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Reactive Oxygen Species and Intracellular Ca2+ Contribution to Micro-Discharge Plasma Gene Transfection

机译:反应性氧物种和细胞内Ca2 +对微放电等离子体基因转染的贡献

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We investigated on the mechanism of plasma gene transfection. It is suggested that reactive oxygen species (ROS) directly or indirectly acts on endocytosis for gene transfection. The intracellular Ca2+ concentration was increased by plasma irradiation, and it was confirmed there is some kind of relationship between ROS and release of the intracellular Ca2+. It is clear that ROS are the most important chemical factors in plasma gene transfection and that Ca2+ is not a dominant factor but a subsidiary or consequential factor. Our studies also confirmed that the transfer mechanism for low molecular weight substances, such as YOYO-1, is different from the mechanism for molecules of higher weight, such as plasmid DNA. In the case of larger molecules, ROS play an important role by inducing endocytosis in plasma gene transfection. But in the case of smaller molecules, neither ROS nor ROS-dependent endocytosis is dominant. Some kind of "endocytosis-independent and ROS-free" transfer processes may exist for smaller molecules to be transferred into cells by plasm irradiation. To discuss the mechanism of micro-plasma gene transfection, it is important to note that the transfer mechanism is different for substances of different molecular sizes.
机译:我们研究了血浆基因转染机制。建议,活性氧(ROS)直接或间接作用于基因转染的内吞作用。通过等离子体照射增加细胞内Ca 2 +浓度,并且证实了ROS之间存在某种关系,并且细胞内Ca 2 +之间存在着某种关系。很明显,ROS是血浆基因转染中最重要的化学因素,并且CA2 +不是主要因素,而是子公司或后果因素。我们的研究还证实,低分子量物质(例如yoyo-1)的转移机制不同于重量较高的分子的机制,例如质粒DNA。在较大分子的情况下,ROS通过诱导血浆基因转染中的内吞作用发挥重要作用。但在较小的分子的情况下,ROS也没有依赖性的内吞作用都是显性的。某些“内吞作用无关和无ROS的”转移方法可以存在于通过抗原辐射转移到细胞中的较小分子。为了讨论微血浆基因转染的机制,重要的是要注意,转移机制对于不同分子尺寸的物质不同。

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