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Effect of plasma needle on cultured cells

机译:血浆针对培养细胞的影响

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摘要

To investigate a possible application of plasma in fine surgery, we studied the effects of a small atmospheric glow discharge on living cultured cells. The plasma source used for this purpose was the 'plasma needle'. Plasma needle is a small (below 1 mm) non-thermal radio-frequency glow, operating in helium mixtures with air at ambient pressure. Plasma treatment of cultured cells resulted in detachment of the cells. Viability tests using propidium iodide staining in combination with confocal laser scanning microscopy confirmed that detached cells as well as surrounding cells remained alive. When the cells received a low dose of plasma treatment, they reattached within a few hours to the surface of the culture flask and to each other. Removal of cells with high precision, without damage to adjacent cells, promises to become a new surgical technique. For investigation of the mechanism causing this detachment we investigated the gas mixture of the plasma with Raman scattering measurements. Radicals diffusing from the plasma into a liquid were detected by means of fluorescent probe in combination with laser-induced fluorescence spectroscopy.
机译:为了研究等离子体在精细手术中的可能应用,我们研究了小的大气辉光放电对活培养细胞的影响。用于此目的的血浆源是“血浆针”。等离子针是一种小的(不到1毫米)的非热射频辉光,可在氦气与环境压力下的空气中混合。等离子体处理培养的细胞导致细胞脱离。使用碘化丙锭染色与共聚焦激光扫描显微镜相结合进行的活力测试证实,分离的细胞以及周围的细胞仍然存活。当细胞接受低剂量的血浆处理后,它们会在数小时内重新附着在培养瓶的表面,并彼此附着。高精度去除细胞而不会损坏相邻细胞,有望成为一种新的外科手术技术。为了研究引起这种分离的机理,我们用拉曼散射测量研究了等离子体的气体混合物。通过荧光探针结合激光诱导的荧光光谱法检测从等离子体扩散到液体中的自由基。

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