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Pd nanosheets with their surface coordinated by radioactive iodide as a high-performance theranostic nanoagent for orthotopic hepatocellular carcinoma imaging and cancer therapy

机译:Pd纳米片的表面由放射性碘化物配位是用于原位肝细胞癌成像和癌症治疗的高性能治疗纳米剂

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摘要

Radiolabeled nanoparticles (NPs), taking advantage of nanotechnology and nuclear medicine, have shown attractive potential for cancer diagnosis and therapy. However, the high background signal in the liver and long-term toxic effects of radioisotopes caused by the nonselective accumulation of radiolabeled nanoparticles in organs have become the major challenges. Here, we report a pH-sensitive multifunctional theranostic platform with radiolabeled Pd nanosheets through a simple mixture of ultra-small Pd nanosheets and radioisotopes utilizing the strong adsorption of 131I and 125I on their surfaces (denoted as 131I–Pd–PEG or 125I–Pd–PEG). Systematic studies reveal that the labeling efficiency is higher than 98% and the adsorption of radioiodine is more stable in an acidic environment. In vivo studies further validate the pH-dependent behavior of this platform and the enhanced retention of radioisotopes in tumors due to the acidic microenvironment. Single photon emission computed tomography (SPECT) images with zero background were successfully achieved in a subcutaneous 4T1 tumor model, an orthotopic LM3 tumor model, and even in a Mst1/2 double-knockout hepatoma model. Moreover, the application of radiolabeled Pd nanosheets for photoacoustic (PA) imaging, and combined photothermal and radiotherapy was also explored. Therefore, this study provides a simple and efficient strategy to solve the critical high background issue of radiolabeled nanoparticles and shows enormous potential for clinical applications.
机译:利用纳米技术和核医学的优势,放射性标记的纳米颗粒(NPs)在癌症诊断和治疗方面显示出诱人的潜力。然而,肝脏中的高背景信号和由放射性标记的纳米粒子在器官中的非选择性积累引起的放射性同位素的长期毒性作用已成为主要挑战。在这里,我们报告了一个pH敏感的多功能治疗学平台,该平台具有放射性标记的Pd纳米片,通过超小Pd纳米片和放射性同位素的简单混合物,利用 131 I和 125 的强吸附性I在它们的表面上(表示为 131 I–Pd–PEG或 125 I–Pd–PEG)。系统研究表明,在酸性环境中,标记效率高于98%,放射性碘的吸附更为稳定。体内研究进一步证实了该平台的pH依赖性行为以及由于酸性微环境而增加了放射性同位素在肿瘤中的保留。在皮下4T1肿瘤模型,原位LM3肿瘤模型甚至Mst1 / 2双敲除肝癌模型中,成功实现了零背景的单光子发射计算机断层扫描(SPECT)图像。此外,还探索了放射性标记的Pd纳米片在光声(PA)成像以及光热和放射疗法相结合中的应用。因此,这项研究提供了一种简单有效的策略来解决放射性标记纳米颗粒的关键高本底问题,并显示出巨大的临床应用潜力。

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