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Yb3+/Ho3+ Co-Doped Apatite Upconversion Nanoparticles to Distinguish Implanted Material from Bone Tissue

机译:Yb3 + / Ho3 +共掺杂磷灰石上转换纳米粒子从骨组织中区分植入材料

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摘要

The exploration of bone reconstruction with time requires the combination of a biological method and a chemical technique. Lanthanide Yb3+ and Ho3+ co-doped fluorapatite (FA:Yb3+/Ho3+) and hydroxyapatite (HA:Yb3+/Ho3+) particles with varying dopant concentrations were prepared by hydrothermal synthesis and thermal activation. Controllable green and red upconversion emissions were generated under 980 nm near-infrared excitation; the FA:Yb3+/Ho3+ particles resulted in superior green luminescence, while HA:Yb3+/Ho3+ dominated in red emission. The difference in the green and red emission behavior was dependent on the lattice structure and composition. Two possible lattice models were proposed for Yb3+/Ho3+ co-doped HA and FA along the hydroxyl channel and fluorine channel of the apatite crystal structure. We first reported the use of the upconversion apatite particles to clearly distinguish implanted material from bone tissue on stained histological sections of harvested in vivo samples. The superposition of the tissue image and material image is a creative method to show the material-tissue distribution and interrelation. The upconversion apatite particles and image superposition method provide a novel strategy for long-term discriminable fluorescence tracking of implanted material or scaffold during bone regeneration.
机译:随着时间的流逝,探索骨骼重建需要结合生物学方法和化学技术。通过水热合成和热活化制备了掺杂浓度不同的镧系元素Yb3 +和Ho3 +共掺杂的氟磷灰石(FA:Yb3 + / Ho3 +)和羟基磷灰石(HA:Yb3 + / Ho3 +)颗粒。在980 nm近红外激发下产生了可控的绿色和红色上转换发射; FA:Yb3 + / Ho3 +颗粒产生出色的绿色发光,而HA:Yb3 + / Ho3 +则以红色发光为主。绿色和红色发射行为的差异取决于晶格结构和组成。针对磷灰石晶体结构的羟基通道和氟通道上的Yb3 + / Ho3 +共掺杂的HA和FA,提出了两种可能的晶格模型。我们首先报道了上转换磷灰石颗粒的使用,以在收获的活体样本的染色组织学切片上清楚地区分植入的材料与骨组织。组织图像和材料图像的叠加是一种创新的方法,可以显示材料-组织的分布和相互关系。上转换磷灰石颗粒和图像叠加方法为骨再生过程中植入材料或支架的长期可分辨荧光跟踪提供了一种新的策略。

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