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A flow cytometric approach to study the mechanism of gene delivery to cells by gemini-lipid nanoparticles: an implication for cell membrane nanoporation

机译:流式细胞仪方法研究双子脂脂质纳米粒将基因传递到细胞的机制:对细胞膜纳米孔的影响

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Gemini-lipid nanoparticles have been received major attention recently as non-viral delivery systems due to their successful non-invasive gene delivery through tough barriers such as eye and skin. The aim of this study was to evaluate non-viral gene delivery by a series of dicationic gemini surfactant-phospholipid nanoparticles (GL-NPs) and to explore their mechanism of interaction with cellular membranes of murine PAM212 epidermal keratinocytes. NPs containing pCMV-tdTomato plasmid encoding red fluorescent protein (RFP) were prepared using 12 different gemini surfactants (m-s-m, with m = 12, 16 and 18C alkyl tail and s = 3 and 7C polymethylene spacer group and 7C substituted spacers with 7NH and 7NCH3) and dioleoylphosphatidylethanolamine helper lipid. RFP gene expression and cell viability status were evaluated using flow cytometry. MitoTracker Deep Red mitochondrial stain and the cell impermeable Sytox red nuclear stain were used as indicators of cell viability and cell membrane integrity, respectively. No significant viability loss was detected in cells transfected with 18-3-18, 18-7-18, 18-7NH-18, and 18-7NCH3-18 NPs, whereas a significant reduction of viability was detected in cells treated with 12-3-12, 12-7-12, 12-7NH-12, 16-7NH-16, or 16-7NCH3-16 GL-NPs. Compared to Lipofectamine Plus, 18-3-18 GL-NPs showed higher transfection efficiency and comparable viability profile by evaluation using MitoTracker Deep Red in PAM212 cells. Flow cytometric analysis of PAM212 cells stained with Sytox red revealed two cell populations with low and high fluorescent intensity, representing cells with partially-porated and highly-porated membranes, respectively. Additional combined staining with MitoTracker and ethidium homodimer showed that that 18-3-18 GL-NPs disturbed cell membrane integrity, while cells were still alive and had mitochondrial activity. Taken together, this study demonstrated that 18-3-18 GL-NPs have higher transfection efficiency and comparable viability profile to the commercial Lipofectamine Plus, and the interaction of 18-3-18 GL-NPs with PAM212 cell membranes involves a permeability increase, possibly through the formation of nanoscale pores, which could explain efficient gene delivery. This novel nanoconstruct appears to be a promising delivery system for further skin gene therapy studies in vivo.
机译:双子脂质纳米颗粒由于其通过诸如眼睛和皮肤的坚硬屏障成功地进行了非侵入性基因传递,因此最近作为非病毒传递系统受到了广泛关注。这项研究的目的是评估一系列的双性表面活性剂-双性表面活性剂-磷脂纳米颗粒(GL-NPs)的非病毒基因传递,并探讨它们与鼠PAM212表皮角质形成细胞细胞膜相互作用的机制。使用12种不同双子表面活性剂(msm,具有m = 12、16和18C烷基尾,s = 3和7C聚亚甲基间隔基团以及7C取代的具有7NH和7NCH3的间隔基)制备包含编码红色荧光蛋白(RFP)的pCMV-tdTomato质粒的NP )和二油酰基磷脂酰乙醇胺辅助脂质。使用流式细胞仪评估RFP基因表达和细胞活力状态。 MitoTracker深红色线粒体染色和细胞不可渗透的Sytox红色核染色分别用作细胞活力和细胞膜完整性的指标。在转染了18-3-18、18-7-18、18-7NH-18和18-7NCH3-18 NP的细胞中未检测到明显的活力丧失,而在经12-18、18-NCH3-18 NP和NPs转染的细胞中未检测到明显的活力降低。 3-12、12-7-12、12-7NH-12、16-7NH-16或16-7NCH3-16 GL-NP。与Lipofectamine Plus相比,通过使用MitoTracker深红色在PAM212细胞中进行评估,18-3-18 GL-NPs显示出更高的转染效率和可比的生存能力。用Sytox红染色的PAM212细胞的流式细胞仪分析发现,两个细胞群体的荧光强度较低和较高,分别代表具有部分孔膜和高度孔膜的细胞。用MitoTracker和乙锭同二聚体进行的另外的联合染色显示18-3-18 GL-NP干扰了细胞膜的完整性,而细胞仍然存活并且具有线粒体活性。两者合计,这项研究表明18-3-18 GL-NP具有更高的转染效率,并且具有与商用Lipofectamine Plus相当的活力,并且18-3-18 GL-NP与PAM212细胞膜的相互作用涉及通透性的提高,可能通过形成纳米级的孔来解释有效的基因传递。这种新颖的纳米构造似乎是用于体内进一步皮肤基因治疗研究的有希望的递送系统。

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