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首页> 外文期刊>Nanoscale >LaF3:Ln mesoporous spheres: controllable synthesis, tunable luminescence and application for dual-modal chemo-/photo-thermal therapy
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LaF3:Ln mesoporous spheres: controllable synthesis, tunable luminescence and application for dual-modal chemo-/photo-thermal therapy

机译:LaF3: Ln介孔范围:可控合成、可调的发光及其应用dual-modal化疗- /光热的疗法

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In this report, uniform LaF3:Ln mesoporous spheres have been synthesized by a facile and mild in situ ion-exchange method using yolk-like La(OH)3:Ln mesoporous spheres as templates, which were prepared through a self-produced bubble-template route. It was found that the structures of the final LaF3:Ln can simply be tuned by adding a polyetherimide (PEI) reagent. LaF3:Ln hollow mesoporous spheres (HMSs) and LaF3:Ln flower-like mesoporous spheres (FMSs) were obtained when assisted by PEI and in the absence of PEI. The up-conversion (UC) luminescence results reveal that the doping of Nd~(3+) ions in LaF3: Ln can markedly influence the UC emissions of the products. It is interesting that an obvious thermal effect is achieved due to the energy back-transfer from Tm~(3+) to Nd~(3+) ions under 980 nm near-infrared (NIR) irradiation. The LaF3:Yb/Er/Tm/Nd HMSs show good biocompatibility and sustained doxorubicin (DOX) release properties. In particular, upon 980 nm NIR irradiation, the photothermal effect arising from the Nd~(3+) doping induces a faster DOX release from the drug release system. Moreover, UC luminescence images of LaF3:Yb/Er/Tm/Nd HMSs uptaken by MCF-7 cells exhibit apparent green emission under 980 nm NIR irradiation. Such a multifunctional carrier combining UC luminescence and hyperthermia with the chemotherapeutic drugs should be of high potential for the simultaneous anti-cancer therapy and cell imaging.
机译:在这份报告中,统一LaF3: Ln介孔的球体合成了肤浅和温和吗现场使用yolk-like离子交换方法洛杉矶(OH) 3: Ln介孔球体作为模板准备通过自产bubble-template路线。结构的最后LaF3: Ln可以简单通过添加polyetherimide调谐(PEI)试剂。LaF3: Ln (hms)和介孔空心球LaF3: Ln如花似玉介孔球体(fms)获得当裴和协助的没有裴。发光的结果表明,掺杂Nd ~(3 +)离子LaF3: Ln可以显著影响加州大学排放的产品。一个明显的热效应是有趣的由于能源支持以转移来实现Tm ~(3 +)和~(3 +)离子在980海里近红外(NIR)辐照。LaF3: Yb / Er / Tm / Nd hms显示良好的生物相容性和持续的阿霉素(阿霉素)释放属性。辐射,光照效应引起的Nd ~(3 +)掺杂导致更快的释放阿霉素从药物释放系统。发光的图像LaF3: Yb / Er / Tm / Nd hms实验通过MCF-7细胞表现出明显的绿色排放在980 nm近红外光谱辐射。多功能载体结合加州大学发光与化疗药物和高热应该同时高潜力的抗癌疗法和细胞成像。

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