Institute of Pharmaceutical Sciences, Department of Pharmaceutical Technology and Biopharmacy and Freiburger Materialforschungszentrum (FMF), Albert Ludwig University Freiburg, Sonnenstr. 5, 79104, Freiburg, Germany.
University of Strasbourg/CNRS, Membrane Biophysics and NMR, Chemistry Institute UMR7177, rue Blaise Pascal 1, 67008, Strasbourg, France.
Sci Rep. 2017 Aug 29;7(1):9585. doi: 10.1038/s41598-017-10049-y.
Non-viral vectors are widely used and investigated for the delivery of genetic material into cells. However, gene delivery barriers like lysosomal degradation, serum inhibition and transient gene expression so far still limit their clinical applications. Aiming to overcome these limitations, a pH-sensitive hybrid gene vector (PSL complex) was designed by self-assembly of poly(amidoamine) (PAMAM) dendrimers, the histidine-rich peptide LAH4-L1 and the sleeping beauty transposon system (SB transposon system, a plasmid system capable of efficient and precise genomic insertion). Transfection studies revealed that PSL complexes achieved excellent efficiency in all investigated cell lines (higher than 90% in HeLa cells and over 30% in MDCK cells, a difficult-to-transfect cell line). Additionally, the PSL complexes showed high serum tolerance and exhibited outstanding transfection efficiency even in medium containing 50% serum (higher than 90% in HeLa cells). Moreover, a high level of long-term gene expression (over 30% in HeLa cells) was observed. Furthermore, PSL complexes not only resulted in high endocytosis, but also showed enhanced ability of endosomal escape compared to PAMAM/DNA complexes. These results demonstrate that simple association of PAMAM dendrimers, LAH4-L1 peptides and the SB transposon system by self-assembly is a general and promising strategy for efficient and safe gene delivery.
非病毒载体被广泛用于将遗传物质递送到细胞中。然而,溶酶体降解、血清抑制和瞬时基因表达等基因传递障碍迄今为止仍然限制了它们的临床应用。为了克服这些限制,通过聚(酰胺-胺)(PAMAM)树状大分子、富含组氨酸的肽 LAH4-L1 和睡眠美人转座子系统(SB 转座子系统,一种能够高效、精确地进行基因组插入的质粒系统)的自组装,设计了一种 pH 敏感的杂交基因载体(PSL 复合物)。转染研究表明,PSL 复合物在所有研究的细胞系中均实现了优异的转染效率(在 HeLa 细胞中高于 90%,在 MDCK 细胞中高于 30%,MDCK 细胞是一种难以转染的细胞系)。此外,PSL 复合物具有较高的血清耐受性,即使在含有 50%血清的培养基中也表现出出色的转染效率(在 HeLa 细胞中高于 90%)。此外,还观察到高水平的长期基因表达(在 HeLa 细胞中超过 30%)。此外,PSL 复合物不仅导致高内吞作用,而且与 PAMAM/DNA 复合物相比,还显示出增强的内体逃逸能力。这些结果表明,PAMAM 树状大分子、LAH4-L1 肽和 SB 转座子系统的简单自组装是一种高效、安全的基因传递的通用且有前途的策略。