5-Fluorouracil nano-delivery systems as a cutting-edge for cancer therapy

5-Fluorouracil (5-FU) is amongst the most commonly used antimetabolite chemotherapeutic agents in recent decades. However, its low bioavailability, short half-life, rapid metabolism and the development of drug resistance after chemotherapy limit its therapeutic efficiency. In this study, 5-FU applic...

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Veröffentlicht in:European journal of medicinal chemistry 2023-01, Vol.246, p.114995, Article 114995
Hauptverfasser: Valencia-Lazcano, Anai A., Hassan, Dilawar, Pourmadadi, Mehrab, shamsabadipour, Amin, Behzadmehr, Razieh, Rahdar, Abbas, Medina, Dora I., Díez-Pascual, Ana M.
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Sprache:eng
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Zusammenfassung:5-Fluorouracil (5-FU) is amongst the most commonly used antimetabolite chemotherapeutic agents in recent decades. However, its low bioavailability, short half-life, rapid metabolism and the development of drug resistance after chemotherapy limit its therapeutic efficiency. In this study, 5-FU applications as an anti-cancer drug for treating diverse types of cancers (e.g. colon, pancreatic and breast) have been reviewed. Different approaches lately designed to circumvent the drawbacks of 5-FU therapy are described herein, including 5-FU-loaded lipid-based nanoparticles (NPs), polymeric NPs (both stimuli and non-stimuli responsive), carbon-based nanostructures and inorganic NPs. Furthermore, co-delivery systems of 5-FU with other drugs (e.g. paclitaxel, gelatin-doxorubicin and naproxen) have been reviewed, which aid to attain better bioavailability, higher effectiveness at a lower concentration and lower toxicity. This review provides researchers with the latest progress on 5-FU-loaded nanocarriers, which show great potential as an advanced tool for cancer therapy. [Display omitted] •Nanostructures have been explored for promoting delivery of 5-FU to tumors.•Polymer, lipid and carbon-based NPs can target 5-FU delivery to breast and colon cancer.•Co-delivery of 5-FU with other drugs holds great promise to carcinoma therapy.
ISSN:0223-5234
1768-3254
DOI:10.1016/j.ejmech.2022.114995