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脂质包封能够实现多聚体质粒DNA的有效全身递送。

Lipid encapsulation enables the effective systemic delivery of polyplex plasmid DNA.

作者信息

Heyes James, Palmer Lorne, Chan Kitty, Giesbrecht Cory, Jeffs Lloyd, MacLachlan Ian

机构信息

Protiva Biotherapeutics, Burnaby, British Columbia, Canada.

出版信息

Mol Ther. 2007 Apr;15(4):713-20. doi: 10.1038/sj.mt.6300101. Epub 2007 Feb 13.

Abstract

Using a new controlled mixing process, highly transfection-competent polyplexes were formed and subsequently encapsulated within a lipid bilayer. The resulting "pre-condensed stable plasmid lipid particles" (pSPLPs) have small size (104+/-3 nm) and low surface charge characteristics. The formulation process equally enabled lipid encapsulation of either poly-L-lysine or poly(ethyleneimine) (PEI) condensed DNA, and the endosomolytic benefits of PEI were demonstrated in in vitro gene expression studies. The clearance properties of pSPLP were compared to similar formulations with an uncondensed payload (SPLP) in A/J mice bearing subcutaneous Neuro-2a tumors. Plasma clearance of pSPLP (t(1/2)=6.6 h) was similar to SPLP (t(1/2)=7.1 h), allowing significant accumulation at distal tumor target sites. Gene expression profiles were evaluated in vivo using the Neuro-2a model, and PEI-pSPLP formulations demonstrated a sixfold increase in reporter gene expression in tumors compared to SPLP. No significant gene expression was observed in the liver, lung, or spleen when mice were treated with either SPLP or pSPLP, and both formulations were equally well tolerated. The results support the lipid encapsulation of polyplex plasmid DNA as a means of changing its pharmacologic properties and enabling systemic delivery. The inclusion of endosomolytic DNA-condensing agents such as PEI greatly improves the potency of SPLP.

摘要

采用一种新的可控混合工艺,形成了具有高转染能力的多聚体复合物,随后将其包裹在脂质双层中。由此产生的“预凝聚稳定质粒脂质颗粒”(pSPLPs)具有小尺寸(104±3 nm)和低表面电荷特性。该制备工艺同样能够对聚-L-赖氨酸或聚乙烯亚胺(PEI)凝聚的DNA进行脂质包裹,并且在体外基因表达研究中证明了PEI的溶酶体溶解作用。在携带皮下Neuro-2a肿瘤的A/J小鼠中,将pSPLP的清除特性与具有未凝聚负载物的类似制剂(SPLP)进行了比较。pSPLP的血浆清除率(t(1/2)=6.6 h)与SPLP(t(1/2)=7.1 h)相似,能够在远端肿瘤靶点部位实现显著蓄积。使用Neuro-2a模型在体内评估基因表达谱,与SPLP相比,PEI-pSPLP制剂在肿瘤中的报告基因表达增加了6倍。当用SPLP或pSPLP处理小鼠时,在肝脏、肺或脾脏中未观察到明显的基因表达,并且两种制剂的耐受性均良好。这些结果支持将多聚体质粒DNA进行脂质包裹作为改变其药理特性并实现全身递送的一种手段。加入诸如PEI等溶酶体溶解DNA凝聚剂可大大提高SPLP的效力。

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