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Anti-CD24 bio Modified PEGylated Gold Nanoparticles as Targeted Computed Tomography Contrast Agent

机译:抗CD24生物修饰的聚乙二醇化金纳米粒子作为靶向计算机断层扫描造影剂

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摘要

>Purpose: Molecular imaging is one of the import methods for recognition of cancer at the early stage in order to enhance the capacity of remedy. This study was aimed to introduce a new contrast agent that was targeted with CD24 so as to improve the CT scan detection of cancer cells with higher CD24 expression.>Methods: The surface modifications of gold nanoparticles (Au-NPs) were done with long PEG (HS-PEG-CH3O) and short PEG (HS-PEG-COOH) chains to enhance their stability and capacity for immobilization of different antibodies. MTT assay was carried out to assess the biocompatibility of the NPs. The obtained contrast agent was implemented in the targeted CT imaging based on in vitro and in vivo studies of breast cancer.>Results: The results revealed that the attached CD24 to the cell surface of PEGylated Au-NPs could enhance significantly the cells CT number (40.45 HU in 4T1, while it was 16.61 HU in CT26) It was shown that the attenuation coefficient of the molecularly targeted cells was more than 2 times excessive than the control groups. Further, the tumor region in model of xenograft tumor has higher density compare to the omnipaque groups, 60 min after injection (45 Hu vs.81 Hu). These results showed that the nanoparticles stayed in tumor region for longer time.>Conclusion: It is predicted that the synthesized nanoparticle can be used as computed tomography contrast agent. Also, it can be used to identify the tumor cells with higher expression of CD24 at the early stages more efficiently compare to the other routine methods.
机译:>目的:分子影像学是早期识别癌症以增强治疗能力的重要手段之一。这项研究旨在引入一种针对CD24的新型造影剂,以改善具有较高CD24表达的癌细胞的CT扫描检测。>方法:金纳米颗粒(Au-NPs)的表面修饰)是使用长PEG(HS-PEG-CH3O)和短PEG(HS-PEG-COOH)链完成的,以增强其稳定性和固定不同抗体的能力。进行MTT测定以评估NP的生物相容性。基于乳腺癌的体内外研究,将得到的造影剂用于靶向CT成像。>结果:结果表明,CD24附着在PEG化Au-NPs细胞表面上可以增强明显地,细胞的CT数(4T1中为40.45 HU,而CT26中为16.61 HU)表明,分子靶向细胞的衰减系数是对照组的2倍以上。此外,与全能组相比,异种移植肿瘤模型中的肿瘤区域在注射后60分钟时密度更高(45 Hu vs. 81 Hu)。这些结果表明纳米粒子在肿瘤区域停留的时间更长。>结论:预计合成的纳米粒子可以用作计算机断层扫描造影剂。而且,与其他常规方法相比,它可以在早期更有效地鉴定CD24较高表达的肿瘤细胞。

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