4.7 Article

Glycopolymer-Functionalized MOF-808 Nanoparticles as a Cancer-Targeted Dual Drug Delivery System for Carboplatin and Floxuridine

期刊

ACS APPLIED NANO MATERIALS
卷 -, 期 -, 页码 -

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsanm.2c01632

关键词

metal-organic framework; glycopolymer; drug delivery; cancer; synergistic; targeting; carbohydrates

资金

  1. Royal Society
  2. University of Glasgow
  3. European Research Council (ERC) under the European Union [677289]
  4. European Research Council (ERC) [677289] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

The codelivery of chemotherapeutics via nanomaterials, specifically metal-organic frameworks (MOFs) such as MOF-808, holds promise for improved drug delivery to tumor tissues and enhanced therapeutic efficacy. In this study, the efficient dual drug delivery of floxuridine (FUDR) and carboplatin (CARB) loaded in MOF-808 nanoparticles was demonstrated, with further functionalization of the nanoparticles to enhance selectivity and therapeutic effect. Combining FUDR and CARB resulted in a synergistic effect and increased cytotoxicity. These findings highlight the potential of MOF-808 as a drug delivery system for future studies.
Codelivery of chemotherapeutics via nanomaterials has attracted much attention over the last decades due to improved drug delivery to tumor tissues, decreased systemic effects, and increased therapeutic efficacies. High porosities, large pore volumes and surface areas, and tunable structures have positioned metal-organic frameworks (MOFs) as promising drug delivery systems (DDSs). In particular, nanoscale Zr-linked MOFs such as MOF-808 offer notable advantages for biomedical applications such as high porosity, good stability, and biocompatibility. In this study, we report efficient dual drug delivery of floxuridine (FUDR) and carboplatin (CARB) loaded in MOF-808 nanoparticles to cancer cells. The nanoparticles were further functionalized by a poly(acrylic acid-mannose acrylamide) (PAAMAM) glycopolymer coating to obtain a highly selective DDS in cancer cells and enhance the therapeutic efficacy of chemotherapy. While MOF-808 was found to enhance the individual therapeutic effects of FUDR and CARB toward cancerous cells, combining FUDR and CARB was seen to cause a synergistic effect, further enhancing the cytotoxicity of the free drugs. Enhancement of CARB loading and therefore cytotoxicity of the CARB-loaded MOFs could be induced through a modified activation protocol, while coating of MOF-808 with the PAAMAM glycopolymer increased the uptake of the nanoparticles in cancer cells used in the study and offered a particularly significant selective drug delivery with high cytotoxicity in HepG2 human hepatocellular carcinoma cells. These results show how the enhancement of cytotoxicity is possible through both nanovector delivery and synergistic treatment, and that MOF-808 is a viable candidate for future drug delivery studies.

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