干扰素刺激下Molt 16细胞线粒体对罗丹明123的摄取增加。

Lymphokine research Pub Date : 1990-01-01
H Iwagaki, S Fuchimoto, M Miyake, K Oirta
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引用次数: 0

摘要

带正电的罗丹明类似物罗丹明123特异性地在活细胞的线粒体中积累。这些分子的线粒体特异性相互作用显然依赖于功能性线粒体维持的高跨膜电位(1,2,3)。将这种电位依赖探针与流式细胞术结合使用,可以监测活细胞中的线粒体膜电位(4,5,6)。在目前的工作中,通过流式细胞术测量了ifn - γ或ifn - β刺激的Molt 16细胞对罗丹明123的摄取。早在暴露于ifn - γ后30-60分钟,就在细胞中观察到线粒体相关探针荧光的显著升高,但暴露于ifn - β时未观察到。这些结果表明,在细胞水平上,ifn - γ和- β诱导的生物功能在控制能量代谢和能量需求方面是不同的。
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Increased mitochondrial uptake of rhodamine 123 during interferon-gamma stimulation in Molt 16 cells.

The positively charged rhodamine analog rhodamine 123 accumulates specifically in the mitochondria of living cells. Mitochondria-specific interaction of this molecules is apparently dependent on the high transmembrane potential maintained by functional mitochondria (1, 2, 3). The application of such potential-dependent probes in conjunction with flow cytometry allows the monitoring of mitochondrial membrane potential in living cells (4, 5, 6). In the present work, the uptake of rhodamine 123 by Molt 16 cells stimulated by IFN-gamma or IFN-beta was measured by flow cytometry. Marked elevations in mitochondria-associated probe fluorescence have been observed in cells as early as 30-60 min after exposure of IFN-gamma but not observed by IFN-beta exposure. This results suggest that the IFN-gamma and -beta induced biological functions are different in the control of energy metabolism and energy requirements at the cellular level.

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