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Influence of physicochemical properties on pharmacokinetics of non-viral vectors for gene delivery.

机译:物理化学性质对基因递送非病毒载体药代动力学的影响。

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The influence of physicochemical properties on the in vivo pharmacokinetics of gene delivery vectors after systemic administration is reviewed based on our studies. We have been studying the development of DNA delivery systems, such as plasmid DNA complexed with cationic polymers (polyplexes) and cationic liposomes (lipoplexes). Even if target-recognizable ligand is incorporated into the system, the overall physicochemical properties, notably size and charge, are predominant factors influencing in vivo disposition characteristics of the vector. Based on this consideration, liver cell-specific carrier systems via receptor-mediated endocytosis were successfully developed by optimizing physicochemical characteristics. In conclusion, rational design of gene delivery vectors requires an understanding of their pharmacokinetics in relation to the physicochemical properties. Optimization of the physicochemical properties is important for successful in vivo gene delivery by non-viral vectors.
机译:基于我们的研究,综述了物理化学性质对基因递送载体的体内药代动力学的影响。 我们一直在研究DNA递送系统的发展,例如与阳离子聚合物(多单选)和阳离子脂质体(脂脂质)复合的质粒DNA。 即使将目标可识别的配体掺入系统中,整个物理化学性质,显着的大小和电荷,也是影响载体的体内置性特征的主要因素。 基于该考虑,通过优化物理化学特性成功开发了通过受体介导的内吞作用的肝细胞特异性载体系统。 总之,基因递送载体的合理设计需要了解其药代动力学相关的与物理化学特性有关。 物理化学特性的优化对于通过非病毒载体的体内基因递送是重要的。

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