Moeni, M., Edokali, M., Bacchetti, A. et al. (12 more authors) (2026) Theranostic Iron Oxide Nanoparticles for Controlled Oxaliplatin Release Under Simulated Circulation and Cytotoxicity Evaluation in Colorectal Cancer Cell Lines. Processes, 14 (4). 597. ISSN: 2227-9717
Abstract
Oxaliplatin (OXA) is a chemotherapeutic agent that suffers from poor pharmacokinetics and off-target toxicity. To enable controlled OXA release, we engineered a multi-functional iron oxide nanoparticle (IONPs) drug delivery system, based on pH-responsive mesoporous Fe3O4 (Fe3O4@MSN-NH2) nanoparticles (NPs), conjugated with folic acid (FA) for receptor-mediated targeting and guided by a magnetic robot platform (MRP) under simulated physiologically relevant dynamic circulation/flow system. For FA-conjugated NPs (Fe3O4@MSN-NH2/FA), ~29.73% OXA loading was achieved compared to ~10.3% in controls (Fe3O4@MSN-NH2/OXA), quantified by ICP-OES. Under dynamic circulation flow over 48 h, MRP enhanced pH-responsive OXA release (quantified by HPLC-UV), reaching ~92% and 88% (Fe3O4@MSN-NH2/OXA and Fe3O4@MSN-NH2/FA, respectively) at pH 5, versus 47% and 40% (Fe3O4@MSN-NH2/OXA and Fe3O4@MSN-NH2/FA, respectively) without MRP, demonstrating precise control in acidic tumor-mimicking conditions. MRI relaxometry exhibited strong T2-weighted contrast (T2 = 0.015 s at 50 μg/mL for Fe3O4@MSN-NH2/FA/OXA), confirming theranostic potential. Reverse transcription quantitative polymerase chain reaction (RT-qPCR) studies revealed variable Folate receptor alpha (FOLR1) expression among colorectal cancer cell lines (Caco2, SW620, SW48, and T84), with Caco2 demonstrating high levels. MTT assays indicated selective targeting of FOLR1-positive cells by FA-functionalized NPs (Fe3O4@MSN-NH2/FA). This multi-functional drug delivery system integrates targeted delivery, MRP release, and real-time imaging, offering a promising technique for precision oncology.
Metadata
| Item Type: | Article |
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| Authors/Creators: |
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| Copyright, Publisher and Additional Information: | © 2026 by the authors. This is an open access article under the terms of the Creative Commons Attribution License (CC-BY 4.0), which permits unrestricted use, distribution and reproduction in any medium, provided the original work is properly cited. |
| Keywords: | oxaliplatin; multi-functional; iron oxide nanoparticles; folic acid; theranostic; magnetic robot platform; colorectal cancer cells |
| Dates: |
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| Institution: | The University of Leeds |
| Academic Units: | The University of Leeds > Faculty of Engineering & Physical Sciences (Leeds) > School of Physics and Astronomy (Leeds) The University of Leeds > Faculty of Medicine and Health (Leeds) > School of Medicine (Leeds) The University of Leeds > Faculty of Engineering & Physical Sciences (Leeds) > School of Electronic & Electrical Engineering (Leeds) The University of Leeds > Faculty of Engineering & Physical Sciences (Leeds) > School of Chemistry (Leeds) |
| Date Deposited: | 04 Mar 2026 11:29 |
| Last Modified: | 04 Mar 2026 11:29 |
| Status: | Published |
| Publisher: | MDPI |
| Identification Number: | 10.3390/pr14040597 |
| Sustainable Development Goals: | |
| Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:238616 |
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Filename: processes-14-00597.pdf
Licence: CC-BY 4.0


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