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首页> 外文期刊>Bioconjugate Chemistry >Cell-Penetrating Peptides and Peptide Nucleic Acid-Coupled MRI Contrast Agents: Evaluation of Cellular Delivery and Target Binding
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Cell-Penetrating Peptides and Peptide Nucleic Acid-Coupled MRI Contrast Agents: Evaluation of Cellular Delivery and Target Binding

机译:细胞穿透肽和肽核酸偶联的MRI造影剂:细胞传递和靶标结合的评估。

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摘要

Molecular imaging of cells and cellular processes can be achieved by tagging intracellular targets such as receptors, enzymes, or mRNA. Seeking to visualize the presence of specific mRNAs by magnetic resonance (MR) imaging, we coupled peptide nucleic acids (PNA) with gadolinium-based MR contrast agents using cell-penetrating peptides for intracellular delivery. Antisense to mRNA of DsRed2 protein was used as proof of principle. The conjugates were produced by continuous solid-phase synthesis followed by chelation with gadolinium. Their cellular uptake was confirmed by fluorescence microscopy and spectroscopy as well as by MR imaging of labeled cells. The cell-penetrating peptide D-Tat.57-49 was selected over two other derivatives of HIV-1 Tat peptide, based on its superior intracellular delivery of the gadolinium-based contrast agents. Further improved delivery of conjugates was achieved upon coupling peptide nucleic acids (antisense to mRNA of DsRed2 protein and nonsense with no natural counterpart). Significant enhancement in MR contrast was obtained in cells labeled with concentrations as low as 2.5 /uM of these agents. Specific binding of the targeting PNA containing conjugate to its complementary oligonucleotide sequence was proven by in vitro cell-free assay. In contrast, a lack of specific enrichment was observed in transgenic cells containing the target due to nonspecific vesicular entrapment of contrast agents. Preliminary biodistribution studies showed conjugate-related fluorescence in several organs, especially the liver and bladder, indicating high mobility of the agent in spite of its high molecular weight. No conjugate related toxicity was observed. These results are encouraging, as they warrant further molecular optimization and consecutive specificity studies in vivo of this new generation of contrast agents.
机译:细胞和细胞过程的分子成像可通过标记细胞内靶标(例如受体,酶或mRNA)来实现。为了通过磁共振(MR)成像可视化特定mRNA的存在,我们使用细胞穿透性肽进行细胞内递送,将肽核酸(PNA)与基于g的MR造影剂偶联。对DsRed2蛋白mRNA的反义被用作原理证明。通过连续的固相合成,然后与g螯合来产生缀合物。通过荧光显微镜和光谱以及标记细胞的MR成像证实了它们的细胞摄取。基于穿透细胞的肽D-Tat.57-49优于HIV-1 Tat肽的其他两种衍生物,这是基于其superior基造影剂在细胞内的卓越传递。通过偶联肽核酸(对DsRed2蛋白的mRNA反义且无天然对应物的无义),偶联物的递送进一步改善。在这些试剂的浓度低至2.5μM的细胞中,MR对比度得到了显着提高。通过体外无细胞试验证明了含有靶向PNA的缀合物与其互补寡核苷酸序列的特异性结合。相反,由于造影剂的非特异性囊泡包裹,在含有靶标的转基因细胞中观察到缺乏特异性富集。初步的生物分布研究表明,与缀合物相关的荧光存在于多个器官中,尤其是肝脏和膀胱,这表明该试剂尽管分子量很高,但仍具有很高的迁移率。没有观察到与缀合物有关的毒性。这些结果令人鼓舞,因为它们保证了这种新一代造影剂在体内的进一步分子优化和连续特异性研究。

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