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Enzyme-Controlled Intracellular Self-Assembly of 18F Nanoparticles for Enhanced MicroPET Imaging of Tumor

机译:酶控制的18F纳米粒子的细胞内自组装,可增强肿瘤的MicroPET成像。

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摘要

Herein, we report the development of a new “smart” radioactive probe (i.e., 1) which can undergo furin-controlled condensation and self-assembly of radioactive nanoparticles (i.e., 1-NPs) in tumor cells and its application for enhanced microPET imaging of tumors in nude mice co-injected with its cold analog (i.e., 1-Cold). Furin-controlled condensation of 1-Cold and self-assembly of its nanoparticles (i.e., 1-Cold-NPs) in vitro were validated and characterized with HPLC, mass spectra, SEM, and TEM analyses. Cell uptake studies showed that both 1 and 1-Cold have good cell permeability. TEM images of 1-Cold-treated MDA-MB-468 cells directly uncovered that the intracellular 1-Cold-NPs were at/near the location of furin (i.e., Golgi bodies). MTT results indicated that 50 µM 1-Cold did not impose cytotoxicity to MDA-MB-468 cells up to 12 hours. MicroPET imaging of MDA-MB-468 tumor-bearing mice indicated that mice co-injected with 1 and 1-Cold showed higher uptake and longer attenuation of the radioactivity in tumors than those mice only injected with same dosage of 1. Tumor uptake ratios of 1 between these two groups of mice reached the maximum of 8.2 folds at 240 min post injection. Biodistribution study indicated that the uptake ratios of 1 in kidneys between these two groups continuously increased and reached 81.9 folds at 240 min post injection, suggesting the formation of radioactive NPs (i.e., 1-NPs) in MDA-MB-468 tumors of mice co-injected with 1 and 1-Cold. And the nanoparticles were slowly digested and secreted from the tumors, accumulating in the kidneys. Our ''smart'' probe (i.e., 1), together with the strategy of co-injection, might help researchers trace the biomarkers of interest within a longer time window.
机译:在此,我们报告了一种新的“智能”放射性探针(即 1 )的开发,该探针可以进行​​弗林蛋白酶控制的缩合和放射性纳米颗粒(即 1-NPs < / strong>)及其在与冷类似物(即 1-Cold )共同注射的裸鼠中增强microPET成像的应用。验证了 1-Cold 的弗林蛋白酶控制的缩合和其纳米颗粒(即 1-Cold-NPs )的自组装在体外的性能,并通过HPLC,质谱, SEM和TEM分析。细胞摄取研究表明 1 1-Cold 都具有良好的细胞通透性。经 1-冷处理的MDA-MB-468细胞的TEM图像直接发现细胞内 1-Cold-NP 位于弗林蛋白酶的位置/附近(即高尔基体)身体)。 MTT结果表明,长达12小时,50 µM 1-Cold 对MDA-MB-468细胞没有细胞毒性。对MDA-MB-468荷瘤小鼠的MicroPET成像表明,与 1 1-Cold 共同注射的小鼠比肿瘤具有更高的摄取和更长的放射性衰减这些老鼠只注射了相同剂量的 1 。两组小鼠在注射后240分钟的肿瘤摄取率 1 达到最大8.2倍。生物分布研究表明,两组之间肾脏中 1 的摄取率持续增加,并在注射后240分钟达到81.9倍,这表明形成了放射性NP(即 1-NPs < / strong>)与 1 1-Cold 一起注射的小鼠的MDA-MB-468肿瘤中。纳米颗粒被缓慢消化并从肿瘤中分泌出来,并累积在肾脏中。我们的“智能”探针(即 1 )以及共注入策略可以帮助研究人员在更长的时间内跟踪感兴趣的生物标记。

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