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首页> 外文期刊>Nanoscale >Synthesis of red/black phosphorus-based composite nanosheets with a Z-scheme heterostructure for high-performance cancer phototherapy
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Synthesis of red/black phosphorus-based composite nanosheets with a Z-scheme heterostructure for high-performance cancer phototherapy

机译:红色/黑色基于磷复合的综合nanosheets Z-scheme异质结构的高性能癌症光疗

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Two dimensional black phosphorus nanosheets (BP NSs) have attracted plenty of attention in the research field of cancer photonic therapy. However, the poor stability and relatively low efficiency of reactive oxygen species (ROS) generation of BP NSs limit their practical application. To address these drawbacks, herein we report a red/black phosphorus (RP/BP) composite nanosheet, M-RP/BP@ZnFe2O4, which was synthesized by (1) partially converting red phosphorus (RP) to black phosphorus (BP) followed by liquid-phase ultrasonic exfoliation to form RP/BP NSs, (2) in situ synthesis of ZnFe2O4 nanoparticles on the surface of RP/BP NSs, (3) and wrapping with the MCF-7 cell membrane. Due to the presence of RP, BP, ZnFe2O4 and the cell membrane, the M-RP/BP@ZnFe2O4 NSs exhibited high performance in cancer phototherapy with the following features: (i) a Z-scheme heterojunction structure was formed between RP/BP NSs thus enabling high separation efficiency of the photogenerated electrons and holes; (ii) the photoexcitation holes in the valence band of RP can break the tumor microenvironment by oxidizing glutathione; (iii) the NSs could decompose water to produce H2O2 and O2, which can be further converted to toxic ˙OH through the ZnFe2O4 catalyzed Fenton reaction and 1O2 through energy transfer, respectively; and (iv) the cell membrane wrapping improved the targeting of the composite NSs at the tumor site and photonic therapy can be finally triggered by a 660 nm laser to convert O2 to ˙O2− and 1O2. The in vitro cytotoxicity experiments showed that more than 90% cells were killed after photodynamic therapy (PDT) at 0.3 mg mL−1 M-RP/BP@ZnFe2O4 NSs, and the animal experiments with xenograft tumor model mice indicated that tumor growth was completely inhibited and the highest survival rate of 83.3% at 60 days post PDT was obtained.
机译:二维黑磷nanosheets (BPNSs)吸引了大量的关注光子治疗对癌症研究领域。然而,稳定性差和相对较低的效率的活性氧(ROS)代的BP NSs限制他们实用应用程序。我们报告一个红/黑磷(RP / BP)复合nanosheet M-RP / BP@ZnFe2O4,合成了(1)部分转换为红色磷(RP)黑磷(BP)通过液相超声剥离形成RP / BP NSs,(2)原位合成ZnFe2O4纳米粒子表面的RP / BP NSs, (3)和包装MCF-7细胞膜。RP的存在,英国石油公司、ZnFe2O4和细胞膜,M-RP / BP@ZnFe2O4 NSs表现出高在癌症的光疗的表现以下特点:(i) Z-scheme异质结结构之间形成RP / BP NSs如此使分离效率高photogenerated电子和空穴;光致激发洞RP的价带可以通过氧化破坏肿瘤微环境谷胱甘肽;产生过氧化氢和氧,这可以进一步通过ZnFe2O4转化为有毒˙哦通过能源催化芬顿反应和1 o2分别为转移;膜包装改善的目标复合NSs肿瘤部位和光子治疗可以最终引发的660海里激光将O2˙O2−1 O2。细胞毒性实验表明,超过光动力治疗后90%的细胞被杀(PDT)−1 M-RP / BP@ZnFe2O4 NSs 0.3毫克毫升、和动物实验与异种移植肿瘤模型老鼠显示肿瘤生长完全抑制和存活率最高的83.3%在60天邮报PDT。

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