三元镍钴钛层双氢氧化物纳米片作为光动力/化学动力协同疗法的 pH 值响应型纳米试剂

IF 6.2 3区 综合性期刊 Q1 Multidisciplinary Fundamental Research Pub Date : 2024-07-01 DOI:10.1016/j.fmre.2022.06.001
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引用次数: 0

摘要

将光动力疗法(PDT)与化学动力疗法(CDT)相结合已被证明是提高癌症治疗效率的一种有前途的策略,因为这两种疗法之间会产生协同治疗效果。在此,我们报告了一种基于三元镍钴钛层状双氢氧化物(NiCoTi-LDH)纳米片的无机纳米试剂,以实现高效的光动力/化学动力协同治疗。镍钴钛层双氢氧化物纳米片在酸性环境下表现出氧空位促进的电子-空穴分离和光生空穴诱导的不依赖于活性氧(ROS)的O2生成,实现了原位pH响应型PDT。此外,由于光生电子引起的 Co3+ 和 Co2+ 之间的有效转换,NiCoTi-LDH 纳米片通过 Fenton 反应催化 H2O2 释放羟基自由基(-OH),从而产生 CDT。激光照射增强了镍钴钛-LDH 纳米片促进 ROS 生成的催化能力,因此在 pH 值为 6.5 时,其性能优于 TiO2 纳米颗粒。体外和体内实验结果表明,NiCoTi-LDH 纳米片加辐照能有效地导致细胞凋亡,并显著抑制肿瘤生长。这项研究报告了一种新型 pH 响应无机纳米试剂,它具有氧空位促进的光动力/化学动力协同性能,为选择性消除肿瘤提供了一种具有潜在吸引力的临床策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Ternary NiCoTi-layered double hydroxide nanosheets as a pH-responsive nanoagent for photodynamic/chemodynamic synergistic therapy

Combining photodynamic therapy (PDT) with chemodynamic therapy (CDT) has been proven to be a promising strategy to improve the treatment efficiency of cancer, because of the synergistic therapeutic effect arising between the two modalities. Herein, we report an inorganic nanoagent based on ternary NiCoTi-layered double hydroxide (NiCoTi-LDH) nanosheets to realize highly efficient photodynamic/chemodynamic synergistic therapy. The NiCoTi-LDH nanosheets exhibit oxygen vacancy-promoted electron-hole separation and photogenerated hole-induced O2-independent reactive oxygen species (ROS) generation under acidic circumstances, realizing in situ pH-responsive PDT. Moreover, due to the effective conversion between Co3+ and Co2+ caused by photogenerated electrons, the NiCoTi-LDH nanosheets catalyze the release of hydroxyl radicals (·OH) from H2O2 through Fenton reactions, resulting in CDT. Laser irradiation enhances the catalyzed ability of the NiCoTi-LDH nanosheets to promote the ROS generation, resulting in a better performance than TiO2 nanoparticles at pH 6.5. In vitro and in vivo experimental results show conclusively that NiCoTi-LDH nanosheets plus irradiation lead to efficient cell apoptosis and significant inhibition of tumor growth. This study reports a new pH-responsive inorganic nanoagent with oxygen vacancy-promoted photodynamic/chemodynamic synergistic performance, offering a potentially appealing clinical strategy for selective tumor elimination.

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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
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