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首页> 外文期刊>BioMed research international >Detection and Antibiotic Treatment of Mycoplasma arginini Contamination in a Mouse Epithelial Cell Line Restore Normal Cell Physiology
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Detection and Antibiotic Treatment of Mycoplasma arginini Contamination in a Mouse Epithelial Cell Line Restore Normal Cell Physiology

机译:小鼠上皮细胞系中精原支原体污染的检测和抗生素治疗可恢复正常细胞生理

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Mycoplasma contamination of cultured cell lines is difficult to detect by routine observation. Infected cells can display normal morphology and the slow growth rate of mycoplasma can delay detection for extended periods of time, compromising experimental results. Positive identification of mycoplasma typically requires cells to be either fixed and stained for DNA or processed with PCR. We present a method to detect mycoplasma using live-cell optical microscopy typically used for routine observation of cell cultures. Images of untreated mycoplasma-infected epithelial cells alongside images of infected cells treated with Plasmocin, a commercially available antibiotic targeted to mycoplasma, are shown. We found that optical imaging is an effective screening tool for detection of mycoplasma contamination. Importantly, we found that cells regained normal function after the contamination was cleared. In conclusion, we present a technique to diagnose probable mycoplasma infections in live cultures without fixation, resulting in faster response times and decreased loss of cell material.
机译:常规观察很难检测到培养细胞系的支原体污染。被感染的细胞可以显示正常的形态,而支原体的缓慢生长速度可以延迟检测较长时间,从而损害实验结果。支原体的阳性鉴定通常需要固定细胞或对DNA染色或用PCR处理。我们提出了一种使用活细胞光学显微镜检测支原体的方法,通常用于细胞培养的常规观察。显示了未经处理的支原体感染的上皮细胞的图像,以及用血浆药物(一种针对支原体的市售抗生素)处理过的感染细胞的图像。我们发现光学成像是检测支原体污染的有效筛选工具。重要的是,我们发现清除污染后细胞恢复了正常功能。总之,我们提出了一种无需固定即可诊断活培养物中支原体感染的技术,从而可缩短响应时间并减少细胞物质的损失。

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