Construction and evaluation of curcumin upconversion nanocarriers decorated with MnO2 for tumor photodynamic therapy

光动力疗法 光敏剂 光子上转换 姜黄素 纳米载体 单线态氧 肿瘤缺氧 纳米颗粒 肿瘤微环境 材料科学 化学 纳米技术 光化学 癌症研究 氧气 肿瘤细胞 离子 医学 生物化学 有机化学 内科学 放射治疗
作者
Xinru Chen,Quandong Li,Zipeng Huang,Lu‐Yin Lin,Yan Ma
出处
期刊:Drug Delivery and Translational Research [Springer Science+Business Media]
卷期号:12 (11): 2678-2692 被引量:10
标识
DOI:10.1007/s13346-022-01118-5
摘要

The limited tissue penetration depth and tumor hypoxic microenvironment have become the two pivotal obstacles that alleviate the antineoplastic efficacy in tumor photodynamic therapy (PDT). In the research, MnO2-decorated upconversion nanoparticles (UCSMn) have been designed to generate certain oxygen within the solid tumor, and also increase the light penetrating depth due to the optical conversion ability derived from upconversion nanoparticles. Furthermore, upconversion nanoparticles as the inner core are coated by mesoporous silica for the loading of curcumin as photosensitizer and chemotherapeutics, and then a MnO2 shell is proceeding to grow via redox method. When reaching the tumor tissue, the MnO2 nanoshells of UCSMn could be rapidly degraded into manganese ions (Mn2+) owing to the reaction with H2O2 in acidic tumor microenvironment, meanwhile producing oxygen and facilitating curcumin release. Once the tumor is illuminated by 980 nm light, the upconversion nanoparticles can transform the infrared light to visible light of 450 nm and 475.5 nm, which can be efficiently absorbed by curcumin, and then produce singlet oxygen to induce tumor cell apoptosis. Curcumin played a dual role which can not only be acted as a photosensitizer, but also a chemotherapeutic agent to further reinforce the antitumor activity. In short, the intelligent nanostructure has the potential to overcome the above-mentioned shortcomings existed in PDT and eventually do work well in the hypoxia tumors. MnO2-decorated upconversion nanoparticle to solve the tissue penetration and tumor hypoxic microenvironment for tumor photodynamic therapy.
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