光热治疗
黑磷
材料科学
降级(电信)
癌症治疗
纳米技术
癌症
医学
生物医学工程
癌症治疗
计算机科学
光电子学
内科学
电信
作者
Kuan Hu,Lin Xie,Yiding Zhang,Masayuki Hanyu,Zhimin Yang,Kotaro Nagatsu,Hisashi Suzuki,Jun Ouyang,Xiaoyuan Ji,Junjie Wei,Hao Xu,Omid C. Farokhzad,Steven H. Liang,Lu Wang,Wei Tao,Ming‐Rong Zhang
标识
DOI:10.1038/s41467-020-16513-0
摘要
Abstract The use of photothermal agents (PTAs) in cancer photothermal therapy (PTT) has shown promising results in clinical studies. The rapid degradation of PTAs may address safety concerns but usually limits the photothermal stability required for efficacious treatment. Conversely, PTAs with high photothermal stability usually degrade slowly. The solutions that address the balance between the high photothermal stability and rapid degradation of PTAs are rare. Here, we report that the inherent Cu 2+ -capturing ability of black phosphorus (BP) can accelerate the degradation of BP, while also enhancing photothermal stability. The incorporation of Cu 2+ into BP@Cu nanostructures further enables chemodynamic therapy (CDT)-enhanced PTT. Moreover, by employing 64 Cu 2+ , positron emission tomography (PET) imaging can be achieved for in vivo real-time and quantitative tracking. Therefore, our study not only introduces an “ideal” PTA that bypasses the limitations of PTAs, but also provides the proof-of-concept application of BP-based materials in PET-guided, CDT-enhanced combination cancer therapy.
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