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首页> 外文期刊>Bulletin of the Korean Chemical Society >Nonviral Gene Delivery by a Novel Protein Transduction Domain
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Nonviral Gene Delivery by a Novel Protein Transduction Domain

机译:通过新型蛋白质转导域的非病毒基因传递。

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Gene therapy using nonviral gene delivery carriers has focused on the development and modification of synthetic carriers such as liposomes and polymers. Most polymers that are commercially used are taking advantage of their polycationic character which allows not only strong ligand-DNA affinity but also competent cell penetration. Despite the relatively high transfection efficiencies, high cytotoxicity is continuously pointed out as one of the major shortcomings of polycationic polymers such as PEI. Studies on the utilization of peptides have therefore been carried out recently to overcome these problems. For these reasons, the human transcription factor Hph-1, which is currently known as a protein transduction domain (PTD), was investigated in this study to evaluate its potential as a gene delivery carrier. Although its transfection efficiency was about 10-fold lower than PEI, it displayed almost no cytotoxicity even at concentrations as high as 100 μM. Hph-1 was oxidatively polymerized to yield poly-Hph-1. The cell viability of poly-Hph-1 transfected U87MG and NIH-3T3 cells was almost as high as the control (untreated) groups, and the transfection efficiency was about 10-fold higher than PEI. This study serves as a preliminary evaluation of Hph-1 and encourages further investigation.
机译:使用非病毒基因递送载体的基因治疗已集中在合成载体例如脂质体和聚合物的开发和修饰上。商业上使用的大多数聚合物都利用了它们的聚阳离子特性,这种特性不仅允许强大的配体-DNA亲和力,而且还可以使细胞穿透。尽管转染效率相对较高,但是高细胞毒性被不断指出是聚阳离子聚合物(如PEI)的主要缺点之一。因此,近来已经进行了肽利用的研究以克服这些问题。由于这些原因,在这项研究中研究了人类转录因子Hph-1(目前称为蛋白质转导域(PTD)),以评估其作为基因传递载体的潜力。尽管其转染效率比PEI低约10倍,但即使在浓度高达100μM时,也几乎没有细胞毒性。将Hph-1氧化聚合,得到聚Hph-1。经多Hph-1转染的U87MG和NIH-3T3细胞的细胞活力几乎与对照组(未处理)相同,转染效率比PEI高约10倍。这项研究是对Hph-1的初步评估,并鼓励进一步研究。

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