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首页> 外文期刊>ACS applied materials & interfaces >Lutecium Fluoride Hollow Mesoporous Spheres with Enhanced Up-Conversion Luminescent Bioimaging and Light-Triggered Drug Release by Gold Nanocrystals
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Lutecium Fluoride Hollow Mesoporous Spheres with Enhanced Up-Conversion Luminescent Bioimaging and Light-Triggered Drug Release by Gold Nanocrystals

机译:氟化空心中空球体具有增强的上转换发光生物成像和金纳米晶体引起的光触发药物释放。

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Uniform Na5Lu9F_(32) hollow mesoporous spheres (HMSs) have been successfully prepared by a facile and mild (50 °C for 5 h) coprecipitation process, and Au nanocrystals (NCs) with particle size of about 10 nm were conjugated to poly(ether imide) (PEI) modified HMSs by electrostatic interaction. Compared with Na5Lu9F_(32):Yb/Er HMSs, the up-conversion (UC) luminescence intensity of Na5Lu9F_(32):Yb/Er@Au HMSs was much higher under low pump power due to the local field enhancement (LFE) of Au NCs, and there is a surface plasmon resonance (SPR) effect with nonractiative transitions which generates a thermal effect. These two effects have been proved by theoretical discrete-dipole approximation (DDA) simulation. The good biocompatibility of Na5Lu9F_(32):Yb/Er@Au HMSs indicates them as a promising candidate in the biological field. Particularly, under near-infrared (NIR) laser irradiation, a rapid doxorubicin (DOX) release was achieved due to the thermal effect of Au NCs. In this case, Na5Lu9F_(32):Yb/Er@Au HMSs exhibit an apparent NIR light-controlled "on/off" drug release pattern. In addition, UC luminescent images uptaken by cells show brighter green and red emission under NIR laser excitation. Therefore, this novel multifunctional (mesoporous, enhanced UC luminescent, and light-triggered drug release) material should be potential as a suitable targeted cancer therapy carrier and bioimaging.
机译:已通过简便且温和的(50°C,5 h)共沉淀工艺成功制备了均匀的Na5Lu9F_(32)中空介孔球(HMS),并将粒径约10 nm的Au纳米晶体(NC)偶联到了聚醚上酰亚胺(PEI)修饰的HMS,通过静电相互作用。与Na5Lu9F_(32):Yb / Er HMS相比,Na5Lu9F_(32):Yb / Er @ Au HMS的上转换(UC)发光强度在低泵浦功率下要高得多,这是由于其局部场增强(LFE) Au NCs,并且具有非等离子体跃迁的表面等离子体激元共振(SPR)效应会产生热效应。理论上的离散偶极子逼近(DDA)仿真已证明了这两种效果。 Na5Lu9F_(32):Yb / Er @ Au HMS具有良好的生物相容性,表明它们是生物领域中有希望的候选者。特别是在近红外(NIR)激光照射下,由于Au NCs的热效应,阿霉素(DOX)迅速释放。在这种情况下,Na5Lu9F_(32):Yb / Er @ Au HMS表现出明显的近红外光控“开/关”药物释放模式。另外,细胞摄取的UC发光图像在近红外激光激发下显示出更亮的绿色和红色发射。因此,这种新颖的多功能(微孔,增强的UC发光和光触发药物释放)材料应有可能作为合适的靶向癌症治疗载体和生物成像。

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