光动力疗法
放射增敏剂
活性氧
材料科学
氧化铈
纳米壳
铈
纳米颗粒
放射治疗
紫外线
纳米技术
化学
氧化物
光电子学
医学
放射科
生物化学
有机化学
冶金
作者
Shikai Liu,Linyang Fang,He Ding,Yang‐Yang Zhang,Wenting Li,Bin Liu,Shuming Dong,Boshi Tian,Lili Feng,Piaoping Yang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-11-15
卷期号:16 (12): 20805-20819
被引量:43
标识
DOI:10.1021/acsnano.2c08047
摘要
The emergence of X-ray-induced photodynamic therapy (X-PDT) holds tremendous promise for clinical deep-penetrating cancer therapy. However, the clinical application of X-PDT in cancer treatment is still limited due to the hypoxic property of cancerous tissue, the inherent antioxidant system of tumor cells, and the difficulty in matching the absorption spectra of photosensitizers. Herein, a versatile core–shell radiosensitizer (SCNPs@DMSN@CeOx-PEG, denoted as SSCP) was elaborately designed and constructed to enhance X-PDT by coating tunable mesoporous silica on nanoscintillators, followed by embedding the cerium oxide nanoparticles in situ. The obtained SSCP radiosensitizer demonstrated a distinct blue-shift in the ultraviolet light region, so that it could perfectly absorb the ultraviolet light converted by the SCNPs core, resulting in the formation of photoinduced electron–hole (e–-h+) pairs separation to generate reactive oxygen species (ROS). In addition, the cerium oxide exhibits high glutathione consumption to heighten ROS accumulation, and catalase-like activity to alleviate the hypoxia, which further enhances the efficiency of radiotherapy. Benefiting from the abundant Lu and Ce elements, the computed tomography imaging performance of SSCP is about 3.79-fold that of the clinical contrast agent (iohexol), which has great potential in both preclinical imaging and clinical translation.
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