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水稳定的基于 NaLuF4 的上转换纳米荧光粉,具有长期有效性,可用于多模式淋巴成像。

Water-stable NaLuF4-based upconversion nanophosphors with long-term validity for multimodal lymphatic imaging.

机构信息

Department of Chemistry & Institute of Biomedicine Science & State Key Laboratory of Molecular Engineering of Polymers, Fudan University, 220 Handan Road, Shanghai 200433, PR China.

出版信息

Biomaterials. 2012 Sep;33(26):6201-10. doi: 10.1016/j.biomaterials.2012.05.036. Epub 2012 Jun 18.

Abstract

Multimodal imaging is rapidly becoming an important tool for biomedical applications because it can compensate for the deficiencies of individual imaging modalities. Herein, multifunctional NaLuF(4)-based upconversion nanoparticles (Lu-UCNPs) were synthesized though a facile one-step microemulsion method under ambient condition. The doping of lanthanide ions (Gd(3+), Yb(3+) and Er(3+)/Tm(3+)) endows the Lu-UCNPs with high T(1)-enhancement, bright upconversion luminescence (UCL) emissions, and excellent X-ray absorption coefficient. Moreover, the as-prepared Lu-UCNPs are stable in water for more than six months, due to the protection of sodium glutamate and diethylene triamine pentacetate acid (DTPA) coordinating ligands on the surface. Lu-UCNPs have been successfully applied to the trimodal CT/MR/UCL lymphatic imaging on the modal of small animals. It is worth noting that Lu-UCNPs could be used for imaging even after preserving for over six months. In vitro transmission electron microscope (TEM), methyl thiazolyl tetrazolium (MTT) assay and histological analysis demonstrated that Lu-UCNPs exhibited low toxicity on living systems. Therefore, Lu-UCNPs could be multimodal agents for CT/MR/UCL imaging, and the concept can be served as a platform technology for the next-generation of probes for multimodal imaging.

摘要

多模态成像是生物医学应用中一种重要的工具,因为它可以弥补单一成像模式的不足。在此,通过在环境条件下简便的一步微乳液法合成了多功能 NaLuF(4) 基上转换纳米粒子 (Lu-UCNPs)。镧系离子 (Gd(3+)、Yb(3+) 和 Er(3+)/Tm(3+)) 的掺杂使 Lu-UCNPs 具有高 T(1) 增强、明亮的上转换发光 (UCL) 发射和优异的 X 射线吸收系数。此外,由于表面的谷氨酸钠和二乙烯三胺五乙酸 (DTPA) 配位配体的保护,所制备的 Lu-UCNPs 在水中稳定超过六个月。Lu-UCNPs 已成功应用于小动物模型的三模态 CT/MR/UCL 淋巴成像。值得注意的是,Lu-UCNPs 即使在保存超过六个月后也可用于成像。体外透射电子显微镜 (TEM)、甲基噻唑基四唑 (MTT) 测定和组织学分析表明,Lu-UCNPs 对活细胞表现出低毒性。因此,Lu-UCNPs 可以作为 CT/MR/UCL 成像的多模态造影剂,该概念可以作为下一代多模态成像探针的平台技术。

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