Dr. Margarete Fischer-Bosch-Institute of Clinical Pharmacology, Stuttgart, Germany.
Int J Pharm. 2011 Oct 31;419(1-2):33-42. doi: 10.1016/j.ijpharm.2011.07.009. Epub 2011 Jul 18.
Nanoparticles delivery of oligonucleotides represents a potential approach for cancer treatment. However, most of the experiments were based on established cancer cell lines and may not reflect the original solid tumor in vivo. Both, tumor microenvironment and tumor cell biological properties in the tumor can influence the delivery efficiency of oligonucleotides. Therefore, it is important to understand the effect of nanoparticles delivery of oligonucleotides on tumor response in intact tissue architecture of individual tumors. We used freshly isolated human tumor tissue slices and primary lung cancer cells from non-small cell lung cancer patients to evaluate this nanocarrier system. Chitosan-coated poly(lactide-co-glycolide) (PLGA) nanoparticles were used to form oligonucleotide-nanoparticle-complexes (nanoplexes) with antisense 2'-O-methyl-RNA (OMR) that can inhibit telomerase activity by binding to the RNA component of telomerase. OMR cellular uptake was strongly enhanced by nanoplexes mediated delivery in both, primary cells and tissue slices. More than 80% of primary cancer cells and 50% of cells in tissue slices showed OMR uptake. Telomerase activity was inhibited by approximately 45% in primary cancer cells and about 40% in tissue slices. Nanoplexes could penetrate into tumor tissue without influencing tissue architecture and the delivered OMR was able to inhibit telomerase activity with relatively low cytotoxicity.
纳米颗粒传递寡核苷酸是癌症治疗的一种有潜力的方法。然而,大多数实验都是基于已建立的癌细胞系进行的,可能无法反映体内原始的实体肿瘤。肿瘤微环境和肿瘤细胞的生物学特性都会影响寡核苷酸的传递效率。因此,了解纳米颗粒传递寡核苷酸对肿瘤反应的影响在单个肿瘤的完整组织结构中是很重要的。我们使用新鲜分离的人类肿瘤组织切片和非小细胞肺癌患者的原代肺癌细胞来评估这种纳米载体系统。壳聚糖包裹的聚乳酸-共-羟基乙酸(PLGA)纳米颗粒被用来与反义 2'-O-甲基-RNA(OMR)形成寡核苷酸-纳米颗粒复合物(纳米复合物),通过与端粒酶 RNA 成分结合来抑制端粒酶活性。纳米复合物介导的传递大大增强了原代细胞和组织切片中 OMR 的细胞摄取。超过 80%的原代癌细胞和 50%的组织切片中的细胞显示出 OMR 的摄取。端粒酶活性在原代癌细胞中被抑制了约 45%,在组织切片中被抑制了约 40%。纳米复合物可以穿透肿瘤组织而不影响组织架构,并且传递的 OMR 能够以相对较低的细胞毒性抑制端粒酶活性。