首页> 外文期刊>Journal of drug targeting >Encapsulation of plasmid DNA in stabilized plasmid-lipid particles composed of different cationic lipid concentration for optimal transfection activity.
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Encapsulation of plasmid DNA in stabilized plasmid-lipid particles composed of different cationic lipid concentration for optimal transfection activity.

机译:将质粒DNA封装在由不同阳离子脂质浓度组成的稳定的质粒-脂质颗粒中,以获得最佳的转染活性。

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摘要

In previous work (Wheeler et al. (1999) Gene Therapy 6, 271-281) we have shown that plasmid DNA can be entrapped in "stabilized plasmid lipid particles" (SPLP) using low levels (5-10 mol%) of cationic lipid, the fusogenic lipid dioleoylphosphatidylethanolamine (DOPE), and a polyethyleneglycol (PEG) coating for stabilization. The PEG moieties are attached to a ceramide anchor containing an arachidoyl acyl group (PEG-CerC20). However, these SPLP exhibit low transfection potencies in vitro as compared to plasmid/cationic lipid complexes formed with liposomes composed of cationic and neutral lipid at a 1:1 lipid ratio. The objective of this study was to construct SPLPs with increased cationic lipid contents that result in maximum transfection levels. A phosphate buffer detergent dialysis technique is described resulting in formation of SPLP containing 7-42.5 mol% DODAC with reproducible encapsulation efficiency of up to 80%. An octanoyl acyl group was used as anchor for the PEG moiety (PEG-CerC8) permitting a quick exchange out of the SPLP to further optimize the in vitro and in vivo transfection. We have demonstrated that this technique can be used to encapsulate either linearized DNA or supercoiled plasmids ranging from 3-20 kb. The SPLP formed could be isolated from empty vesicles by sucrose density gradient centrifugation, and exhibited a narrow size distribution of approximately 75 +/- 6 nm as determined by cryo-electron microscopy. The high plasmid-to-lipid ratio observed corresponded to one plasmid per particle. The SPLP consist of a lipid bilayer surrounding the plasmid DNA as visualized by cryo-electron microscopy. SPLP containing a range of DODAC concentrations were tested for in vitro and in vivo transfection. In vitro, in COS-7 cells transfection reached a maximum after 48 h. The transfection efficiency increased when the DODAC concentration in the SPLP was decreased from 42.5 to 24 mol% DODAC. Decreasing the cationic lipid concentration improved transfection in part due to decreased toxicity. In vivo studies using an intraperitoneal B16 tumor model and intraperitoneal administration of SPLP showed maximum transfection activity for SPLP containing 24 mol% DODAC. Gene expression observed in tumor cells was increased by approximately one magnitude as compared to cationic lipid/DNA complexes. The SPLP were stable and upon storage at 4 degrees C no significant change in the transfection activity was observed over a one-year period. Thus this phosphate buffer detergent dialysis technique can be used to generate SPLP formulations containing a wide range of cationic lipid concentrations to determine optimal SPLP composition for high transfection activity and low toxicity.
机译:在以前的工作中(Wheeler等人,(1999)Gene Therapy 6,271-281),我们证明了使用低水平(5-10 mol%)阳离子阳离子可以将质粒DNA包裹在“稳定的质粒脂质颗粒”(SPLP)中。脂质,融合脂质脂质,油酰磷脂酰乙醇胺(DOPE)和聚乙二醇(PEG)涂层以稳定化。 PEG部分连接到含有酰胺基酰基基团的神经酰胺锚上(PEG-CerC20)。然而,与由阳离子脂质和中性脂质以1:1脂质比率组成的脂质体形成的质粒/阳离子脂质复合物相比,这些SPLP在体外表现出低的转染能力。这项研究的目的是构建阳离子脂质含量增加,导致最大转染水平的SPLP。描述了一种磷酸盐缓冲液去污剂透析技术,该技术导致形成包含7-42.5 mol%DODAC的SPLP,其可再现的封装效率高达80%。辛酰基酰基用作PEG部分(PEG-CerC8)的锚点,允许快速交换出SPLP,以进一步优化体外和体内转染。我们已经证明,该技术可用于封装线性化DNA或3-20 kb的超螺旋质粒。可以通过蔗糖密度梯度离心从空囊泡中分离出形成的SPLP,并且通过冷冻电子显微镜测定,其显示出大约75 +/- 6 nm的窄尺寸分布。观察到的高质粒与脂质比率对应于每个颗粒一个质粒。 SPLP由围绕质粒DNA的脂质双层组成,如通过低温电子显微镜观察的。测试了包含一定范围DODAC浓度的SPLP的体外和体内转染。在体外,在COS-7细胞中,转染在48小时后达到最大值。当SPLP中的DODAC浓度从42.5%降至24 mol%DODAC时,转染效率提高。降低阳离子脂质浓度可改善转染,部分原因是毒性降低。使用腹膜内B16肿瘤模型和SPLP腹膜内给药的体内研究显示,对于含有24 mol%DODAC的SPLP,其最大转染活性。与阳离子脂质/ DNA复合物相比,在肿瘤细胞中观察到的基因表达增加了大约一个数量级。 SPLP是稳定的,并且在4摄氏度下储存后,一年内未观察到转染活性的显着变化。因此,该磷酸盐缓冲液去污剂透析技术可用于产生包含多种阳离子脂质浓度的SPLP制剂,以确定用于高转染活性和低毒性的最佳SPLP组成。

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