...
首页> 外文期刊>Bioconjugate Chemistry >Surface-Modified and Internally Cationic Polyamidoamine Dendrimers for Efficient siRNA Delivery
【24h】

Surface-Modified and Internally Cationic Polyamidoamine Dendrimers for Efficient siRNA Delivery

机译:表面修饰和内部阳离子型聚酰胺酰胺树状聚合物,可有效传递siRNA。

获取原文
获取原文并翻译 | 示例

摘要

A novel internally quaternized and surface-acetylated poly(amidoamine) generation four dendrimer (QPAMAM-NHAc) was synthesized and evaluated for intracellular delivery of siRNA. The proposed dendrimer as a nanocarrier possesses the following advantages: (1) modified neutral surface of the dendrimer for low cytotoxicity and enhanced cellular internalization; (2) existence of cationic charges inside the dendrimer (not on the outer surface) resulting in highly organized compact nanoparticles, which can potentially protect nucleic acids from degradation. The properties of this dendrimer were compared with PAMAM-NH2 dendrimer, possessing surface charges, and with an internally quaternized charged and hydroxyl-terminated QPAMAM-OH dendrimer. Atomic force microscopy studies revealed that internally charged and surface neutral dendrimers, QPAMAM-OH and QPAMAM-NHAc, formed well-condensed, spherical particles (polyplexes) with siRNA, while PAMAM-NH2 resulted in the formation of nanofibers. The modification of surface amine groups to amide significantly reduced cytotoxicity of dendrimers with QPAMAM-NHAc dendrimer showing the lowest toxicity. Confocal microscopy demonstrated enhanced cellular uptake and homogeneous intracellular distribution of siRNA delivered by the proposed QPAMAM-NHAc nanocarrier. The results clearly demonstrated distinct advantages of developed QPAMAM-NHAc/siRNA polyplexes over the existing nucleic acid dendrimeric carriers.
机译:合成了一种新型的内部季铵化和表面乙酰化的聚(酰胺基胺)第四代树状聚合物(QPAMAM-NHAc),并评估了siRNA在细胞内的传递。提出的树枝状聚合物作为纳米载体具有以下优点:(1)修饰的树枝状聚合物的中性表面具有低细胞毒性和增强的细胞内化作用; (2)树枝状聚合物内部(而不是在外表面)存在阳离子电荷,导致高度组织化的致密纳米颗粒,可以潜在地保护核酸免于降解。将该树枝状聚合物的性质与具有表面电荷的PAMAM-NH2树枝状聚合物以及内部季铵化的带羟基末端的QPAMAM-OH树枝状聚合物进行了比较。原子力显微镜研究表明,内部带电荷和表面中性的树状大分子QPAMAM-OH和QPAMAM-NHAc与siRNA形成了稠密的球形颗粒(多聚物),而PAMAM-NH2导致了纳米纤维的形成。用QPAMAM-NHAc树状大分子显示最低的毒性,将表面胺基修饰为酰胺可显着降低树状大分子的细胞毒性。共聚焦显微镜证实了拟议中的QPAMAM-NHAc纳米载体传递的siRNA具有更高的细胞摄取和均一的胞内分布。结果清楚地证明了开发的QPAMAM-NHAc / siRNA复合物相对于现有核酸树状聚合物载体具有明显的优势。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号