Publication | Open Access
Metal–organic framework combined with CaO<sub>2</sub> nanoparticles for enhanced and targeted photodynamic therapy
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Citations
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References
2021
Year
Photodynamic therapy (PDT) has been rapidly developed as an effective therapeutic approach in clinical settings. However, hypoxia seriously limits the effectiveness of PDT. Here, we report a porphyrin-based metal-organic framework combined with hyaluronate-modified CaO<sub>2</sub> nanoparticles (PCN-224-CaO<sub>2</sub>-HA) to target and enhance PDT efficacy. CaO<sub>2</sub> reacts with H<sub>2</sub>O or weak acid to produce O<sub>2</sub>, overcoming the hypoxia problem. Hyaluronate protects CaO<sub>2</sub> and specifically targets the CD44 receptor, which is highly expressed on tumor cell membranes, performing targeted therapy. After PDT treatment <i>in vitro</i>, the survival rates of 4T1 and MCF-7 tumor cells were 14.58% and 22.45%, respectively. The fluorescence imaging showed that PCN-224-CaO<sub>2</sub>-HA effectively aggregated in the tumor after 12 h of its intravenous injection into tumor-bearing mice. PCN-224-CaO<sub>2</sub>-HA exhibited efficacious tumor growth inhibition <i>via</i> enhanced PDT. Overall, this nanosystem providing <i>in situ</i> oxygen production was successfully used for targeted PDT with a significantly enhanced therapeutic efficacy <i>in vitro</i> and <i>in vivo</i>.
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