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In Vivo Targeting and Positron Emission Tomography Imaging of Tumor with Intrinsically Radioactive Metal–Organic Frameworks Nanomaterials

机译:本征放射性金属有机骨架纳米材料对肿瘤的体内靶向和正电子发射断层扫描成像。

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摘要

Nanoscale metal–organic frameworks (nMOF) materials represent an attractive tool for various biomedical applications. Due to the chemical versatility, enormous porosity, and tunable degradability of nMOFs, they have been adopted as carriers for delivery of imaging and/or therapeutic cargos. However, the relatively low stability of most nMOFs has limited practical in vivo applications. Here we report the production and characterization of an intrinsically radioactive UiO-66 nMOF (89Zr-UiO-66) with incorporation of positron-emitting isotope zirconium-89 (89Zr). 89Zr-UiO-66 was further functionalized with pyrene-derived polyethylene glycol (Py–PGA-PEG) and conjugated with a peptide ligand (F3) to nucleolin for targeting of triple-negative breast tumors. Doxorubicin (DOX) was loaded onto UiO-66 with a relatively high loading capacity (1 mg DOX/mg UiO-66) and served as both a therapeutic cargo and a fluorescence visualizer in this study. Functionalized 89Zr-UiO-66 demonstrated strong radiochemical and material stability in different biological media. Based on the findings from cellular targeting and in vivo positron emission tomography (PET) imaging, we can conclude that 89Zr-UiO-66/Py–PGA-PEG-F3 can serve as an image-guidable, tumor-selective cargo delivery nanoplatform. In addition, toxicity evaluation confirmed that properly PEGylated UiO-66 did not impose acute or chronic toxicity to the test subjects. With selective targeting of nucleolin on both tumor vasculature and tumor cells, this intrinsically radioactive nMOF can find broad application in cancer theranostics.
机译:纳米级金属有机框架(nMOF)材料代表了各种生物医学应用的一种有吸引力的工具。由于nMOF的化学多功能性,巨大的孔隙率和可调节的可降解性,它们已被用作运送成像和/或治疗货物的载体。但是,大多数nMOF的相对较低的稳定性限制了其在体内的实际应用。在这里,我们报告了结合了正电子发射同位素锆89( 89 Zr )。 89 Zr-UiO-66进一步用pyr衍生的聚乙二醇(Py-PGA-PEG)进行功能化,并与肽配体(F3)偶联到核仁素上,以靶向于三阴性乳腺肿瘤。阿霉素(DOX)以相对较高的装载量(1 mg DOX / mg UiO-66)装载到UiO-66上,在本研究中既用作治疗性货物又用作荧光显像剂。功能化的 89 Zr-UiO-66在不同的生物介质中均具有较强的放射化学和材料稳定性。根据细胞靶向和体内正电子发射断层扫描(PET)成像的发现,我们可以得出结论, 89 Zr-UiO-66 / Py–PGA-PEG-F3可以作为图像指导,肿瘤选择性货物递送纳米平台。另外,毒性评估证实,适当的聚乙二醇化的UiO-66不会对测试对象产生急性或慢性毒性。通过将核仁素选择性靶向肿瘤血管和肿瘤细胞,这种固有的放射性nMOF可以在癌症治疗学中广泛应用。

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