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通过嘌呤能受体或低渗应激加载吡喃荧光素,以通过成像测量胞质pH值。

Loading pyranine via purinergic receptors or hypotonic stress for measurement of cytosolic pH by imaging.

作者信息

Gan B S, Krump E, Shrode L D, Grinstein S

机构信息

Division of Cell Biology, Research Institute, the Hospital for Sick Children, Toronto, Ontario M5G 1X8.

出版信息

Am J Physiol. 1998 Oct;275(4):C1158-66. doi: 10.1152/ajpcell.1998.275.4.C1158.

Abstract

Although used extensively for the measurement of intracellular pH, derivatives of fluorescein such as 2', 7'-bis(2-carboxyethyl)-5(6)-carboxyfluorescein (BCECF) have suboptimal sensitivity and can generate toxic photoproducts. These limitations can be overcome using the pH-sensitive fluorescent dye 8-hydroxypyrene-1,3,6-trisulfonic acid (pyranine), which has improved spectroscopic properties. However, the use of pyranine has been limited by the difficulties encountered in delivering this highly hydrophilic dye to the cell interior. We describe a strategy for intracellular delivery of pyranine based on the reversible activation of purinergic P2x7 receptors, which allow permeation of the dye into otherwise intact cells. When loaded into J774 or RAW cells by this method, pyranine is not only more sensitive than BCECF (the dynamic range is approximately 7-fold greater), but is retained better and is less toxic. Pyranine was distributed throughout the cytosol but was not detectable in endomembrane compartments. Repeated illumination resulted in blebbing and loss of functional responsiveness of cells loaded with BCECF, whereas comparably irradiated cells loaded with pyranine remained healthy and responsive. Pyranine can also be loaded into cells not expressing P2x7 receptors by brief exposure to a hypotonic solution. The properties of cells labeled by this method are similar to those loaded via purinergic receptors and compare favorably with those of BCECF-loaded cells. Pyranine thus provides a useful alternative to fluorescein derivatives for the measurement of intracellular pH, particularly when using the high excitation intensities required for microscopic digital imaging.

摘要

尽管荧光素衍生物如2',7'-双(2-羧乙基)-5(6)-羧基荧光素(BCECF)被广泛用于测量细胞内pH值,但其灵敏度欠佳,且会产生有毒的光产物。使用具有改善光谱特性的pH敏感荧光染料8-羟基芘-1,3,6-三磺酸(吡喃荧光素)可克服这些局限性。然而,由于将这种高度亲水的染料递送至细胞内部存在困难,吡喃荧光素的应用受到了限制。我们描述了一种基于嘌呤能P2x7受体可逆激活的吡喃荧光素细胞内递送策略,该策略可使染料渗透到原本完整的细胞中。通过这种方法将吡喃荧光素加载到J774或RAW细胞中时,它不仅比BCECF更灵敏(动态范围大约大7倍),而且保留得更好且毒性更小。吡喃荧光素分布于整个细胞质中,但在内膜区室中未检测到。反复光照会导致加载了BCECF的细胞出现泡状化并丧失功能反应性,而加载了吡喃荧光素的细胞在同等照射下仍保持健康且有反应性。通过短暂暴露于低渗溶液,吡喃荧光素也可加载到不表达P2x7受体的细胞中。用这种方法标记的细胞的特性与通过嘌呤能受体加载的细胞相似,且优于加载了BCECF的细胞。因此,对于细胞内pH值的测量,吡喃荧光素为荧光素衍生物提供了一种有用的替代方法,特别是在使用显微数字成像所需的高激发强度时。

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