Exploring the therapeutic efficacy of PLGA-NDP: A comprehensive analysis in OECM-1 oral cancer cells

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Research Paper 04/07/2025
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Exploring the therapeutic efficacy of PLGA-NDP: A comprehensive analysis in OECM-1 oral cancer cells

Senkuttuvan Ilanchit Chenni, Kathiresan Suresh, Azhamuthu Theerthu, Abulkalam Asath Nihal Ahamed, Ravichandran Pugazhendhi, Rajeswari Vasu
Int. J. Biosci. 27(1), 73-82, July 2025.
Copyright Statement: Copyright 2025; The Author(s).
License: CC BY-NC 4.0

Abstract

The present study investigates the therapeutic efficacy of PLGA encapsulated nedaplatin (PLGA-NDP) in oral cancer OECM-1 cells. PLGA-NDP exhibited greater release activity, a lower degree of redox reaction, and increased cytotoxicity, as indicated by the results of the MTT assay, Alamar Blue assay, and β-hexosaminidase release activity, than nedaplatin alone. The survival of the cells in the colony formation assay was significantly decreased for cells treated with PLGA-NDP, as observed by its increased cytotoxic effect and ability to prevent cells from growing colonies when compared with nedaplatin alone. The fewer release of MMP-9 in the presence of PLGA-NDP-8ug/mL also suggests that PLGA-NDP can inhibit the degranulation of cells, a process that promotes cancer invasion and metastasis. PLGA-NDP treatment was more effective in a dose-dependent manner, indicating it as a new therapeutic strategy in the treatment of oral cancer. These findings indicate that PLGA-nedaplatin nanoparticles could be effective therapeutic agent. This result suggests that PLGA encapsulated nedaplatin nanoparticles could present an increase effective therapeutic agent than conventional nedaplatin therapy and therefore less side-effects and improved therapeutic efficacy. It needs much further research to be better understood in their limitations and mode of action before they can be considered for clinical use than conventional nedaplatin chemotherapy, possibly leading to decreased side effects and improved therapeutic efficacy.

Alkahtani S, Alarifi S, Albasher G, Al-Zharani, M, Aljarba NH, Almarzoug MH, Alkahtane, A. A. (2021). Poly Lactic‐Co‐Glycolic Acid‐ (PLGA‐) Loaded Nanoformulation of Cisplatin as a Therapeutic Approach for Breast Cancers. Oxidative Medicine and Cellular Longevity, 2021(1), 5834418. https://doi.org/10.1155/2021/5834418

Annamalai G, Kathiresan S, Kannappan N. 2016a. [6]-Shogaol, a dietary phenolic compound, induces oxidative stress mediated mitochondrial dependant apoptosis through activation of proapoptotic factors in Hep-2 cells. Biomedicine & Pharmacotherapy 82, 226–236. https://doi.org/10.1016/j.biopha.2016.04.044

Bahuguna A, Khan I, Bajpai VK, Kang SC. (2017). MTT assay to evaluate the cytotoxic potential of a drug. Bangladesh Journal of Pharmacology, 12(2). https://doi.org/10.3329/bjp.v12i2.30892

Carreño EA, Alberto AVP, De Souza CAM, De Mello HL, Henriques-Pons A, Anastacio Alves, L. 2021. Considerations and Technical Pitfalls in the Employment of the MTT Assay to Evaluate Photosensitizers for Photodynamic Therapy. Applied Sciences 11(6), 2603. https://doi.org/10.3390/app11062603

Chen H, Zou Y, Yang H, Wang J, Pan H. 2014. Downregulation of FoxM1 inhibits proliferation, invasion and angiogenesis of HeLa cells in vitro and in vivo. International Journal of Oncology 45(6),  2355–2364. https://doi.org/10.3892/ijo.2014.2645

Chenni SI, Suresh DK, Venkatesan DP, Kannappan N, Rajasekar DM, Ahamed AAN,

Pugazhendhi R. 2025. Neoterics preparation of plga loaded nedaplatin nanoparticles by various data analysis. International Journal For Advanced Researchs In Science & Technology, 15(02). https://doi.org/10.48047/IJARST/V15/I02/5

Fang J, Zhao X, Li S, Xing X, Wang H, Lazarovici P, Zheng W. 2019. Protective mechanism of artemisinin on rat bone marrow-derived mesenchymal stem cells against apoptosis induced by hydrogen peroxide via activation of c-Raf-Erk1/2-p90rsk-CREB pathway. Stem Cell Research & Therapy, 10(1), 312. https://doi.org/10.1186/s13287-019-1419-2

Fukuishi N, Murakami S, Ohno A, Yamanaka, N, Matsui N, Fukutsuji K, Akagi M. 2014. Does β-Hexosaminidase Function Only as a Degranulation Indicator in Mast Cells. The Primary Role of β-Hexosaminidase in Mast Cell Granules. The Journal of Immunology 193(4), 1886–1894. https://doi.org/10.4049/jimmunol.1302520

George A, Ranganathan K, Rao UK. 2011. Expression of MMP-1 in histopathological different grades of oral squamous cell carcinoma and in normal buccal mucosa- an immunohistochemical study. Cancer Biomarkers, 7(6), 275–283. https://doi.org/10.3233/CBM-2010-0191

Givony S. 2020. Oral squamous cell carcinoma (OSCC) an overview. 8(13).

Gong Y, Chippada-Venkata U, Oh W. 2014. Roles of Matrix Metalloproteinases and Their Natural Inhibitors in Prostate Cancer Progression. Cancers, 6(3), 1298–1327. https://doi.org/10.3390/cancers6031298

Huang XF, Chang KF, Lee SC, Li CY, Liao HH., Hsieh, MC, Tsai NM. 2020. Extract of Juniperus indica Bertol Synergizes with Cisplatin to Inhibit Oral Cancer Cell Growth via Repression of Cell Cycle Progression and Activation of the Caspase Cascade. Molecules, 25(12), 2746. https://doi.org/10.3390/molecules25122746

Ilanchit Chenni S, Suresh K, Theerthu A, Ahamed AAN, Pugazhendhi R, Vasu R. (2024). PLGA‐Loaded Nedaplatin (PLGA‐NDP) Inhibits 7,12‐Dimethylbenz[a]anthracene (DMBA) Induced Oral Carcinogenesis via Modulating Notch Signaling Pathway and Induces Apoptosis in Experimental Hamster Model. Cell Biochemistry and Function, 42(7), e4133. https://doi.org/10.1002/cbf.4133

Lu S, Chen Z, Hu C, Zhang J, Chen Y, Song Y, Liu Z. 2018. Nedaplatin Plus Docetaxel Versus Cisplatin Plus Docetaxel as First-Line Chemotherapy for Advanced Squamous Cell Carcinoma of the Lung—A Multicenter, Open-label, Randomized, Phase III Trial. Journal of Thoracic Oncology, 13(11), 1743-1749. https://doi.org/10.1016/j.jtho.2018.07.006

Majtnerova P, Capek J, Petira F, Handl J, Rousar T. 2021. Quantitative spectrofluorometric assay detecting nuclear condensation and fragmentation in intact cells. Scientific Reports, 11(1), 11921. https://doi.org/10.1038/s41598-021-91380-3

Mandelkow R, Gümbel D, Ahrend H, Kaul A, Zimmermann U, Burchardt M, Stope MB. (2017). Detection and Quantification of Nuclear Morphology Changes in Apoptotic Cells by Fluorescence Microscopy and Subsequent Analysis of Visualized Fluorescent Signals. Anticancer Research, 37(5), 2239–2244. https://doi.org/10.21873/anticanres.11560

Moreno D, Zalba S, Navarro I, Tros De Ilarduya C, Garrido MJ. 2010. Pharmacodynamics of cisplatin-loaded PLGA nanoparticles administered to tumor-bearing mice. European Journal of Pharmaceutics and Biopharmaceutics 74(2), 265–274. https://doi.org/10.1016/j.ejpb.2009.10.005

Rajendran V, Jain MV. 2018. In Vitro Tumorigenic Assay: Colony Forming Assay for Cancer Stem Cells. In G. Papaccio & V. Desiderio (Eds.), Cancer Stem Cells (p 89–95). New York, NY: Springer New York. https://doi.org/10.1007/978-1-4939-7401-6_8

Ramadoss H, Kathiresan S, Kathiresan S. 2021. Anti-Proliferative Activity of Aescin on Human Oral Carcinoma (KB) Cells and Human Laryngeal Carcinoma (Hep-2) Cells- Via Cell Sensitivity Assays. 25(2).

Sathiya Kamatchi, T., Mohamed Subarkhan, MK, Ramesh R, Wang H, Małecki JG. 2020. Investigation into antiproliferative activity and apoptosis mechanism of new arene Ru (ii) carbazole-based hydrazone complexes. Dalton Transactions, 49(32), 11385–11395. https://doi.org/10.1039/D0DT01476A

Shoari A, Ashja Ardalan A, Dimesa AM, Coban MA. 2024. Targeting Invasion: The Role of MMP-2 and MMP-9 Inhibition in Colorectal Cancer Therapy. Biomolecules 15(1), 35. https://doi.org/10.3390/biom15010035

Song N, Wang B, Feng G, Duan L, Yuan S, Jia W, Liu Y. 2019. Knockdown of high mobility group box 3 impairs cell viability and colony formation but increases apoptosis in A549 human non‑small cell lung cancer cells. Oncology Letters. https://doi.org/10.3892/ol.2019.9927

 Strober W. 2015. Trypan Blue Exclusion Test of Cell Viability. Current Protocols in Immunology, 111(1). https://doi.org/10.1002/0471142735.ima03bs111

Takahashi K, Fukushima K, Otagaki S, Ishimoto K, Minami K, Fukushima N. Tsujiuchi T. 2018. Effects of LPA1 and LPA6 on the regulation of colony formation activity in colon cancer cells treated with anticancer drugs. Journal of Receptors and Signal Transduction 38(1), 71–75. https://doi.org/10.1080/10799893.2018.1426608

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