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Luminescent up-converting nano-crystals for in vivo imaging

机译:发光的上转换纳米晶体,用于体内成像

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Luminescent nanoparticles are increasingly used as emitting labels in the design of fluorescence imaging probes, because of their outstanding optical properties, such as in the case of quantum dots, or their role in nano-assembling different functionalities, such as imaging, drug delivery, and therapy. In this work, the potentiality of up-converting nano-crystals for non invasive fluorescence imaging of small animal is explored. These up-converting nano-crystals are lanthanide doped oxide matrices, such as Y_2O_3:Er,Yb compositions. They are produced by a bottom-up process and a thermal treatment. They are functionalized by the coating of a thin polysiloxane shell layer, which can be further derivatized in order to graft biomolecules such as antibodies, peptides, or DNA. Contrary to classical luminescent particles for which light emission occurs at a wavelength superior to that of excitation, these materials emit at 564 and 661 nm upon excitation at 980 or 815 nm. These unique emission properties, due to a multi-photonic process, can allow imaging without any auto-fluorescence from the tissues in the wavelength detection window. Experiments in phantoms mimicking the optical absorption and diffusion of tissues show that these crystals can be detected 4 mm deep at a 10 mg/mL concentration. Luminescence measurements in mouse and the potentiality of these nano-crystals for in vivo imaging are discussed.
机译:发光纳米粒子由于其出色的光学特性(例如在量子点的情况下)或它们在纳米组装不同功能(例如成像,药物传递和修饰)中的作用,越来越多地被用作荧光成像探针设计中的发射标记。治疗。在这项工作中,探索了上转换纳米晶体对小动物无创荧光成像的潜力。这些上转换纳米晶体是镧系元素掺杂的氧化物基质,例如Y_2O_3:Er,Yb组成。它们是通过自下而上的过程和热处理生产的。它们通过薄的聚硅氧烷外壳层的涂层而功能化,该薄的聚硅氧烷外壳层可以进一步衍生化,以移植生物分子,例如抗体,肽或DNA。与经典发光粒子相反,对于经典发光粒子而言,其发光发生在比激发光更高的波长处,这些材料在980或815 nm激发时会在564和661 nm处发射。由于采用了多光子工艺,这些独特的发射特性可以实现成像,而波长检测窗口中的组织不会产生任何自发荧光。模拟人体组织的光吸收和扩散的体模实验表明,可以以10 mg / mL的浓度检测到4毫米深的这些晶体。讨论了小鼠的发光测量以及这些纳米晶体在体内成像的潜力。

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