Evaluation of The Anticancer Activity of Hydroxyxanthones Against Human Liver Carcinoma Cell Line

Kurniawan, Yehezkiel Steven and Fatmasari, Nela and Jumina, Jumina and Pranowo, Harno Dwi and Sholikhah, Eti Nurwening (2024) Evaluation of The Anticancer Activity of Hydroxyxanthones Against Human Liver Carcinoma Cell Line. Journal of Multidisciplinary Applied Natural Science, 4 (1). pp. 1-15. ISSN 27743047

[thumbnail of Nowadays, cancer is one of the most fatal diseases in developed and developing countries. Therefore, it is an urgent need to find more  effective  anticancer  drugs  among  the  recent  commercially  available  standard  drugs.] Text (Nowadays, cancer is one of the most fatal diseases in developed and developing countries. Therefore, it is an urgent need to find more effective anticancer drugs among the recent commercially available standard drugs.)
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Abstract

Nowadays, cancer is one of the most fatal diseases in developed and developing countries. Therefore, it is an urgent need to find more effective anticancer drugs among the recent commercially available standard drugs. Xanthone derivatives have been researched as anticancer drugs due to their ease of synthesis and structure modification, as well as their excellent anticancer activity. In this work, the in vitro anticancer activity of hydroxyxanthones against the human liver carcinoma cell line (HepG2) was evaluated. Among the twenty-two hydroxyxanthones, 1,3,6,8-tetrahydroxyxanthone was found as the most active anticancer agent with an IC50 value of 9.18 μM, which was better than doxorubicin as the standard drug. From the molecular docking studies against topoisomeraseIIα and two c-KIT protein kinases, 1,3,6,8-tetrahydroxyxanthone yielded strong binding energy in a range of-25.48 to-30.42 kJ/mol. The 1,3,6,8-tetrahydroxyxanthone could bind on the active site of these protein receptors through hydrogen bonds with key amino acid residues (Glu640, Cys673, Gln767, Met769, Asp810, and Asp831), as well as nitrogen bases (Adenine12 and Guanine13), thus leading to the death of HepG2 cancer cells through the apoptosis mechanism. © 2023 by the author(s).

Item Type: Article
Additional Information: Cited by: 2; All Open Access, Gold Open Access
Uncontrolled Keywords: anticancer, human liver carcinoma cell line, hydroxyxanthone, molecular docking
Subjects: Q Science > QD Chemistry
Divisions: Faculty of Mathematics and Natural Sciences > Chemistry Department
Depositing User: Yulistiarini Kumaraningrum KUMARANINGRUM
Date Deposited: 20 Nov 2024 07:55
Last Modified: 20 Nov 2024 07:55
URI: https://ir.lib.ugm.ac.id/id/eprint/10679

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