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Plasma cell treatment device Plasma-on-Chip: Monitoring plasma-generated reactive species in microwells

机译:血浆细胞处理设备片上血浆:监测微孔中血浆生成的反应物种

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摘要

We have developed a plasma cell treatment device called Plasma-on-Chip that enables the real-time monitoring of a single cell culture during plasma treatment. The device consists of three parts: 1) microwells for cell culture, 2) a microplasma device for generating reactive oxygen and nitrogen species (RONS) for use in cell treatment, and 3) through-holes (microchannels) that connect each microwell with the microplasma region for RONS delivery. Here, we analysed the delivery of the RONS to the liquid culture medium stored in the microwells. We developed a simple experimental set-up using a microdevice and applied in situ ultraviolet absorption spectroscopy with high sensitivity for detecting RONS in liquid. The plasma-generated RONS were delivered into the liquid culture medium via the through-holes fabricated into the microdevice. The RONS concentrations were on the order of 10–100 μM depending on the size of the through-holes. In contrast, we found that the amount of dissolved oxygen was almost constant. To investigate the process of RONS generation, we numerically analysed the gas flow in the through-holes. We suggest that the circulating gas flow in the through-holes promotes the interaction between the plasma (ionised gas) and the liquid, resulting in enhanced RONS concentrations.
机译:我们开发了一种称为“ Plasma-on-Chip”的浆细胞处理设备,该设备可以在浆处理过程中实时监控单个细胞的培养。该设备由三部分组成:1)用于细胞培养的微孔,2)用于产生用于细胞处理的活性氧和氮物质(RONS)的微等离子体设备,以及3)将每个微孔与微孔连接的通孔(微通道)用于RONS递送的微浆区域。在这里,我们分析了将RONS传递到微孔中存储的液体培养基中的过程。我们开发了使用微型设备的简单实验装置,并以高灵敏度应用原位紫外吸收光谱法检测液体中的RONS。等离子体产生的RONS通过制造到微型设备中的通孔被输送到液体培养基中。根据通孔的大小,RONS的浓度约为10-100μM。相反,我们发现溶解氧的量几乎是恒定的。为了研究RONS的产生过程,我们对通孔中的气流进行了数值分析。我们建议通孔中循环的气流促进等离子体(电离气体)与液体之间的相互作用,从而导致RONS浓度增加。

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