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Research ArticleExperimental Studies

Evaluation of Cytotoxiciy and Tumor-specificity of Licorice Flavonoids Based on Chemical Structure

HIROKAZU OHNO, DAISUKE ARAHO, YOSHIHIRO UESAWA, HAJIME KAGAYA, MARIKO ISHIHARA, HIROSHI SAKAGAMI and MASAJI YAMAMOTO
Anticancer Research August 2013, 33 (8) 3061-3068;
HIROKAZU OHNO
1Maruzen Pharmaceuticals Co., Ltd., Shibuya, Tokyo, Japan
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  • For correspondence: h-ohno{at}maruzenpcy.co.jp
DAISUKE ARAHO
1Maruzen Pharmaceuticals Co., Ltd., Shibuya, Tokyo, Japan
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YOSHIHIRO UESAWA
2Department of Clinical Pharmaceutics, Meiji Pharmaceutical University, Kiyose, Tokyo, Japan
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HAJIME KAGAYA
2Department of Clinical Pharmaceutics, Meiji Pharmaceutical University, Kiyose, Tokyo, Japan
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MARIKO ISHIHARA
3Division of Basic Chemistry, Meikai University School of Dentistry, Sakado, Saitama, Japan
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HIROSHI SAKAGAMI
4Division of Pharmacology, Meikai University School of Dentistry, Sakado, Saitama, Japan
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MASAJI YAMAMOTO
1Maruzen Pharmaceuticals Co., Ltd., Shibuya, Tokyo, Japan
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Abstract

Background: The mechanism of cytotoxicity induction by flavonoids has been studied by many investigators, but their tumor specificity is not clear. To address this point, 10 licorice flavonoids were subjected to quantitative structure-activity relationship (QASR) analysis with cytotoxicity assay with four human oral carcinoma and three normal cell lines. Materials and Methods: Cytotoxicity was determined by the 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide method. Physico-chemical, structural, and quantum-chemical parameters were calculated based on the conformations optimized by the LowModeMD method. Results: Licurazid and isoliquiritigenin had the highest cytotoxicity against tumor cells, and liquiritin, isoliquiritin and licurazid had the highest tumor specificity, suggesting an antitumor potential for licurazid. Chalcones had slightly higher cytotoxicity and tumor specificity than flavanones. The number of sugar units in the molecule was somewhat negatively-correlated with cytotoxicity, but not with tumor specificity. Parameters that reflect the three-dimensional structure, molecular volume and number of phenolic OH groups were significantly correlated with cytotoxicity, but not with tumor specificity. On the other hand, solvation energy was significantly correlated with tumor specificity, but not with cytotoxicity. Conclusion: These physicochemical descriptors may be useful to estimate cytotoxicity or tumor specificity of structurally-related compounds to these licorice flavonoids.

  • Licorice flavonoids
  • QSAR
  • cytotoxicity
  • tumor-specificity index
  • chemical descriptor
  • Received June 5, 2013.
  • Revision received June 24, 2013.
  • Accepted June 26, 2013.
  • Copyright© 2013 International Institute of Anticancer Research (Dr. John G. Delinassios), All rights reserved
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August 2013
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Evaluation of Cytotoxiciy and Tumor-specificity of Licorice Flavonoids Based on Chemical Structure
HIROKAZU OHNO, DAISUKE ARAHO, YOSHIHIRO UESAWA, HAJIME KAGAYA, MARIKO ISHIHARA, HIROSHI SAKAGAMI, MASAJI YAMAMOTO
Anticancer Research Aug 2013, 33 (8) 3061-3068;

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Evaluation of Cytotoxiciy and Tumor-specificity of Licorice Flavonoids Based on Chemical Structure
HIROKAZU OHNO, DAISUKE ARAHO, YOSHIHIRO UESAWA, HAJIME KAGAYA, MARIKO ISHIHARA, HIROSHI SAKAGAMI, MASAJI YAMAMOTO
Anticancer Research Aug 2013, 33 (8) 3061-3068;
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Keywords

  • Licorice flavonoids
  • QSAR
  • cytotoxicity
  • tumor-specificity index
  • chemical descriptor
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