A Gene Chip Approach to Anti-cancer Effect of Tien-Shen Lingzhi Ethanol Extracts on Non-Small Cell Lung Cancer Cell Line

碩士 === 亞洲大學 === 生物資訊學系碩士班 === 98 === Background: Lung cancers are among the neoplastic diseases with the worst prognosis. More treatment modalities are needed to improve clinical outcome. It’s being a new trend to search for bioactive traditional Chinese medicines (TCM). Ganoderma, also known as Lin...

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Main Authors: Hui-Hsia Hsieh, 謝蕙霞 
Other Authors: Ka-Lok Ng
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/31056900584822048788
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spelling ndltd-TW-098THMU81120112015-11-02T04:04:17Z http://ndltd.ncl.edu.tw/handle/31056900584822048788 A Gene Chip Approach to Anti-cancer Effect of Tien-Shen Lingzhi Ethanol Extracts on Non-Small Cell Lung Cancer Cell Line 以微晶片實驗探討天生靈芝乙醇萃液對非小細胞肺癌細胞株的抗癌作用 Hui-Hsia Hsieh 謝蕙霞  碩士 亞洲大學 生物資訊學系碩士班 98 Background: Lung cancers are among the neoplastic diseases with the worst prognosis. More treatment modalities are needed to improve clinical outcome. It’s being a new trend to search for bioactive traditional Chinese medicines (TCM). Ganoderma, also known as Lingzhi, is a TCM and has been widely used for improving human health for centuries. We have addressed the anticancer effects of Ganoderma on various cancers. In this study, a comprehensive genomic profiling was used to further explore the signal pathway for the anticancer effects of Tien Shen Lingzhi(TSL),an improved strain of Ganoderma tsugae. Methods: A comparative genomics study was performed to search for TSL-mediated differential expressions on H23/0.3 cells. Bioinformatics tool, e.g., GeneGo Meta CoreTM ,was used to analyze the experimental results based on Affymetrix Human Genome U133 Plus 2.0 microarray. Results: The whole-genome expression profiles of H23/0.3 with or without TSL treatment were resolved by multidimentional scaling (MDS) analysis. It indicated a TSL-mediated cell cycle perturbation. Bioinformatics analysis showed cell cycle was the most affected pathway. GeneGo Meta CoreTM derived cellular pathway map revealed dramatic hits (17/26) on the signal transduction of DNA replication. The microarray results were confirmed by Q-PCR. Conclusion: The genomic microarray data demonstrates the TSL-induced cell cycle deregulation in H23/0.3 cells. TSL-mediated cell cycle perturbation on H23/0.3 cells is consistent with the cellular pathway map resulting from GeneGo Meta CoreTM analysis. Ka-Lok Ng Ming-Ching Kao 吳家樂 高銘欽 2010 學位論文 ; thesis 65 zh-TW
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language zh-TW
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description 碩士 === 亞洲大學 === 生物資訊學系碩士班 === 98 === Background: Lung cancers are among the neoplastic diseases with the worst prognosis. More treatment modalities are needed to improve clinical outcome. It’s being a new trend to search for bioactive traditional Chinese medicines (TCM). Ganoderma, also known as Lingzhi, is a TCM and has been widely used for improving human health for centuries. We have addressed the anticancer effects of Ganoderma on various cancers. In this study, a comprehensive genomic profiling was used to further explore the signal pathway for the anticancer effects of Tien Shen Lingzhi(TSL),an improved strain of Ganoderma tsugae. Methods: A comparative genomics study was performed to search for TSL-mediated differential expressions on H23/0.3 cells. Bioinformatics tool, e.g., GeneGo Meta CoreTM ,was used to analyze the experimental results based on Affymetrix Human Genome U133 Plus 2.0 microarray. Results: The whole-genome expression profiles of H23/0.3 with or without TSL treatment were resolved by multidimentional scaling (MDS) analysis. It indicated a TSL-mediated cell cycle perturbation. Bioinformatics analysis showed cell cycle was the most affected pathway. GeneGo Meta CoreTM derived cellular pathway map revealed dramatic hits (17/26) on the signal transduction of DNA replication. The microarray results were confirmed by Q-PCR. Conclusion: The genomic microarray data demonstrates the TSL-induced cell cycle deregulation in H23/0.3 cells. TSL-mediated cell cycle perturbation on H23/0.3 cells is consistent with the cellular pathway map resulting from GeneGo Meta CoreTM analysis.
author2 Ka-Lok Ng
author_facet Ka-Lok Ng
Hui-Hsia Hsieh
謝蕙霞 
author Hui-Hsia Hsieh
謝蕙霞 
spellingShingle Hui-Hsia Hsieh
謝蕙霞 
A Gene Chip Approach to Anti-cancer Effect of Tien-Shen Lingzhi Ethanol Extracts on Non-Small Cell Lung Cancer Cell Line
author_sort Hui-Hsia Hsieh
title A Gene Chip Approach to Anti-cancer Effect of Tien-Shen Lingzhi Ethanol Extracts on Non-Small Cell Lung Cancer Cell Line
title_short A Gene Chip Approach to Anti-cancer Effect of Tien-Shen Lingzhi Ethanol Extracts on Non-Small Cell Lung Cancer Cell Line
title_full A Gene Chip Approach to Anti-cancer Effect of Tien-Shen Lingzhi Ethanol Extracts on Non-Small Cell Lung Cancer Cell Line
title_fullStr A Gene Chip Approach to Anti-cancer Effect of Tien-Shen Lingzhi Ethanol Extracts on Non-Small Cell Lung Cancer Cell Line
title_full_unstemmed A Gene Chip Approach to Anti-cancer Effect of Tien-Shen Lingzhi Ethanol Extracts on Non-Small Cell Lung Cancer Cell Line
title_sort gene chip approach to anti-cancer effect of tien-shen lingzhi ethanol extracts on non-small cell lung cancer cell line
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/31056900584822048788
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