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Fluorescence emission spectroscopy of 1,4-dihydroxyphthalonitrile. A method for determining intracellular pH in cultured cells.

机译:1,4-二羟基邻苯二甲腈的荧光发射光谱。一种测定培养细胞内细胞内pH的方法。

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摘要

We have developed new methodology for measuring intracellular pH (pHi) in cultured cell monolayers and epithelia by analyzing the emission spectra of the trapped fluorescent pH probe, 1,4-dihydroxyphthalonitrile (1,4-DHPN). This compound is unique since both its acid and base forms possess different fluorescence emission characteristics that can be used to quantitate pHi. The fluorescence difference spectrum between an acid and alkaline solution of 1,4-DHPN has a maximum at 455 nm and a minimum at 512 nm. By determining the ratio of the intensity at these two wavelengths as a function of pH, a calibration curve was constructed. Since the two intensities are determined simultaneously, the measurement is independent of dye concentration, bleaching, and intensity fluctuation of the excitation source. Furthermore, analysis of the emission spectra permitted the detection of light scattering, binding effects, and chemical modification of the probe. A microspectrofluorometer was constructed to analyze low light level emission spectra from intracellular 1,4-DHPN. The instrument consists of a modified Leitz inverted microscope (E. Leitz, Inc., Rockleigh, NJ) with a Ploem illuminator adapted for broadband excitation and objective focusing capability. The emission spectra were collected by focusing the fluorescence from the cell onto the entrance slit of an imaging monochromator, which was scanned by a SIT camera interfaced with a computer. This permitted the acquisition of fluorescence emission spectra extending from 391-588 nm in approximately 33 ms. pHi measured in the cultured toad kidney epithelial cell line, A6, was 7.49 +/- 0.04 (n = 12) with an external pH of 7.6. A6 cells were found to regulate pHi in response to both acute acid and alkali loads and maintained pHi relatively constant over a wide range of external pH values. The technique described in this report overcomes several of the difficulties encountered with other fluorescent pH probes where excitation spectroscopy is required to monitor pH.
机译:我们已经通过分析捕获的荧光pH探针1,4-二羟基邻苯二甲腈(1,4-DHPN)的发射光谱,开发了一种新的方法来测量培养的细胞单层和上皮细胞的细胞内pH(pHi)。该化合物是独特的,因为其酸形式和碱形式均具有可用于定量pHi的不同荧光发射特性。 1,4-DHPN的酸性和碱性溶液之间的荧光差异光谱在455 nm处最大,在512 nm处最小。通过确定这两个波长的强度比值与pH的函数关系,可以构建校准曲线。由于同时确定两个强度,因此测量与染料浓度,漂白和激发源的强度波动无关。此外,发射光谱的分析允许检测光散射,结合效应和探针的化学修饰。构造了一个微型荧光分光光度计,以分析来自细胞内1,4-DHPN的低光发射光谱。该仪器由一台改良的Leitz倒置显微镜(E. Leitz,Inc.,Rockleigh,NJ)和一个Ploem照明器组成,该照明器适合宽带激发和物镜聚焦能力。通过将来自细胞的荧光聚焦到成像单色仪的入口狭缝上来收集发射光谱,该成像单色仪由与计算机连接的SIT相机进行扫描。这允许在大约33ms内获取从391-588nm延伸的荧光发射光谱。在培养的蟾蜍肾上皮细胞系A6中测得的pHi为7.49 +/- 0.04(n = 12),外部pH值为7.6。发现A6细胞响应于急性酸和碱负荷而调节pHi,并且在宽范围的外部pH值范围内保持pHi相对恒定。本报告中描述的技术克服了其他荧光pH探针遇到的一些困难,在其他荧光pH探针中,需要使用激发光谱法来监测pH。

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  • 作者

    Kurtz, I; Balaban, R S;

  • 作者单位
  • 年度 1985
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  • 原文格式 PDF
  • 正文语种 en
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