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Synthesis and evaluation of the targeted binding of RGD-containing PEGylated-PEI/DNA polyplex micelles as radiotracers for a tumor-targeting imaging probe

机译:含RGD的聚乙二醇化 - PEI / DNA多元用作肿瘤靶向成像探针的rγse的靶向结合的合成与评价

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摘要

Site-specific labeling of molecular imaging probes necessitates the topical administration of medications during the development of homogeneous tracers. Hence, receptor-mediated gene transfer is believed to be of enormous significance in the clinical translation of a promising gene delivery technique. Plasmid DNA (pEGFP) and polycations produce polyplexes, which can be proficient probes for molecular imaging when accompanied by a gamma emitter. Therefore, this study describes the physico-biological characterization of a radiotracer for tumor imaging in a HeLa tumor-bearing mouse model. Polyplex micelles were formed with pEGFP and Arg-Gly-Asp (RGD) peptide-modified poly(ethylene glycol)grafted polyethylenimine (E[c(RGDyK)](2)-PEG-g-PEI) and were labeled with Tc-99m for the in vivo study. The various PEG-g-PEIs prepared by controlling the PEG-to-PEI ratios were confirmed by H-1-NMR. The sizes and zeta potentials of the PEG-g-PEI/DNA polyplexes were 90-135 nm and 40-50 mV, respectively. The biophysical characterization of pEGFP in polyplexes was evaluated via various methods, including determination of the condensation efficiency of the polymers and the biodistribution, in vitro stability, in vivo application, and kinetics of the radiolabeled polyplexes. These characteristics were studied as a function of time using 3D-SPECT/CT images and by end-point scintillation counting. The polyplex of PEG-g-PEI/DNA fabricated with a PEG/PEI ratio of 10 : 1 and N/P = 1, i.e., PP10/D, exhibited the lowest cytotoxicity and the highest transfection efficiency. The cyclic-RGD peptide-modified polyplex PEG-g-PEI/DNA (RPP10/D) had significantly higher binding affinity and transfection efficiency than the non-targeting PP10/D did. 99mTc radio-labeled PP10/D and RPP10/D were prepared with high radiolabeling efficiency of greater than 95% and radiochemical stability above 80%, both in saline and in rat plasma, when stored for 24 h and were evaluated for their tumor-targeting capability and biodistribution. Through in vivo SPECT/CT images, it was determined that RPP10/D-Tc-99m presented higher uptake in the tumor than PP10/D-Tc-99m at all of the post-injection times studied. We found that the two tracers of radioactive complexes mainly accumulated in the liver, spleen and kidneys at 24 h after intravenous injection in female BALB/c nude mice bearing subcutaneous HeLa tumors. The accumulation of the site-specifically labeled RPP10/D-Tc-99m was lower in liver, kidney and spleen compared with non-targeting PP10/D-Tc-99m.
机译:特异性分子成像探针的特异性标记需要在均匀示踪剂的发育过程中局部给药。因此,受到受体介导的基因转移在有前途的基因递送技术的临床翻译中具有巨大意义。质粒DNA(PEGFP)和聚合物产生多重,这可能是当伴随γ发射器时分子成像的易碎探针。因此,该研究描述了在Hela肿瘤小鼠模型中肿瘤成像的放射性机构的物理生物学表征。用PEGFP和Arg-Gly-Asp(RGD)肽改性的聚(乙二醇)接枝聚乙烯亚胺(E [C(RGDYK)](2)-PEG-G-PEI)形成多铬胶束并用TC-99M标记对于体内研究。通过控制PEG-PEI比制备的各种PEG-G-PEI通过H-1-NMR确认。 PEG-G-PEI / DNA多种的尺寸和Zeta电位分别为90-135nm和40-50mV。通过各种方法评估PEGFP在多种聚合中的生物物理表征,包括测定聚合物的缩合效率和生物分布,体外稳定性,体内施用和放射性标记的多用途的动力学。使用3D Spect / CT图像和终点闪烁计数来研究这些特性作为时间的函数。用PEG / PEI比为10:1和N / P = 1,即PP10 / D制造的PEG-G-PEI / DNA的多分发表现出最低细胞毒性和最高的转染效率。环状RGD肽改性的多分发PEG-G-PEI / DNA(RPP10 / D)具有明显高的结合亲和力和转染效率,而不是非靶向PP10 / D.在储存24小时时,在盐水和大鼠等离子体中高于95%的高度放射性标记的PP10 / D和RPP10 / D的高放射性标记的PP10 / D和RPP10 / D。储存24小时并评估其肿瘤靶向的大鼠等离子体上以上80%以上的放射化学稳定性。能力和生物分布。在体内SPECT / CT图像中,确定RPP10 / D-TC-99M在所研究的所有注射后次数上比PP10 / D-TC-99M呈现肿瘤的更高摄取。我们发现,在静脉注射后24小时静脉注射患者皮下HELA肿瘤的雌性BALB / C裸鼠静脉注射后,放射性综合体的两个示踪剂主要积累在肝脏,脾脏和肾脏中。与非靶向PP10 / D-TC-99M相比,肝脏,肾脏和脾脏较低的位点 - 特异性标记的RPP10 / D-TC-99M的积累较低。

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  • 来源
    《RSC Advances》 |2015年第130期|共11页
  • 作者单位

    Natl Taiwan Univ Sci &

    Technol Grad Inst Appl Sci &

    Technol Taipei 106 Taiwan;

    Natl Taiwan Univ Sci &

    Technol Grad Inst Appl Sci &

    Technol Taipei 106 Taiwan;

    Natl Taiwan Univ Sci &

    Technol Grad Inst Appl Sci &

    Technol Taipei 106 Taiwan;

    Natl Chung Hsing Univ Dept Chem Engn Taichung 402 Taiwan;

    Natl Tsing Hua Univ Dept Chem Engn Hsinchu 320 Taiwan;

    Natl Tsing Hua Univ Dept Chem Engn Hsinchu 320 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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