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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Cationic polymethacrylates with covalently linked membrane destabilizing peptides as gene delivery vectors
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Cationic polymethacrylates with covalently linked membrane destabilizing peptides as gene delivery vectors

机译:阳离子共聚连接的膜去稳定肽作为基因传递载体的聚甲基丙烯酸甲酯

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摘要

A membrane-disrupting peptide derived from the influenza virus was covalently linked to different polymethacrylates (pDMAEMA, pDAMA and the degradable pHPMA-DMAE, monomers depicted in Fig. 1) using N-succinimidyl 3-(2-pyridyldithio)propionate (SPDP) as coupling agent to increase the transfection efficiency of polyplexes based on these polymers. It was shown by circular dichroism (CD) measurements that the polymer-conjugated peptide was, as the free peptide, able to undergo a conformational change of a random coil to an alpha helix upon lowering the pH to 5.0. This indicates that the property of the peptide to destabilize the endosomal membrane was preserved after its conjugation to the cationic polymers. In line herewith. a liposome leakage assay revealed that the polymer-bound peptide has comparable activity as the free peptide. The DNA condensing properties of the synthesized polymer-peptide conjugates were studied with dynamicC-potential measurements, and it was shown that small (100 to 250 nm), positively charged (+15 to +20 mV) particles were formed. In vitro transfection and toxicity was tested in COS-7 cells, and these experiments showed that the polyplexes with grafted peptide had a substantially higher transfection activity than the control polyplexes, while the toxicity remained unchanged. Cellular uptake of the polyplexes was visualized with confocal laser scanning microscopy, and no differences in cellular uptake could be determined between the peptide containing systems and the control formulation. This shows that the increased transfection activity is indeed due to a better endosomal escape of the peptide grafted polyplexes. This study demonstrates that it is possible to covalently conjugate an endosome disruptive peptide to cationic gene delivery polymers with preservation of its membrane destabilization activity, making these conjugates Suitable for in vivo DNA delivery. (c) 2004 Elsevier B.V. All rights reserved.
机译:使用N-琥珀酰亚胺基3-(2-吡啶基二硫代)丙酸酯(SPDP)作为底物,将流感病毒衍生的破坏膜的肽与不同的聚甲基丙烯酸酯(pDMAEMA,pDAMA和可降解的pHPMA-DMAE,图1所示的单体)共价连接。偶联剂可提高基于这些聚合物的多链体的转染效率。通过圆二色性(CD)测量表明,当pH降低至5.0时,聚合物缀合的肽作为游离肽能够经历无规卷曲成α螺旋的构象变化。这表明在与阳离子聚合物结合后,保留了使内体膜不稳定的肽的性质。与此一致。脂质体渗漏试验表明,与聚合物结合的肽具有与游离肽相当的活性。通过动态C电位测量研究了合成的聚合物-肽结合物的DNA缩合特性,结果表明形成了小的(100至250 nm)带正电(+15至+20 mV)的颗粒。在COS-7细胞中测试了体外转染和毒性,这些实验表明,带有嫁接肽的多聚体的转染活性明显高于对照多聚体,而毒性保持不变。通过共聚焦激光扫描显微镜观察多聚体的细胞摄取,并且在含肽的系统和对照制剂之间不能确定细胞摄取的差异。这表明转染活性的提高确实是由于肽接枝的复合物更好的内体逃逸。该研究表明,可以将内体破坏性肽共价缀合至阳离子基因传递聚合物,同时保留其膜去稳定活性,从而使这些缀合物适用于体内DNA传递。 (c)2004 Elsevier B.V.保留所有权利。

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