首页> 外文期刊>International Journal of Pharmaceutics >In vivo gene transfection via intravitreal injection of cationic liposome/plasmid DNA complexes in rabbits.
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In vivo gene transfection via intravitreal injection of cationic liposome/plasmid DNA complexes in rabbits.

机译:通过玻璃体内注射兔体内阳离子脂质体/质粒DNA复合物进行体内基因转染。

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摘要

To optimize the in vivo ocular transfection efficiency of plasmid DNA (pDNA)/cationic liposome complexes, N-[1-(2,3-dioleyloxy)propyl]-N,N,N-trimethylammonium chloride (DOTMA)/dioleoylphosphatidylethanolamine (DOPE) (1:1 molar ratio) liposomes and DOTMA/cholesterol (Chol) (1:1 molar ratio) liposomes were prepared with varying amounts of pDNA. pDNA/cationic liposome complexes were intravitreally injected (100microL) in rabbits, and luciferase activity in the cornea, aqueous humor, iris-ciliary body, lens, vitreous body, and retina was measured. Transfection efficiency of pDNA alone did not change with pDNA ranging from 40 to 85mg. In contrast, transfection efficiency of pDNA complexed with DOTMA/Chol liposomes significantly increased with the amount of pDNA ranging from 40 to 85microg ( [Formula: see text] ). pDNA complexed with DOTMA/DOPE liposomes could not be prepared with pDNA greater than 60microg. Among these experiments, pDNA (85microg) complexed with DOTMA/Chol liposomes (pDNA:cationic liposome charge ratio (-:+) = 1.0:2.0) showed the highest transfection efficiency in the ocular tissue and its transfection-mediated luciferase activity peaked at 3 days. Among the ocular tissues, the highest gene expression was observed in the aqueous humor.
机译:为了优化质粒DNA(pDNA)/阳离子脂质体复合物的体内眼转染效率,N- [1-(2,3-二烯氧基氧基)丙基] -N,N,N-三甲基氯化铵(DOTMA)/二油酰基磷脂酰乙醇胺(DOPE)用不同量的pDNA制备(1∶1摩尔比)脂质体和DOTMA /胆固醇(Chol)(1∶1摩尔比)脂质体。向兔玻璃体内注射pDNA /阳离子脂质体复合物(100microL),并测量角膜,房水,虹膜睫状体,晶状体,玻璃体和视网膜中的萤光素酶活性。 pDNA的转染效率在40至85mg范围内均无变化。相比之下,pDNA与DOTMA / Chol脂质体复合的转染效率随着pDNA量从40微克到85微克不等而显着提高([公式:参见文本])。与DOTMA / DOPE脂质体复合的pDNA不能用大于60microg的pDNA制备。在这些实验中,与DOTMA / Chol脂质体复合的pDNA(85microg)(pDNA:阳离子脂质体电荷比(-:+)= 1.0:2.0)在眼组织中显示出最高的转染效率,其转染介导的萤光素酶活性在3时达到峰值天。在眼组织中,在房水中观察到最高的基因表达。

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