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Rationally designed upconversion nanoprobe for simultaneous highly sensitive ratiometric detection of fluoride ions and fluorosis theranostics

机译:合理设计的上转换纳米探针,可同时进行氟离子和氟中毒诊断学的高灵敏度比例检测

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For many years, fluorosis has been known as a worldwide disease which seriously diminishes quality of life through skeletal embrittlement and hepatic damage. Aiming to develop novel drugs for simultaneous fluorosis diagnosis and therapy, in this work we explore the feasibility of a novel pyrogallic acid–titanium( IV ) complex-modified upconversion nanoprobe (UCNP–PA–Ti) for F ~(?) capture and real-time quantification. Utilizing the strong interaction between Ti ~(4+) and F ~(?) , the modified PA–Ti decomposes in F ~(?) -containing solution, which not only weakens the FRET but results in upconversion luminescence (UCL) recovery. Both in vitro and in vivo experiments demonstrate a highly sensitive F ~(?) UCL response and therapeutic efficiency, which was promising for successful UCL image monitoring and the therapeutic process. Long blood circulation time and low toxicity ensured their safe application for fluorosis theranostics. Our work provides a new possibility for F ~(?) concentration detection within fluorosis therapeutic periods and encourages the development of novel drugs for fluorosis theranostics.
机译:多年以来,氟中毒一直被认为是一种全球性疾病,它通过骨骼脆化和肝损伤严重降低了生活质量。为了开发可同时诊断和治疗氟中毒的新药,在这项工作中,我们探索了一种新型焦焦酸-钛(IV)复杂修饰的上转换纳米探针(UCNP-PA-Ti)进行F〜(?)捕获和检测的可行性。时间量化。利用Ti〜(4+)与F〜(?)之间的强相互作用,改性的PA–Ti在含F〜(?)的溶液中分解,这不仅削弱了FRET,而且导致了上转换发光(UCL)的恢复。体外和体内实验均显示出高度敏感的F〜(UC)UCL反应和治疗效率,这对于成功的UCL图像监测和治疗过程很有希望。较长的血液循环时间和低毒性确保了它们在氟中毒治疗中的安全应用。我们的工作为在氟中毒治疗期间检测F〜(?)浓度提供了一种新的可能性,并鼓励开发用于氟中毒治疗药物的新药。

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