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◆ Acta biomaterialia2026-09-03

Zirconium Metal-Organic Framework-Based Composite Drug Delivery System for Precise Drug Release and Synergistic Modulation of the Tumor Microenvironment in Liver Cancer Therapy.

Yujia Han, Haixiang Zeng, Jing Xu, Hongyan Hao, Hongxia Li, Xiaohui Niu, Yan Li, Xiaoyu Liu, Deyi Zhang, Li Chen, Dongqiang Zhang, Kunjie Wang

原始摘要(英文原文)· Original abstract
Zirconium-based metal-organic framework (MOF-808) materials were selected as drug delivery carriers, with 5-fluorouracil (5-Flu) as the model drug. MOF-808@5-Flu drug-loaded carriers were designed and prepared at different ratios. The drug release behavior of the MOF-808@5-Flu nanocomposite was investigated under different pH conditions (7.4/6.5/5.0). The results showed that when the mass ratio of MOF-808 to 5-Flu was 1:0.25, the material released 55.56% of the drug within 50 hours at pH 5.0, compared with 47.85% and 48.00% at pH 7.4 and 6.5, respectively. The drug release behavior was well fitted by the Higuchi model the Higuchi model. Cell and animal experiments demonstrated that MOF-808@5-Flu exhibited good biocompatibility and significantly inhibited the growth of Hepa1-6 cells, indicating its potential as a targeted nanocarrier to enhance therapeutic efficacy. Studies indicate that MOF-808@5-Flu induces cancer cell death through the apoptotic pathway. The catalytic activity of Zr4+ acted synergistically with the pharmacological effects of 5-Flu, generated a large amount of reactive oxygen species (ROS), significantly reducing tumor cell viability. Theoretical calculations indicated that MOF-808@5-Flu exhibits synergistic effects through multiple interactions, including π-π stacking, electrostatic attraction, and hydrophobic interactions. This results further highlights the advantages of MOF-808@5-Flu as a drug delivery platform. In summary, MOF-808@5-Flu shows great potential as a targeted nanocarrier for anticancer drug delivery. STATEMENT OF SIGNIFICANCE: Developed MOF-808@5-Flu nanocarriers with strong potential for targeted anticancer drug delivery. Achieved pH-responsive 5-Flu release, with the highest release rate of 55.56% at pH 5.0 within 50 h. Confirmed that the drug release profile follows the Higuchi model. Demonstrated good biocompatibility and effective inhibition of Hepa1-6 tumor cell growth. Revealed a "carrier-drug" synergistic mechanism driven by Zr4+ catalysis and multiple intermolecular interactions.
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Zirconium Metal-Organic Framework-Based Composite Drug Delivery System for Precise Drug Release and Synergistic Modulation of the Tumor Microenvironment in Liver Cancer Therapy. — 科研速览 Science Skim