用共聚焦显微镜和BCECF同时检测离体大鼠十二指肠细胞体积和细胞内pH。

M Weinlich, U Heydasch, F Mooren, M Starlinger
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引用次数: 17

摘要

共聚焦激光扫描显微镜和pH敏感荧光染料BCECF的结合使我们能够同时记录细胞内pH、细胞活力和相对细胞体积。采用488 nm的pH敏感激发波长和442 nm的pH无关激发波长测量pH,得到比值图像。在442 nm处测定荧光染料浓度,追踪细胞体积。将分离的绒毛尖大鼠十二指肠肠细胞暴露于20 mM无钠NH4Cl或1 mM阿米酰胺缓冲液中。无钠缓冲液和氨酰缓冲液使细胞酸化。无钠缓冲液或NH4Cl对细胞体积没有影响,但阿米洛利可使细胞体积增加20%。在十二指肠细胞酸化后,阿米洛利缓冲液使细胞体积增加了近50%。这些研究表明,通过共聚焦显微镜和BCECF可以很容易地检测到短活细胞在pH变化过程中的细胞体积调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous detection of cell volume and intracellular pH in isolated rat duodenal cells by confocal microscopy and BCECF.

The combination of confocal laser scan microscopy and the pH-sensitive fluorescent dye BCECF allowed us to record simultaneously intracellular pH, cell viability and relative cell volume. pH was measured by using the pH-sensitive excitation wavelength at 488 nm and the pH-independent excitation wavelength at 442 nm to obtain ratio images. Cell volume was traced by measuring fluorescence dye concentration at 442 nm. Isolated villus tip rat duodenal enterocytes were exposed to 20 mM NH4Cl, sodium free, or 1 mM amiloride buffer. Sodium free buffer and amiloride buffer acidified the cells. Cell volume did not change in sodium free buffer, or NH4Cl exposure, but amiloride led to an increase in cell volume of 20%. After acidification of the duodenal cells, amiloride buffer increased cell volume by almost 50%. These studies revealed that cell volume regulation during pH changes in short-living cells could easily be detected by confocal microscopy and BCECF.

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