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Surface Engineering of Carbon Nano-Onions for Folic Acid-Mediated Targeted Chemotherapeutic Delivery

Bartkowski, Michał orcid logoORCID: 0000-0002-0259-0919, Zhou, Yingru, Penna, Ilaria, Russo, Debora, Mohan, Hugh orcid logoORCID: 0000-0002-6051-3348, Serodre, Tiago, Anglaret, Eric, Bandiera, Tiziano and Giordani, Silvia orcid logoORCID: 0000-0002-9212-5067 (2026) Surface Engineering of Carbon Nano-Onions for Folic Acid-Mediated Targeted Chemotherapeutic Delivery. ACS Applied Nano Materials, 9 (2). pp. 1234-1251. ISSN 2574-0970

Abstract
Carbon nano-onions (CNOs) are an emerging class of carbon nanomaterials with distinctive physicochemical properties, including small size, high surface area, and favorable biocompatibility. Their multilayered carbon structure and accessible surface chemistry make them attractive candidates for functional nanomaterials in biomedical applications. In this work, we report the synthesis and functionalization of CNOs with folic acid (FA) to achieve receptor-mediated targeting of cancer cells overexpressing folate receptors. The FA-modified CNOs were further engineered for the efficient loading and controlled release of doxorubicin (DOX). Surface modifications were confirmed by a comprehensive suite of spectroscopic, microscopic, and thermal characterization techniques, which verified successful FA conjugation and drug incorporation. In vitro assays demonstrated that FA-functionalized CNOs significantly enhance cellular uptake and drug delivery efficiency compared to nontargeted controls. These results not only validate FA-CNOs as potential nanocarriers for cancer therapy but also underscore the versatility of CNOs as a tunable carbon nanomaterial platform for targeted delivery applications.
Metadata
Item Type:Article (Published)
Refereed:Yes
Uncontrolled Keywords:Carbon nano-onions (CNOs); surface functionalization; folic acid conjugation; doxorubicin; targeted drug delivery; pH-responsive release; cancer nanocarriers; receptor-mediated uptake
Subjects:DCU Subject Areas > Biological Sciences > Biochemistry
DCU Subject Areas > Humanities > Biological Sciences > Biochemistry
DCU Subject Areas > Biological Sciences > Biology
DCU Subject Areas > Humanities > Biological Sciences > Biology
DCU Subject Areas > Medical Sciences > Cancer
DCU Subject Areas > Physical Sciences > Analytical chemistry
DCU Subject Areas > Physical Sciences > Chemistry
DCU Subject Areas > Physical Sciences > Nanotechnology
DCU Subject Areas > Physical Sciences > Organic chemistry
DCU Subject Areas > Physical Sciences > Spectrum analysis
DCU Subject Areas > Physical Sciences > Photochemistry
DCU Faculties and Centres:DCU Faculties and Schools > Faculty of Science and Health
DCU Faculties and Schools > Faculty of Science and Health > School of Chemical Sciences
Publisher:American Chemical Society
Official URL:https://pubs.acs.org/doi/full/10.1021/acsanm.5c051...
Copyright Information:Authors
Funders:This work was supported by Research Ireland (22/FFP-A/11067). Financial support from Breakthrough Cancer Research (EPSPG/2024/1846 to Y.Z.) and the Irish Research Council (GOIPG/2021/210 to H.M.) are also greatly acknowledged.
ID Code:32286
Deposited On:18 Feb 2026 11:34 by Michal Bartkowski . Last Modified 18 Feb 2026 11:34
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[thumbnail of Accepted Manuscript] PDF (Accepted Manuscript) - Archive staff only. This file is embargoed until 2 January 2027 - Requires a PDF viewer such as GSview, Xpdf or Adobe Acrobat Reader
Creative Commons: Attribution-Noncommercial-No Derivative Works 4.0
2MB
[thumbnail of Supporting Information] PDF (Supporting Information) - Archive staff only. This file is embargoed until 2 January 2027 - Requires a PDF viewer such as GSview, Xpdf or Adobe Acrobat Reader
Creative Commons: Attribution-Noncommercial-No Derivative Works 4.0
5MB
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