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聚电解质复合胶束包裹的VEGF siRNA在人实体瘤体外模型中的穿透性及疗效

Penetration and efficacy of VEGF siRNA using polyelectrolyte complex micelles in a human solid tumor model in-vitro.

作者信息

Al-Abd Ahmed M, Lee Soo Hyeon, Kim Sun Hwa, Cha Jung-Ho, Park Tae Gwan, Lee Seung Jin, Kuh Hyo-Jeong

机构信息

Department of Biomedical Sciences, College of Medicine, The Catholic University of Korea, Seoul 137-701, South Korea.

出版信息

J Control Release. 2009 Jul 20;137(2):130-5. doi: 10.1016/j.jconrel.2009.03.009. Epub 2009 Mar 21.

Abstract

A polyelectrolyte complex(PEC) micelle-based siRNA delivery system has been developed for vascular endothelial growth factor (VEGF), and its antitumor efficacy has been demonstrated using in-vivo animal models. Penetration and distribution through the avascular regions of human solid tumors after extravasation are important issues for antitumor efficacy, especially for macromolecules such as VEGF siRNA PEC micelles. Using an in-vitro solid tumor model, multicellular layers(MCL) culture of human colorectal cancer cells, we evaluated the penetration kinetics and efficacy of VEGF siRNA PEC micelles(PEC-siRNA) in comparison to unmodified siRNA(N-siRNA). The PEC-siRNA showed full penetration (15-17 layers of cells) with a unique punctuated distribution pattern at 48 h following initial accumulation in the top layers and a significant suppression of mRNA and protein expression in a dose-dependent manner after 72 h exposure. Although the initial penetration of N-siRNA was faster than that of PEC-siRNA, N-siRNA showed complete loss of activity due to its instability within 24 h. Our data support the idea that PEC micelle formulation may provide stable penetration tool through the multilayers of cancer cells and ensure the gene silencing effect of VEGF. This study also demonstrated that MCL could serve as a useful in-vitro model to evaluate the dose- and time-dependent profiles of penetration and efficacy of macromolecular delivery systems in human solid tumor avascular regions.

摘要

一种基于聚电解质复合物(PEC)胶束的siRNA递送系统已被开发用于血管内皮生长因子(VEGF),并且其抗肿瘤功效已在体内动物模型中得到证实。对于抗肿瘤功效而言,尤其是对于诸如VEGF siRNA PEC胶束之类的大分子,在渗出后穿过人类实体瘤无血管区域的渗透和分布是重要问题。使用体外实体瘤模型,即人结肠癌细胞的多层(MCL)培养,我们评估了VEGF siRNA PEC胶束(PEC-siRNA)与未修饰的siRNA(N-siRNA)相比的渗透动力学和功效。PEC-siRNA在最初在顶层积累后48小时显示出完全渗透(15 - 17层细胞),具有独特的点状分布模式,并且在暴露72小时后以剂量依赖方式显著抑制mRNA和蛋白质表达。尽管N-siRNA的初始渗透比PEC-siRNA快,但由于其在24小时内不稳定,N-siRNA显示出完全丧失活性。我们的数据支持这样的观点,即PEC胶束制剂可能提供一种通过癌细胞多层的稳定渗透工具,并确保VEGF的基因沉默效果。本研究还表明,MCL可作为一种有用的体外模型,用于评估大分子递送系统在人类实体瘤无血管区域的渗透和功效的剂量和时间依赖性概况。

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