Isakari Yoshimasa, Harada Yasuo, Ishikawa Dai, Matsumura-Takeda Kuniko, Sogo Shinji, Ishida Tatsuhiro, Taki Takao, Kiwada Hiroshi
Department of Pharmacokinetics and Biopharmaceutics, Subdivision of Biopharmaceutical Sciences, Institute of Health Biosciences, The University of Tokushima, 1-78-1, Sho-machi, Tokushima 770-8505, Japan.
Int J Pharm. 2007 Jun 29;338(1-2):157-64. doi: 10.1016/j.ijpharm.2007.01.042. Epub 2007 Feb 2.
To clarify the mechanism of platelet production from megakaryocytes, expression of target proteins by gene transfection was examined using various gene delivery techniques. Transfection into hematopoietic cells, including megakaryocytes, by conventional gene delivery techniques such as electroporation and lipofection are known to be difficult. In this study, in addition to electroporation and lipofection, we tested other gene-transfer methods (nucleofection, transfection using inactivated virus envelope, and transferrin-linked cationic polymer) with the green fluorescent protein (GFP) gene into the human megakaryocytic cell line MEG-01. We found that nucleofection, which uses a combination of special electrical parameters and specific solutions, was the best, judging from the expression ratio of GFP-positive cells (approximately 70% of cells) and low toxicity. The efficiency of GFP expression was not related to the amount of pDNA delivered into the MEG-01 cells. To verify the utility of nucleofection, the thrombopoietin (TPO) receptor c-mpl was transfected into MEG-01 cells. Transfected cells showed a higher responsiveness to TPO than mock-transfected MEG-01 cells. We propose that nucleofection is a useful method for transfecting target genes to megakaryocytic cells when addressing the mechanism of platelet production.
为阐明巨核细胞产生血小板的机制,我们使用各种基因递送技术检测了通过基因转染的靶蛋白表达。已知通过传统基因递送技术(如电穿孔和脂质体转染)转染包括巨核细胞在内的造血细胞是困难的。在本研究中,除了电穿孔和脂质体转染外,我们还使用绿色荧光蛋白(GFP)基因,对人巨核细胞系MEG-01测试了其他基因转移方法(核转染、使用灭活病毒包膜的转染和转铁蛋白连接的阳离子聚合物)。我们发现,从GFP阳性细胞的表达率(约70%的细胞)和低毒性判断,使用特殊电参数和特定溶液组合的核转染是最好的。GFP表达效率与导入MEG-01细胞的pDNA量无关。为验证核转染的实用性,将血小板生成素(TPO)受体c-mpl转染到MEG-01细胞中。转染细胞对TPO的反应性高于mock转染的MEG-01细胞。我们提出,在研究血小板生成机制时,核转染是将靶基因转染到巨核细胞中的一种有用方法。