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Optimization of siRNA Delivery Method into the Liver by Sequential Injection of Polyglutamic Acid and Cationic Lipoplex

机译:顺序注射聚谷氨酸和阳离子脂质复合物优化siRNA向肝脏的递送方法

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Previously, we developed a novel siRNA transfer method to the liver by sequential intravenous injection of poly-L-glutamic acid (PGA) and cationic liposome/siRNA complex (cationic lipoplex). In this study, we examined the effects of the charge ratio (+/-) of cationic liposome/siRNA, molecular weight of PGA and cationic lipid of cationic liposome on the biodistribution of siRNA after sequential injection of PGA plus cationic lipoplex. When 1,2-dioleoyl-3-trimethylammonium-propane (DOTAP)/cholesterol (Chol) lipoplex was intravenously injected into mice, the accumulation of siRNA was mainly observed in the lungs. In contrast, when DOTAP/Chol lipoplex was intravenously injected at 1 min after intravenous injection of PGA, siRNA was largely accumulated in the liver. The charge ratio (+/-) of DOTAP/Chol liposome/siRNA did not affect the biodistribution of siRNA after sequential injection. As regards the molecular weight of PGA, the accumulation of siRNA was observed mainly in the liver after the sequential injection of PGA of 20.5, 38, 64 or 200 kDa plus DOTAP/Chol lipoplex. Furthermore, to examine the effect of cationic lipid of cationic liposome on the biodistribution of siRNA, we prepared other cationic liposomes composed of 1,2-di-O-octadecenyl-3-trimethylammonium propane chloride (DOTMA)/Chol, dimethyldioctade-cylammonium bromide (DDAB)/Chol and O,O’-ditetradecanoyl-N-(α-trimethylammonioacetyl)di-ethanolamine chloride (DC-6-14)/Chol. For the cationic liposomes, the accumulation of siRNA was observed mainly in the liver when their cationic lipoplexes were sequentially injected after injection of PGA into mice. From these findings, sequential injection of PGA plus cationic lipoplex could deliver siRNA efficiently into the liver regardless of the charge ratio (+/-) of lipoplex, lengths of PGA and cationic lipid of liposome.
机译:以前,我们通过顺序静脉内注射聚L-谷氨酸(PGA)和阳离子脂质体/ siRNA复合物(阳离子脂质复合物),开发了一种向肝脏转移的siRNA新方法。在这项研究中,我们检查了顺序注射PGA加阳离子脂质复合物后,阳离子脂质体/ siRNA的电荷比(+/-),PGA的分子量和阳离子脂质体的阳离子脂质对siRNA的生物分布的影响。将1,2-二油酰基-3-三甲基铵丙烷(DOTAP)/胆固醇(Chol)脂质复合物静脉注射到小鼠中时,主要在肺中观察到siRNA的积累。相反,当静脉注射PGA后1分钟静脉注射DOTAP / Chol脂质复合物时,siRNA大量积累在肝脏中。顺序注射后,DOTAP / Chol脂质体/ siRNA的电荷比(+/-)不会影响siRNA的生物分布。关于PGA的分子量,在依次注射20.5、38、64或200kDa的PGA加DOTAP / Chol脂质复合物后,主要在肝脏中观察到了siRNA的积累。此外,为了检查阳离子脂质体的阳离子脂质对siRNA的生物分布的影响,我们制备了由1,2-二-O-十八碳烯基-3-三甲基丙烷氯化丙烷(DOTMA)/ Chol,二甲基二十八烷基溴化铵组成的其他阳离子脂质体。 (DDAB)/ Chol和O,O'-二十四烷酰基-N-(α-三甲基氨乙酰基)二乙醇胺氯化物(DC-6-14)/ Chol。对于阳离子脂质体,当将PGA注射入小鼠后顺序注射其阳离子脂质复合物时,主要在肝脏中观察到siRNA的积累。从这些发现来看,连续注射PGA和阳离子脂质复合物可以将siRNA有效地传递到肝脏中,而与脂质复合物的电荷比(+/-),PGA的长度和脂质体的阳离子脂质无关。

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