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首页> 外文期刊>Biomaterials >Targeted intracellular codelivery of chemotherapeutics and nucleic acid with a well-defined dendrimer-based nanoglobular carrier.
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Targeted intracellular codelivery of chemotherapeutics and nucleic acid with a well-defined dendrimer-based nanoglobular carrier.

机译:具有明确定义的基于树状聚合物的纳米球载体的化学疗法和核酸的靶向细胞内代码传递。

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摘要

Codelivery of different therapeutics has a potential to efficaciously treat human diseases via their synergetic effects. We have recently developed a new class dendrimers, poly(l-lysine) dendrimers with a silsesquioxane cubic core (nanoglobules). These dendrimers have compact globular and well-defined structures and highly functionalized surfaces, and can be used as versatile carriers for biomedical applications. In this study, a generation-3 (G3) nanoglobular dendrimer was used to conjugate a peptide c(RGDfK) with a PEG spacer for codelivery of doxorubicin (DOX) and siRNA. Doxorubicin (DOX) was coupled to the RGD targeted nanoglobule via a degradable disulfide spacer to give G3-[PEG-RGD]-[DOX]. G3-[PEG-RGD]-[DOX] showed higher cytotoxicity than free DOX at high doses in glioblastoma U87 cells. G3-[PEG-RGD]-[DOX] was further complexed with siRNA and such complexes were readily internalized by U87 cells as shown by confocal microscopy. The siRNA complexes of the targeted conjugate resulted in significantly higher gene silencing efficiency in U87-Luc cells than those of control conjugates G3-[PEG-RGD] and G3-[DOX]. The nanoglobules are promising carriers for the codelivery of nucleic acids and chemotherapeutic agents.
机译:不同治疗方法的代码传递有潜力通过其协同作用有效治疗人类疾病。我们最近开发了一种新型的树状聚合物,即具有倍半硅氧烷立方核(纳米球)的聚(1-赖氨酸)树状聚合物。这些树状聚合物具有致密的球形和轮廓分明的结构以及高度官能化的表面,可用作生物医学应用的通用载体。在这项研究中,第3代(G3)纳米球状树状大分子用于缀合肽c(RGDfK)与PEG间隔基,用于阿霉素(DOX)和siRNA的代码传递。阿霉素(DOX)通过可降解的二硫键间隔物与RGD靶向的纳米球偶联,得到G3- [PEG-RGD]-[DOX]。在成胶质细胞瘤U87细胞中,高剂量的G3- [PEG-RGD]-[DOX]比游离DOX具有更高的细胞毒性。 G3- [PEG-RGD]-[DOX]与siRNA进一步复合,如共聚焦显微镜所示,此类复合物易于被U87细胞内化。与对照缀合物G3- [PEG-RGD]和G3- [DOX]相比,靶向缀合物的siRNA复合物在U87-Luc细胞中产生了更高的基因沉默效率。纳米球是核酸和化学治疗剂的代码传递的有希望的载体。

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