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A Tumor-specific MicroRNA Recognition System Facilitates the Accurate Targeting to Tumor Cells by Magnetic Nanoparticles

机译:特定于肿瘤的MicroRNA识别系统有助于通过磁性纳米粒子准确靶向肿瘤细胞。

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摘要

Targeted therapy for cancer is a research area of great interest, and magnetic nanoparticles (MNPs) show great potential as targeted carriers for therapeutics. One important class of cancer biomarkers is microRNAs (miRNAs), which play a significant role in tumor initiation and progression. In this study, a cascade recognition system containing multiple plasmids, including a Tet activator, a lacI repressor gene driven by the TetOn promoter, and a reporter gene repressed by the lacI repressor and influenced by multiple endogenous miRNAs, was used to recognize cells that display miRNA signals that are characteristic of cancer. For this purpose, three types of signal miRNAs with high proliferation and metastasis abilities were chosen (miR-21, miR-145, and miR-9). The response of this system to the human breast cancer MCF-7 cell line was 3.2-fold higher than that to the human breast epithelial HBL100 cell line and almost 7.5-fold higher than that to human embryonic kidney HEK293T cells. In combination with polyethyleneimine-modified MNPs, this recognition system targeted the tumor location in situ in an animal model, and an ~42% repression of tumor growth was achieved. Our study provides a new combination of magnetic nanocarrier and gene therapy based on miRNAs that are active in vivo, which has potential for use in future cancer therapies.
机译:癌症的靶向治疗是一个非常受关注的研究领域,磁性纳米颗粒(MNP)作为治疗的靶向载体显示出巨大的潜力。一类重要的癌症生物标志物是microRNA(miRNA),在肿瘤的发生和发展中起着重要的作用。在这项研究中,使用包含多个质粒的级联识别系统,包括Tet激活子,由TetOn启动子驱动的lacI阻遏物基因和受lacI阻遏物阻遏并受多种内源性miRNA影响的报告基因,来识别显示miRNA信号是癌症的特征。为此,选择了三种具有高增殖和转移能力的信号miRNA(miR-21,miR-145和miR-9)。该系统对人乳腺癌MCF-7细胞系的应答比对人乳腺上皮HBL100细胞系的应答高3.2倍,并且对人胚胎肾HEK293T细胞的应答几乎高7.5倍。与聚乙烯亚胺修饰的MNP结合使用时,该识别系统靶向动物模型中的肿瘤原位,并实现了约42%的肿瘤生长抑制。我们的研究提供了一种磁性纳米载体和基于在体内具有活性的miRNA的基因治疗的新组合,这在未来的癌症治疗中具有潜力。

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