首页> 外文期刊>Journal of drug targeting >Gene delivery and expression in human retinal pigment epithelial cells: effects of synthetic carriers, serum, extracellular matrix and viral promoters.
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Gene delivery and expression in human retinal pigment epithelial cells: effects of synthetic carriers, serum, extracellular matrix and viral promoters.

机译:人视网膜色素上皮细胞中的基因传递和表达:合成载体,血清,细胞外基质和病毒启动子的作用。

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Non-viral gene therapy is a potential treatment to many incurable retinal diseases. To fulfill this promise, plasmid DNA must be delivered to the retinal target cells. We evaluated the efficacy of synthetic DNA complexing compounds in transfecting primary human retinal pigment epithelial (RPE) cells in vitro. Fetal human RPE cells were cultured with or without extracellular matrix (ECM), produced using calf corneal endothelial cells. Plasmids encoding nuclear localizing beta galactosidase or luciferase (pRSVLuc, pCLuc4, pSV2Luc) were complexed in water at various +/- charge ratios using cationic lipids (Lipofectin, DOTAP, DOGS), polyethylene imines (25 and 750 kDa), and with degraded 6th generation starburst polyamidoamine dendrimers. Luciferase was quantified using a luminometric assay and beta galactosidase with X-gal staining. Toxicities of transfections were evaluated with the MTT-assay. Using beta galactosidase as the reporter gene naked DNA did not transfect RPE cells at measurable levels whereas 1-5% of the cells expressed histochemically detectable amounts of the gene after transfection with cationic lipid DNA complexes. In RPE cells, Rous sarcoma virus and cytomegalovirus (CMV) were more efficient promoters than SV40 in driving luciferase expression, and CMV was chosen for further experiments. At optimal complex charge ratios, expression levels of luciferase were > 10(9) light units/mg protein after transfection using dendrimers and PEI25, while transfection mediated with the other carriers resulted in luciferase expression levels of 10(7)-10(9) light units/mg protein or less. In general, dendrimers and large molecular weight PEI were less toxic than cationic lipids or PEI25 to RPE cells. Serum and ECM decreased gene expression to the RPE cells with all carriers. Despite low percentage of transfected cells the transgene expression per RPE cell is high, important feature in the retinal tissue with small dimensions, in particular in the case of secreted gene products. Degraded dendrimers and high molecular weight PEI exhibited the best combination of high activity and low toxicity in RPE cell transfection.
机译:非病毒基因疗法是治疗许多不可治愈的视网膜疾病的潜在疗法。为了实现这一承诺,必须将质粒DNA递送至视网膜靶细胞。我们评估了合成DNA络合化合物在体外转染人类原代视网膜色素上皮细胞(RPE)的功效。在有或没有使用小牛角膜内皮细胞产生的细胞外基质(ECM)的情况下培养人的RPE胎儿细胞。使用阳离子脂质(Lipofectin,DOTAP,DOGS),聚乙烯亚胺(25和750 kDa),并以降解的第六位化合物将编码核定位β半乳糖苷酶或荧光素酶(pRSVLuc,pCLuc4,pSV2Luc)的质粒在水中以各种+/-电荷比复合在水中。世代爆炸形聚酰胺酰胺树状聚合物。使用发光测定法和带有X-gal染色的β半乳糖苷酶对荧光素酶进行定量。用MTT测定法评估转染的毒性。使用β半乳糖苷酶作为报告基因裸DNA不能以可测量的水平转染RPE细胞,而1-5%的细胞在用阳离子脂质DNA复合物转染后表达了组织化学可检测量的基因。在RPE细胞中,劳斯肉瘤病毒和巨细胞病毒(CMV)在驱动荧光素酶表达方面比SV40更有效的启动子,并选择了CMV用于进一步的实验。在最佳复合电荷比下,使用树状大分子和PEI25转染后,荧光素酶的表达水平> 10(9)光单位/ mg蛋白,而其他载体介导的转染导致荧光素酶的表达水平为10(7)-10(9)轻单位/毫克蛋白质或更少。通常,树枝状聚合物和大分子量PEI对RPE细胞的毒性小于阳离子脂质或PEI25。血清和ECM降低了所有载体对RPE细胞的基因表达。尽管转染细胞的百分比较低,但每个RPE细胞的转基因表达仍很高,这是视网膜组织中尺寸较小的重要特征,特别是在分泌基因产物的情况下。降解的树状聚合物和高分子量PEI在RPE细胞转染中表现出高活性和低毒性的最佳组合。

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