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A Facile Approach to Upconversion Crystalline CaF2:Yb3+Tm3+@mSiO2 Nanospheres for Tumor Therapy

机译:一种上转换晶体CaF2:Yb3 +Tm3 + @ mSiO2纳米球用于肿瘤治疗的简便方法

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摘要

A new facile approach, namely chemical-assisted sol-gel growth (CASGG), was successfully developed to induce the formation of fine CaF2:Yb3+, Tm3+ nanocrytals within the pore channels of mesoporous silica (mSiO2) nanoparticles. A series of upconversion photoluminescent crystalline CaF2:Yb3+,Tm3+@mSiO2 nanospheres with controlled diameters from ~65 nm to ~290 nm were fabricated. All nanospheres presented sound cyto-compatibility and unique ratiometric spectral monitoring functionalities for drug release kinetics. The nanospheres with smallest dimension (UCNP-2.5, ~65nm) induced the most sustained DOX release kinetics. More importantly, the in-vitro study demonstrated that the DOX loaded UCNP-2.5 nanopheres presented the strongest anti-cancer efficacy to MCF-7 human breast cancer cells due to its stronger penetration ability to cell nuclei due to the size effect.
机译:成功地开发了一种新的简便方法,即化学辅助溶胶-凝胶生长(CASGG),以诱导精细的CaF2:Yb 3 + ,Tm 3 + 纳米晶体的形成。在介孔二氧化硅(mSiO2)纳米颗粒的孔道中。一系列上转换光致发光晶体CaF2:Yb 3 + ,Tm 3 + @ mSiO2纳米球,直径从 65 nm到制备了约290 nm。所有纳米球均具有良好的细胞相容性和独特的比率光谱监测功能,可用于药物释放动力学。尺寸最小的纳米球(UCNP-2.5, 65nm)诱导了最持久的DOX释放动力学。更重要的是,体外研究表明,由于大小效应,载有DOX的UCNP-2.5纳米颗粒对MCF-7人乳腺癌细胞具有最强的抗癌功效,这是由于其对细胞核的穿透能力更强。

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