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首页> 外文期刊>Journal of vascular research >Toxicity, uptake kinetics and efficacy of new transfection reagents: increase of oligonucleotide uptake.
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Toxicity, uptake kinetics and efficacy of new transfection reagents: increase of oligonucleotide uptake.

机译:新转染试剂的毒性,吸收动力学和功效:寡核苷酸吸收增加。

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摘要

Human arterial smooth muscle cell (haSMC) proliferation is stimulated by platelet-derived growth factor (PDGF) release of human arterial endothelial cells (haEC) whereas transforming growth factor-beta(1) (TGF-beta(1)) secretion by haSMC promotes extracellular matrix formation. Inhibitory concepts with antisense oligonucleotides (ASO) against those growth factors might be promising, requiring, however, sufficient transfection efficacy. Thus, toxicity and efficacy of new transfection reagents were examined. MTT tests showed that high doses >1.6 microg/ml of the liposome Cytofectin GSV((R)) (CF) and the dendrimer SuperFect (SF) reduced mitochondrial activity of haEC after > or =4 h transfection whereas viability of haSMC was not influenced. DAC-30((R)) showed significant toxic effects on haEC and haSMC at each dose after > or =4 h and Lipofectin((R)) (LF) caused complete detachment of haEC and haSMC in medium containing 10% serum. Uptake studies demonstrated that 'naked' ASO were not incorporated intracellularly whereas transfection within CF or SF resulted in a strong cytoplasmic and nuclear labeling after 2-5 h. With DAC-30, only a slight cytoplasmic fluorescence was found. SF caused an unexpected stimulation of endothelial PDGF-AB synthesis. Thus, CF was favored for inhibition studies. ELISA, Western and Northern blotting showed a significant inhibition of endothelial PDGF-B and smooth muscle TGF-beta(1) mRNA expression and synthesis after transfection for 3-5 h using 0.1-1.0 microM ASO versus control oligonucleotides. We conclude that Cytofectin GSV is superior to the other transfection reagents, predominantly at haEC, showing an improved efficacy and less toxicity than the classical liposome Lipofectin. Cytofectin GSV might offer a promising tool for antisense strategies in the treatment of vascular disorders. Copyright 2000 S. Karger AG, Basel
机译:血小板源性生长因子(PDGF)释放人动脉内皮细胞(haEC)刺激人动脉平滑肌细胞(haSMC)增殖,而haSMC分泌的转化生长因子-β(1)(TGF-β(1))促进细胞外基质形成。具有针对那些生长因子的反义寡核苷酸(ASO)的抑制概念可能很有希望,但是需要足够的转染效率。因此,检查了新型转染试剂的毒性和功效。 MTT测试表明,大于或等于4 h转染后,高剂量> 1.6 microg / ml脂质体Cytofectin GSV(R)(CF)和树状大分子SuperFect(SF)降低了haEC的线粒体活性,而haSMC的活力未受影响。在大于或等于4小时后的每个剂量下,DAC-30()对haEC和haSMC均显示出明显的毒性作用,而Lipofectin(LF)在含10%血清的培养基中引起haEC和haSMC的完全脱离。摄取研究表明,“裸露” ASO并未在细胞内掺入,而在CF或SF中转染则在2-5小时后导致了强烈的细胞质和核标记。使用DAC-30,仅发现了轻微的细胞质荧光。 SF意外刺激了内皮PDGF-AB的合成。因此,CF被优选用于抑制研究。 ELISA,Western和Northern印迹显示在使用0.1-1.0 microM ASO相对于对照寡核苷酸转染3-5小时后,内皮PDGF-B和平滑肌TGF-beta(1)mRNA表达和合成受到显着抑制。我们得出的结论是,Cytofectin GSV优于其他转染试剂,主要在haEC上,比传统脂质体Lipofectin具有更高的功效和更低的毒性。 Cytofectin GSV可能为血管疾病的反义策略提供有希望的工具。版权所有2000 S. Karger AG,巴塞尔

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