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与阳离子脂质体复合的质粒DNA的体内处置特征

In vivo disposition characteristics of plasmid DNA complexed with cationic liposomes.

作者信息

Mahato R I, Kawabata K, Takakura Y, Hashida M

机构信息

Faculty of Pharmaceutical Sciences, Kyoto University, Japan.

出版信息

J Drug Target. 1995;3(2):149-57. doi: 10.3109/10611869509059214.

Abstract

To control disposition and hence gene expression, we investigated the disposition characteristics of plasmid DNA complexed with the cationic liposomes Lipofectin and LipofectACE after intravenous injection in mice via the tail vein. The optimum ratios of DNA and liposome complexes were selected through in vitro cytotoxicity and transfection studies. The highest transfection was found at the DNA:liposome ratio of 1:5 w/w. Hence, this ratio was used for in vivo disposition studies, and the distribution patterns were compared with that of naked pCAT. Following intravenous injection of [32P] pCAT, radioactivity was rapidly eliminated from plasma and approximately 60% of the dose was taken up by the liver within 1.5 min. In the case of LipofectACE samples, radioactivity elimination from plasma was equally rapid, but its accumulation was observed in both the liver (35%) and the lung (45%). For Lipofectin samples, radioactivity was initially accumulated in both the liver (55%) and the lung (25%), but lung accumulation was not sustained beyond 5 min after administration. Both liposomal samples showed in vivo gene expression in the lung, heart, kidney and spleen, but not in the liver. Thus, the present study demonstrated that disposition and gene expression of pCAT can be controlled by complex formation with liposomes.

摘要

为了控制分布从而调控基因表达,我们研究了阳离子脂质体Lipofectin和LipofectACE与质粒DNA复合后经小鼠尾静脉注射的体内分布特征。通过体外细胞毒性和转染研究选择了DNA与脂质体复合物的最佳比例。发现DNA与脂质体比例为1:5(w/w)时转染率最高。因此,该比例用于体内分布研究,并将其分布模式与裸pCAT的分布模式进行比较。静脉注射[32P] pCAT后,放射性迅速从血浆中清除,在1.5分钟内约60%的剂量被肝脏摄取。对于LipofectACE样品,血浆中放射性清除同样迅速,但在肝脏(35%)和肺(45%)中均有积累。对于Lipofectin样品,放射性最初在肝脏(55%)和肺(25%)中均有积累,但给药后5分钟后肺中的积累不再持续。两种脂质体样品在肺、心脏、肾脏和脾脏中均显示出体内基因表达,但在肝脏中未显示。因此,本研究表明,pCAT的分布和基因表达可通过与脂质体形成复合物来控制。

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