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Na⁺/H⁺交换器抑制剂 HMA(5-(N,N-六亚甲基)amiloride)的荧光性质受细胞内 pH 值的调节。

Fluorescence properties of the Na⁺/H⁺exchanger inhibitor HMA (5-(N,N-hexamethylene)amiloride) are modulated by intracellular pH.

出版信息

Eur J Histochem. 2012 Jan 20;56(1):e3. doi: 10.4081/ejh.2012.e3.

Abstract

HMA (5-(N,N-hexamethylene)amiloride), which belongs to a family of novel amiloride derivatives, is one of the most effective inhibitors of Na+/H+ exchangers, while uneffective against Na+ channels and Na+/Ca2+ exchangers. In this study, we provided evidence that HMA can act as a fluorescent probe. In fact, human retinal ARPE19 cells incubated with HMA show an intense bluish fluorescence in the cytoplasm when observed at microscope under conventional UV-excitation conditions. Interestingly, a prolonged observation under continuous exposure to excitation lightdoes not induce great changes in cells incubated with HMA for times up to about 5 min, while an unexpected rapid increase in fluorescence signal is observed in cells incubated for longer times. The latter phenomenon is particularly evident in the perinuclear region and in discrete spots in the cytoplasm. Since HMA modulates intracellular acidity, the dependence of its fluorescence properties on medium pH and response upon irradiation have been investigated in solution, at pH 5.0 and pH 7.2. The changes in both spectral shape and amplitude emission indicate a marked pH influence on HMA fluorescence properties, making HMA exploitable as a self biomarker of pH alterations in cell studies, in the absence of perturbations induced by the administration of other exogenous dyes.

摘要

HMA(5-(N,N-六亚甲基)阿米洛利)属于新型阿米洛利衍生物家族,是 Na+/H+交换器的最有效抑制剂之一,而对 Na+通道和 Na+/Ca2+交换器无效。在本研究中,我们提供了 HMA 可作为荧光探针的证据。事实上,在显微镜下用常规 UV 激发条件观察时,与人视网膜 ARPE19 细胞孵育的 HMA 在细胞质中显示出强烈的蓝荧光。有趣的是,在连续暴露于激发光下长时间观察不会导致用 HMA 孵育的细胞发生很大变化,持续时间长达约 5 分钟,而用 HMA 孵育更长时间的细胞会观察到荧光信号的意外快速增加。后者现象在核周区域和细胞质中的离散点中尤为明显。由于 HMA 调节细胞内酸度,因此在 pH 5.0 和 pH 7.2 的溶液中研究了其荧光特性对介质 pH 值的依赖性及其对辐照的响应。光谱形状和发射幅度的变化表明 HMA 荧光特性明显受到 pH 值的影响,这使得 HMA 可在细胞研究中用作 pH 变化的自生物标志物,而不会因施用其他外源染料引起的干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ab8/3352132/8cd302f83280/ejh-2012-1-e3-g001.jpg

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