Initial Evaluation of Dihydroartemisinin (DHA), Metformin and Taro Extract in Combination with Cisplatin for Enhanced Cytotoxicity in Triple-Negative Breast Cancer (TNBC) Cell Lines
- Authors
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Ada Morgan Godwin
Department of Health and Human Studies – Pharmaceutical Sciences Program, Elizabeth City State University, Elizabeth City, NC 27909, USA -
Na’Turie Ward
Department of Natural Sciences – Biology Graduate Program, Elizabeth City State University, Elizabeth City, NC 27909, USA -
Christopher Krauss
Department of Natural Sciences – Biology Graduate Program, Elizabeth City State University, Elizabeth City, NC 27909, USA -
Hirendranath Banerjee
Department of Natural Sciences – Biology Graduate Program, Elizabeth City State University, Elizabeth City, NC 27909, USA -
Gloria Payne
Department of Natural Sciences – Biology Graduate Program, Elizabeth City State University, Elizabeth City, NC 27909, USA -
Dolapo Adedeji
Department of Health and Human Studies – Pharmaceutical Sciences Program, Elizabeth City State University, Elizabeth City, NC 27909, USA
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- Keywords:
- Cisplatin, cytotoxicity, dihydroartemisinin, metformin, taro extract, triple-negative breast cancer, combination.
- Abstract
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This study evaluated the antiproliferative effects of cisplatin, dihydroartemisinin, metformin and taro extract on MDA-MB-231 triple-negative breast cancer (TNBC) cell lines. Cisplatin at half maximal inhibitory concentration, IC50 (20 µM) induced ~45% cell death (p < 0.001 vs control), while metformin (MET), dihydroartemisinin (DHA), and taro extract (TE) alone showed minimal cell death. Combination treatments (Cis + MET, Cis + DHA, and Cis + TE) significantly increased cytotoxicity to ~60% cell death on average (p < 0.01 vs cisplatin alone), with Cis + TE producing the greatest effect (~90%). The triple metabolic combination without cisplatin caused less than10% cell death (p < 0.001 vs cisplatin-containing groups), probably supporting a cisplatin-dependent cell death.
- References
-
[1] American Cancer Society [Internet]. [cited 2026 May 29]. Types of Breast Cancer. Available from: https://www.cancer.org/cancer/types/breast-cancer/about/types-of-breast-
[2] Pont M, Marqués M, Sorolla A. Latest Therapeutical Approaches for Triple-Negative Breast Cancer: From Preclinical to Clinical Research. International Journal of Molecular Sciences 2024; 25(24): 13518.
[3] Costa RLB, Gradishar WJ. Triple-Negative Breast Cancer: Current Practice and Future Directions. Journal of Oncology Practice 2017; 13(5): 301-3.
[4] Zhu S, Wu Y, Song B, Yi M, Yan Y, Mei Q, et al. Recent advances in targeted strategies for triple-negative breast cancer. Journal of Hematology & Oncology 2023; 16(1).
[5] Lehmann BD, Bauer JA, Chen X, Sanders ME, Chakravarthy AB, Shyr Y, et al. Identification of human triple-negative breast cancer subtypes and preclinical models for selection of targeted therapies. Journal of Clinical Investigation 2011; 121(7): 2750-67.
[6] Bianchini G, Balko JM, Mayer IA, Sanders ME, Gianni L. Triple-negative breast cancer: challenges and opportunities of a heterogeneous disease. Nature Reviews Clinical Oncology 2016; 13(11): 674-90.
[7] Song J, Du J, Han L, Lin X, Fan C, Chen G. The Effect of Metformin on Triple-Negative Breast Cancer Cells and Nude Mice. Altern Ther Health Med 2023; 29(8): 389-395.
[8] Gholami M, Klashami ZN, Ebrahimi P, Mahboobipour AA, Farid AS, Vahidi A, et al. Metformin and long non-coding RNAs in breast cancer. Journal of Translational Medicine 2023; 21(1).
[9] Terragno M, Vetrova A, Semenov O, Sayan AE, Kriajevska M, Tulchinsky E. Mesenchymal-epithelial transition and AXL inhibitor TP-0903 sensitize triple-negative breast cancer cells to the antimalarial compound, artesunate. Scientific Reports 2024; 14(1).
[10] Zhou X, Soto-Gamez A, Nijdam F, Setroikromo R, Quax WJ. Dihydroartemisinin-transferrin adducts enhance TRAIL-induced apoptosis in triple-negative breast cancer in a p53-independent and ROS-dependent manner. Front Oncol 2022; 11: 789336.
[11] Pérez-Soto E, Carolina Estanislao-Gómez C, Guillermo Pérez-Ishiwara D, Ramirez-Celis C. et al. Cytotoxic Effect and Mechanisms from Some Plant-Derived Compounds in Breast Cancer. In: Cytotoxicity - Definition, Identification, and Cytotoxic Compounds [Internet]. IntechOpen; 2019 [cited 2026 May 29].
[12] Pilmeijer A. Medicinal Plants and Anticancer Treatment. International Journal of Complementary & Alternative Medicine 2017; 10(1).
[13] Kundu N, Ma X, Hoag S, Wang F, Ibrahim A, Godoy-Ruiz R, et al. An Extract of Taro (Colocasia esculenta) Mediates Potent Inhibitory Actions on Metastatic and Cancer Stem Cells by Tumor Cell-Autonomous and Immune-Dependent Mechanisms. Breast Cancer: Basic and Clinical Research 2021; 15(20).
[14] Cardillo TM, Zalath MB, Arrojo R, Sharkey RM, Govindan SV, Chang CH, et al. Sacituzumab govitecan plus platinum-based chemotherapy mediates significant antitumor effects in triple-negative breast, urinary bladder, and small-cell lung carcinomas. Oncotarget 2024; 15(1): 144-58.
[15] Mai N, Abuhadra N, Jhaveri K. Molecularly Targeted Therapies for Triple Negative Breast Cancer: History, Advances, and Future Directions. Clinical Breast Cancer 2023; 23(8): 784-99.
[16] Muhammad N, Hanif M, Yang P. Beyond cisplatin: New frontiers in metallodrugs for hard-to-treat triple negative breast cancer. Coordination Chemistry Reviews 2024; 499: 215507.
[17] Dai X, Cheng H, Bai Z, Li J. Breast cancer cell line classification and its relevance with breast tumor subtyping. J Cancer 2017; 8(16): 3131-3141.
[18] Kundu N, Campbell P, Hampton B, et al. Antimetastatic activity isolated from Colocasia esculenta (taro). Anticancer Drugs 2012; 23(2): 200-211.
[19] Ontikatze T, Rudner J, Handrick R, Belka C, Jendrossek V. Dihydroartemisinin is a Hypoxia-Active Anti-Cancer Drug in Colorectal Carcinoma Cells. Frontiers in Oncology 2014; 4(116).
[20] Esposito T, Pisanti S, Mauro L, Mencherini T, Martinelli R, Aquino RP. Activity of Colocasia esculenta (Taro) Corms against Gastric Adenocarcinoma Cells: Chemical Study and Molecular Characterization. International Journal of Molecular Sciences 2023;
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- 2026-06-04
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- Vol. 15 (2026)
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