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高胶体稳定性的三模态 I 放射性标记的 PEG-奈立膦酸盐包覆的上转换/磁性生物成像纳米探针。

Highly colloidally stable trimodal I-radiolabeled PEG-neridronate-coated upconversion/magnetic bioimaging nanoprobes.

机构信息

Institute of Macromolecular Chemistry, Czech Academy of Sciences, Heyrovského nám. 2, 162 06, Prague 6, Czech Republic.

Department of Experimental Physics, Wroclaw University of Science and Technology, Wybrzeze Wyspianskiego 27, 50-370, Wroclaw, Poland.

出版信息

Sci Rep. 2020 Nov 18;10(1):20016. doi: 10.1038/s41598-020-77112-z.

Abstract

"All-in-one" multifunctional nanomaterials, which can be visualized simultaneously by several imaging techniques, are required for the efficient diagnosis and treatment of many serious diseases. This report addresses the design and synthesis of upconversion magnetic NaGdF:Yb/Er(Tm) nanoparticles by an oleic acid-stabilized high-temperature coprecipitation of lanthanide precursors in octadec-1-ene. The nanoparticles, which emit visible or UV light under near-infrared (NIR) irradiation, were modified by in-house synthesized PEG-neridronate to facilitate their dispersibility and colloidal stability in water and bioanalytically relevant phosphate buffered saline (PBS). The cytotoxicity of the nanoparticles was determined using HeLa cells and human fibroblasts (HF). Subsequently, the particles were modified by Bolton-Hunter-neridronate and radiolabeled by I to monitor their biodistribution in mice using single-photon emission computed tomography (SPECT). The upconversion and the paramagnetic properties of the NaGdF:Yb/Er(Tm)@PEG nanoparticles were evaluated by photoluminescence, magnetic resonance (MR) relaxometry, and magnetic resonance imaging (MRI) with 1 T and 4.7 T preclinical scanners. MRI data were obtained on phantoms with different particle concentrations and during pilot long-time in vivo observations of a mouse model. The biological and physicochemical properties of the NaGdF:Yb/Er(Tm)@PEG nanoparticles make them promising as a trimodal optical/MRI/SPECT bioimaging and theranostic nanoprobe for experimental medicine.

摘要

“一体化”多功能纳米材料,能够同时被几种成像技术可视化,是许多严重疾病高效诊断和治疗所必需的。本报告介绍了通过十八烯中镧系前体的油酸稳定高温共沉淀合成上转换磁 NaGdF:Yb/Er(Tm)纳米粒子的设计和合成。这些纳米粒子在近红外(NIR)照射下发射可见光或紫外光,通过内部合成的 PEG-替诺昔康进行修饰,以提高其在水中和生物分析相关磷酸盐缓冲盐水(PBS)中的分散性和胶体稳定性。使用 HeLa 细胞和人成纤维细胞(HF)测定纳米粒子的细胞毒性。随后,通过 Bolton-Hunter-替诺昔康对颗粒进行修饰,并通过 I 进行放射性标记,以使用单光子发射计算机断层扫描(SPECT)监测其在小鼠中的分布。通过光致发光、磁共振(MR)弛豫率和 1 T 和 4.7 T 临床前扫描仪的磁共振成像(MRI)评估了 NaGdF:Yb/Er(Tm)@PEG 纳米粒子的上转换和顺磁性质。在具有不同颗粒浓度的体模和在实验小鼠模型的长时间体内观察期间获得了 MRI 数据。NaGdF:Yb/Er(Tm)@PEG 纳米粒子的生物学和物理化学性质使它们成为实验医学中光学/MRI/SPECT 三模态生物成像和治疗性纳米探针的有前途的候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dff0/7675969/383f2c59cc09/41598_2020_77112_Fig1_HTML.jpg

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