Merkerova Michaela, Klamova Hana, Brdicka Radim, Bruchova Hana
Institute of Hematology and Blood Transfusion, U nemocnice 1, 128 20, Prague 2, Czech Republic.
Mol Biol Rep. 2007 Mar;34(1):27-33. doi: 10.1007/s11033-006-9006-x. Epub 2006 Nov 9.
Development of array methods contributes to elucidation of many genes expressed during oncogenesis. Our array-based analyses of gene expression in patients with chronic myeloid leukemia (CML) revealed several genes (MMP8, MMP9, PCNA, JNK2, MAPK p38) with significant increased expression. We suppose that the genes may be implicated in the disease development and a siRNA-suppression can elucidate their functions in leukemogenesis. One of the crucial requirements for this purpose is a high efficiency of siRNA delivery into CML primary cells. Using fluorescein-labeled siRNAs we systematically tested a variety of physical and chemical non-vector based transfection methods in order to evaluate which of them gave the most suitable transfer. Chemically synthesized siRNAs against mentioned genes were transfected into the cells and level of knockdown was determined by real time RT-PCR. Chemical transfection reagents (Oligofectamine, Metafectene, siPORT Amine) commonly used to transfect siRNAs in CML cell lines showed very low siRNA delivery in CML primary cells-mRNA levels decreased at the most to 76%. Electroporation achieved better results (suppression to 63%) but it was associated with high degree of cell death (more than 60%). In the study we obtained the best transfection efficiency using nucleofector technology. Gene expressions ranged 22-37% that remained from original levels. According to our results, nucleofection appears to be the only suitable non-viral method for siRNA delivery into the hard-to-transfect CML primary cells.
阵列方法的发展有助于阐明肿瘤发生过程中许多基因的表达情况。我们基于阵列对慢性粒细胞白血病(CML)患者基因表达的分析揭示了几个表达显著增加的基因(MMP8、MMP9、PCNA、JNK2、MAPK p38)。我们推测这些基因可能与疾病发展有关,并且小干扰RNA(siRNA)抑制可以阐明它们在白血病发生中的功能。为此目的的一个关键要求是将siRNA高效递送至CML原代细胞。我们使用荧光素标记的siRNA系统地测试了多种基于物理和化学的非载体转染方法,以评估哪种方法能实现最合适的转染。针对上述基因化学合成的siRNA被转染到细胞中,并通过实时逆转录聚合酶链反应(RT-PCR)测定敲低水平。常用于在CML细胞系中转染siRNA的化学转染试剂(脂质体转染试剂、Metafectene、siPORT Amine)在CML原代细胞中显示出非常低的siRNA递送效率——mRNA水平最多降低到76%。电穿孔取得了更好的结果(抑制到63%),但它与高度的细胞死亡(超过60%)相关。在这项研究中,我们使用核转染技术获得了最佳转染效率。基因表达水平降至原始水平的22% - 37%。根据我们的结果,核转染似乎是将siRNA递送至难以转染的CML原代细胞的唯一合适的非病毒方法。