首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Thyrotropin-releasing hormone-induced changes in intracellular Ca2+ measured by microspectrofluorometry on individual quin2-loaded cells
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Thyrotropin-releasing hormone-induced changes in intracellular Ca2+ measured by microspectrofluorometry on individual quin2-loaded cells

机译:通过微量荧光荧光法对单个quin2加载的细胞测量促甲状腺激素释放激素诱导的细胞内Ca2 +变化

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摘要

We have developed an accurate and practical method for measuring intracellular Ca2+ concentration [( Ca2+]i) in single cells in monolayer culture using the fluorescent Ca2+-binding dye quin2. Quin2 was loaded into cells as a membrane-permeant ester which is hydrolyzed in the cytoplasm to the impermeant free acid, which is the indicator form (Tsien, R.Y., T. Pozzan, and T.J. Rink, 1982, J. Cell Biol., 94:325-334). The method involves the measurement of fluorescence at 340- nm excitation (I340), where dye fluorescence is dependent on Ca2+, and at 360-nm excitation (I360), where dye fluorescence is independent of Ca2+. The ratio of these two values (I340/I360) is thus related to the concentration of Ca2+ but independent of dye concentration and can be used as a measure of [Ca2+]. To test the ratio method in the microscope, we measured [Ca2+]i in GH3 cells in monolayer culture. We found a resting [Ca2+]i of 44 +/- 28 nM (mean +/- SD, n = 34), as compared with a suspension value (Gershengorn, M., and C. Thaw, 1983, Endocrinology, 113:1522-1524) of 118 +/- 18 nM. We also measured [Ca2+]i during stimulation of the cells with thyrotropin-releasing hormone (TRH) and found a 2.4-fold increase above resting levels within 20 s, a trough at 73% of resting at 90-100 s, and a peak slightly above resting at 3 min. Depolarization of the plasma membrane with KCl produced a sustained increase in [Ca2+]i. All of these data are in good agreement with the results of Gershengorn and Thaw on suspension cultures. When measuring both resting [Ca2+]i and the effects of TRH and KCl on small groups of cells, we found some variation among experiments. Using an image intensifier-video camera, we videotaped cells during TRH stimulation. Digital image analysis of these pictures demonstrated that there was a large variation in responsiveness from cell to cell. The microscope ratio method offers the possibility of resolving regions of differing [Ca2+] within the cytoplasm.
机译:我们已经开发了一种精确实用的方法,用于使用荧光Ca2 +结合染料quin2在单层培养中的单细胞中测量细胞内Ca2 +浓度[(Ca2 +] i)。 Quin2以膜渗透性酯的形式载入细胞,该酯在细胞质中水解为非渗透性游离酸,后者是指示剂(Tsien,RY,T. Pozzan,and TJ Rink,1982,J. Cell Biol。,94 :325-334)。该方法涉及在340 nm激发下(I340)的荧光测量,其中染料荧光取决于Ca2 +,以及在360 nm激发下(I360)的测量荧光,染料荧光与Ca2 +不相关。因此,这两个值的比值(I340 / I360)与Ca2 +的浓度有关,但与染料浓度无关,可以用作[Ca2 +]的量度。为了在显微镜中测试比率法,我们在单层培养中测量了GH3细胞中的[Ca2 +] i。我们发现,与悬浮液值相比,静止的[Ca2 +] i为44 +/- 28 nM(平均值+/- SD,n = 34)(Gershengorn,M。和C. Thaw,1983,Endocrinology,113: 1522-1524)为118 +/- 18 nM。我们还测量了促甲状腺激素释放激素(TRH)刺激细胞过程中的[Ca2 +] i,发现在20 s内高于静止水平2.4倍,在90-100 s处处于73%的静止谷点,并且达到峰值在3分钟时略高于休息时间。用KCl使质膜去极化会导致[Ca2 +] i持续增加。所有这些数据与Gershengorn和Thaw在悬浮培养中的结果非常吻合。在测量静止的[Ca2 +] i以及TRH和KCl对小组细胞的影响时,我们发现实验之间存在一些差异。使用图像增强摄像机,我们在TRH刺激过程中对细胞进行了录像。这些图片的数字图像分析表明,不同细胞之间的响应能力存在很大差异。显微镜比率法提供了解决细胞质内不同[Ca2 +]区域的可能性。

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