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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced labeling of microalgae cellular lipids by application of an electric field generated by alternating current
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Enhanced labeling of microalgae cellular lipids by application of an electric field generated by alternating current

机译:通过施加交流电产生的电场增强对微藻细胞脂质的标记

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摘要

An alternating current was used to generate an electric field to enhance the fluorescent labeling of microalgae cellular lipids with Nile red and LipidTOX. The decay of the fluorescence intensity of Chlorella vulgaris cells in 0. V/cm was more than 50% after 10. min, and the intensity variation was as high as 7% in 20. s. At 2000. V/cm, the decay rate decreased to 1.22% per minute and the intensity fluctuation was less than 1% for LipidTOX-labeled cells. For Spirulina sp. cells at 0. V/cm, the fluorescence intensity increased by 10% after 10. min, whereas at 2000. V/cm, labeling was more rapid and fluorescence intensity doubled. These results show that applying an electric field can improve the quality of fluorescence detection by alleviating decay and fluctuation or by enhancing signal intensity.
机译:交流电用于产生电场,以增强尼罗红和LipidTOX对微藻细胞脂质的荧光标记。 10分钟后,小球藻细胞在0. V / cm处的荧光强度衰减超过50%,在20 s内强度变化高达7%。在2000 V / cm时,LipidTOX标记的细胞的衰减率降至每分钟1.22%,强度波动小于1%。对于螺旋藻在0. V / cm的细胞中,荧光强度在10分钟后增加了10%,而在2000. V / cm时,标记速度更快,荧光强度增加了一倍。这些结果表明,施加电场可以通过减轻衰减和波动或增强信号强度来提高荧光检测的质量。

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