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Synthetic bioreducible lipid‐based nanoparticles for miRNA delivery to mesenchymal stem cells to induce neuronal differentiation

机译:合成的可生物还原的脂质基纳米颗粒,用于将miRNA递送至间充质干细胞以诱导神经元分化

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MicroRNA (miRNA) functions in tissue regeneration and determines the fate of stem cells. Nanoparticle‐based miRNA delivery systems for therapeutic applications have been studied in clinical settings. However, gene delivery to stem cells is still a challenging issue. Lipid‐like nanoparticles produced using combinatorial approaches have recently been used for delivery of a variety of biologics. In this study, we investigated the ability of these lipids to deliver miRNA to human mesenchymal stem cells (hMSCs). First, small library screening of bioreducible lipids was performed using fluorophore‐conjugated miRNA to determine the optimal chemical structure for miRNA delivery to hMSCs. Next, miRNA‐9 (miR‐9), which promotes neuronal differentiation of stem cells, was delivered to hMSCs using the lipids identified from the library screening. Morphological changes of the cells and upregulation of neuronal marker genes were observed after the delivery of miR‐9. The synthetic bioreducible lipids are effective in facilitating miRNA delivery to hMSCs and promoting the neuronal differentiation.
机译:MicroRNA(miRNA)在组织再生中起作用,并决定干细胞的命运。在临床环境中已经研究了用于治疗应用的基于纳米颗粒的miRNA递送系统。然而,基因向干细胞的传递仍然是一个具有挑战性的问题。使用组合方法生产的类脂质纳米颗粒最近已用于递送多种生物制剂。在这项研究中,我们调查了这些脂质向人间充质干细胞(hMSCs)传递miRNA的能力。首先,使用荧光团偶联的miRNA对可生物还原脂质进行小文库筛选,以确定将miRNA递送至hMSC的最佳化学结构。接下来,使用从文库筛选中鉴定的脂质,将促进干细胞神经元分化的miRNA-9(miR-9)递送至hMSC。运送miR-9后观察到细胞的形态变化和神经元标记基因的上调。合成的可生物还原的脂质可有效促进miRNA传递至hMSC,并促进神经元分化。

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