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One-pot synthesis of Ln(3+)-doped porous BiF3@PAA nanospheres for temperature sensing and pH-responsive drug delivery guided by CT imaging

机译:合成多孔BiF3@PAA Ln(3 +)再版温度传感和团簇pH-responsive药指导下CT成像

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摘要

The design and synthesis of responsive inorganic nanocapsules have attracted intensive research interest in cancer treatment. The combination of non-invasive diagnosis and chemotherapy into a single theranostic nanoplatform is prospective in the biomedical field. In this work, a polyacrylic acid (PAA)-functionalized porous BiF3:Yb,Er nanocarrier was constructed via a straightforward one-pot solvothermal strategy. Compared with the undoped BiF3 sub-microspheres, the lanthanide ion (Ln(3+)) doping endowed the BiF3 material with a smaller size and increased BET specific surface area and pore volume, which make it suitable as a drug carrier. It was found that the synthesized nanomaterial could effectively relieve the side effects of doxorubicin (DOX) and exhibited pH-dependent DOX loading and release. Its satisfactory biocompatibility and efficient tumor inhibition were emphasized by a series of in vitro/in vivo experiments. In addition, the synthesized nanomaterial exhibited favorable CT contrast efficacy due to the excellent X-ray attenuation coefficient of Bi. Moreover, characteristic upconversion luminescence and temperature sensing in a wide temperature range were realized over the synthesized BiF3:Yb,Er sample. Therefore, carboxyl-functionalized BiF3:Yb,Er can be expected to be an ideal candidate in the fabrication of temperature sensing and multifunctional theranostic nanoplatforms.
机译:无机反应的设计和合成nanocapsules吸引了密集的研究对癌症治疗的兴趣。非侵入性诊断和化疗单一theranostic nanoplatform前瞻性生物医学领域。酸(PAA)功能化多孔BiF3: Yb, Ernanocarrier是通过一个简单的构造锅solvothermal策略。无掺杂BiF3 sub-microspheres,镧系元素离子(Ln(3 +))掺杂赋予了BiF3材料小尺寸和增加选择特定的表面面积和孔隙体积,使其适合作为药物载体。纳米材料能有效地缓解阿霉素的影响(阿霉素)和展出pH-dependent阿霉素加载和释放。良好的生物相容性和高效的肿瘤抑制被一系列的强调体外/体内实验。合成纳米材料表现出良好的CT对比效果由于出色的x射线Bi的衰减系数。上转换发光和特点温度传感在宽的温度范围内在合成BiF3意识到:Yb,呃样本。BiF3: Yb,可以将一个理想候选人的加工温度传感和多功能theranosticnanoplatforms。

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