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Delivery of dual miRNA through CD44-targeted mesoporous silica nanoparticles for enhanced and effective triple-negative breast cancer therapy

机译:通过CD44靶向介孔二氧化硅纳米粒子递送双miRNA,用于增强和有效的三阴性乳腺癌疗法

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摘要

The development of new therapeutic strategies to target triple-negative breast cancer (TNBC) is in much demand to overcome the roadblocks associated with the existing treatment procedures. In this regard, therapies targeting the CD44 receptor have drawn attention for more than a decade. MicroRNAs (miRNAs) modulate post-transcriptional gene regulation and thus, the correction of specific miRNA alterations using miRNA mimics or antagomiRs is an emerging strategy to normalize the genetic regulation in the tumor microenvironment. It has been acknowledged that miR-34a is downregulated and miR-10b is upregulated in TNBC, which promotes tumorigenesis and metastatic dissemination. However, there are a few barriers related to miRNA delivery. Herein, we have introduced tailored mesoporous silica nanoparticles (MSNs) for the co-delivery of miR-34a-mimic and antisense-miR-10b. MSN was functionalized with a cationic basic side chain and then loaded with the dual combination to overexpress miR-34a and downregulate miR-10b simultaneously. Finally, the loaded MSNs were coated with an hyaluronic acid-appended PEG-PLGA polymer for specific targeting. The cellular uptake, release profile, and subsequent effect in TNBC cells were evaluated. In vitro and in vivo studies demonstrated high specificity in TNBC tumor targeting, leading to efficient tumor growth inhibition as well as the retardation of metastasis, which affirmed the clinical application potential of the system.
机译:为靶向三重阴性乳腺癌(TNBC)的新治疗策略的发展是有多要求克服与现有治疗程序相关的障碍。在这方面,靶向CD44受体的疗法引起了超过十年的注意。 MicroRNAs(miRNA)调节后转录后基因调节,因此,使用miRNA模拟物或抗血症的特定miRNA改变的校正是一种新出现的策略,以使肿瘤微环境中的遗传调节标准化。已经承认,下调miR-34a,在TNBC中上调miR-10b,促进肿瘤发生和转移性散发。然而,有一些与miRNA递送有关的障碍。在此,我们已经引入了定制的介孔二氧化硅纳米颗粒(MSN),用于CIR-34A-MIMIC和反义-MIR-10B的共递送。 MSN用阳离子碱性侧链官能化,然后用双重组合加载到过表达MIR-34A并同时下调MIR-10B。最后,涂覆负载的MSN涂有透明质酸依附于PEG-PLGA聚合物,用于特异性靶向。评估细胞吸收,释放曲线和在TNBC细胞中的后续效果。体外和体内研究表明,在TNBC肿瘤靶向中表现出高特异性,导致高效的肿瘤生长抑制以及转移的延迟,这肯定了系统的临床应用潜力。

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