Radiosensitizing effect of ferulic acid on human cervical carcinoma cells in vitro |
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