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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Proliferation assay of mouse embryonic stem (ES) cells exposed to atmosphericpressure plasmas at room temperature
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Proliferation assay of mouse embryonic stem (ES) cells exposed to atmosphericpressure plasmas at room temperature

机译:室温下暴露于大气压血浆的小鼠胚胎干(ES)细胞的增殖测定

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摘要

Proliferation assays of mouse embryonic stem (ES) cells have been performed with cell culture media exposed to atmospheric-pressure plasmas (APPs), which generate reactive species in the media at room temperature. It is found that serum in cell culture media functions as a scavenger of highly reactive species and tends to protect cells in the media against cellular damage. On the other hand, if serum is not present in a cell culture medium when it is exposed to APP, the medium becomes cytotoxic and cannot be detoxified by serum added afterwards. Plasma-induced cytotoxic media hinder proliferation of mouse ES cells and may even cause cell death. It is also shown by nuclear magnetic resonance spectroscopy that organic compounds in cell culture media are in general not significantly modified by plasma exposure. These results indicate that if there is no serum in media when they are exposed to APPs, highly reactive species (such as OH radicals) generated in the media by the APP exposure are immediately converted to less reactive species (such as H_2O_2), which can no longer readily react with serum that is added to the medium after plasma exposure. This study has clearly shown that it is these less reactive species, rather than highly reactive species, that make the medium cytotoxic to mouse ES cells.
机译:小鼠胚胎干(ES)细胞的增殖测定已在暴露于大气压血浆(APPs)的细胞培养基中进行,大气压血浆在室温下会在培养基中产生反应性物种。发现细胞培养基中的血清起着高反应性物质的清除剂的作用,并倾向于保护培养基中的细胞免受细胞损伤。另一方面,如果在暴露于APP的细胞培养基中不存在血清,则该培养基具有细胞毒性,并且不能被随后添加的血清解毒。血浆诱导的细胞毒性介质会阻碍小鼠ES细胞的增殖,甚至可能导致细胞死亡。核磁共振波谱还表明,细胞培养基中的有机化合物一般不会因血浆暴露而显着改变。这些结果表明,如果将介质暴露于APP时培养基中没有血清,则通过APP暴露在介质中生成的高反应性物质(例如OH自由基)会立即转化为反应性较低的物质(例如H_2O_2),这可以不再与血浆暴露后添加到培养基中的血清反应。这项研究清楚地表明,正是这些反应性较低的物种而非高反应性的物种才使培养基对小鼠ES细胞具有细胞毒性。

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