Fluorescence energy transfer studies on normal and leukemic mouse lymphocytes.

B Somogyi, P Kertai, S Damjanovich
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引用次数: 0

Abstract

Control and acute leukemic cells of AKR:Lac C3H mg:Lac/F1 hybride mice were labeled either with ethidium bromide or ethidium bromide plus fluorescamine. Theoretical and experimental evidence shows that the ethidium bromide binding ability of cells and the average efficiency of Förster-type fluorescence energy transfer between fluorescamine and ethidium bromide inside the cells depend on both the cell and dye concentrations. It is shown further that fluorescamine treatment enhances the uptake of ethidium bromide by both normal and leukemic cells. A sevenfold difference was found in ethidium bromide binding ability between normal and leukemic cells at optimal dye concentration.

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正常和白血病小鼠淋巴细胞荧光能量转移研究。
用溴化乙啶或溴化乙啶加荧光胺标记AKR:Lac C3H mg:Lac/F1杂交小鼠的对照和急性白血病细胞。理论和实验证据表明,细胞与溴化乙锭的结合能力以及细胞内荧光胺与溴化乙锭之间Förster-type荧光能量传递的平均效率取决于细胞浓度和染料浓度。进一步表明,荧光胺处理增强了正常细胞和白血病细胞对溴化乙啶的摄取。在最佳染料浓度下,正常细胞和白血病细胞的溴化乙锭结合能力相差7倍。
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