Suzuki Kotaro, Yoshino Daisuke
Graduate School of Engineering, Tohoku University, 6-6-01 Aramaki-Aoba, Aoba, Sendai 980-8579, Japan.
Institute of Fluid Science, Tohoku University, 2-1-1 Katahira, Aoba, Sendai 980-8577, Japan.
Biomed Res Int. 2016;2016:4651265. doi: 10.1155/2016/4651265. Epub 2016 Dec 12.
Nonthermal plasma has received a lot of attention as a medical treatment technique in recent years. It can easily create various reactive chemical species (ROS) and is harmless to living body. Although plasma at gas-liquid interface has a potential for a biomedical application, the interactions between the gas-liquid plasma and living cells remain unclear. Here, we show characteristics of a micropower plasma with 0.018 W of the power input, generated at gas-liquid interface. We also provide the evidence of plasma-induced enhancement in proliferation activity of endothelial cells. The plasma produced HO, HNO, and HNO in phosphate buffered saline containing Mg and Ca (PBS(+)), and their concentration increased linearly during 600-second discharge. The value of pH in PBS(+) against the plasma discharge time was stable at about 7.0. Temperature in PBS(+) rose monotonically, and its rise was up to 0.8°C at the bottom of a cell-cultured dish by the plasma discharge for 600 s. Short-time treatment of the plasma enhanced proliferation activity of endothelial cells. In contrast, the treatment of HO does not enhance the cell proliferation. Thus, the ROS production and the nuclear factor-kappa B (NF-B) activation due to the plasma treatment might be related to enhancement of the cell proliferation. Our results may potentially provide the basis for developing the biomedical applications using the gas-liquid plasma.
近年来,非热等离子体作为一种医学治疗技术受到了广泛关注。它能够轻松产生各种活性化学物质(ROS),且对活体无害。尽管气液界面处的等离子体具有生物医学应用潜力,但气液等离子体与活细胞之间的相互作用仍不清楚。在此,我们展示了在气液界面产生的输入功率为0.018 W的微功率等离子体的特性。我们还提供了等离子体诱导内皮细胞增殖活性增强的证据。该等离子体在含有镁和钙的磷酸盐缓冲盐水(PBS(+))中产生了HO、HNO和HNO,且在600秒放电过程中它们的浓度呈线性增加。PBS(+)中pH值相对于等离子体放电时间在约7.0处保持稳定。PBS(+)中的温度单调上升,通过600秒的等离子体放电,在细胞培养皿底部温度上升高达0.8°C。等离子体的短时间处理增强了内皮细胞的增殖活性。相比之下,HO处理并未增强细胞增殖。因此,等离子体处理导致的ROS产生和核因子-κB(NF-κB)激活可能与细胞增殖增强有关。我们的结果可能为开发利用气液等离子体的生物医学应用提供基础。