首页> 美国卫生研究院文献>The Journal of Physiology >Imaging of intracellular calcium in rat anterior pituitary cells in response to growth hormone releasing factor.
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Imaging of intracellular calcium in rat anterior pituitary cells in response to growth hormone releasing factor.

机译:成像的大鼠垂体前叶细胞对生长激素释放因子的细胞内钙。

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摘要

1. Changes in intracellular ionized calcium [Ca2+]i induced by human growth hormone releasing factor (hGRF) were analysed by quantitative fluorescent microscopy using a dual-wavelength, ratiometric video imaging system and low light level charge-coupled device (CCD) camera visualizing Fura-2 in dispersed male rat anterior pituitary cells. 2. In cells responding to hGRF, spontaneous basal oscillations in [Ca2+]i were frequently observed, and these were usually characterized by a gradient of [Ca2+]i localized in the subplasmalemmal region of the cell. 3. Of the cells which responded to hGRF, the peptide evoked a rise in [Ca2+]i, especially in the region of the subplasmalemma. Continuous application of 10 nM-hGRF produced several different temporal patterns of the [Ca2+]i response which were not attributable to spatial response profiles. A sustained rise in [Ca2+]i was the most common type of response to hGRF (44% of the cells examined). 4. One-third of the cells responding to 10 nM-hGRF showed spontaneous basal [Ca2+]i oscillations ranging from 100 to 500 nM. Mean values of basal and 10 nM-hGRF-induced [Ca2+]i of these cells were 81 +/- 11 nM (mean +/- S.E.M., n = 27) and 560 +/- 47 nM (n = 27) respectively. There was no significant correlation between basal [Ca2+]i and the hGRF-induced [Ca2+]i increase, nor was there any consistent correlation with regard to the spatial response profile. 5. Application of 2 mM-Co2+ abolished the hGRF-induced rise in [Ca2+]i. Quantitative analysis of this effect, performed by comparing the mean [Ca2+]i evoked during the application of hGRF with and without Co2+, respectively, also showed significant inhibition of the hGRF-induced rise in [Ca2+]i by the application of Co2+ (P less than 0.001). 6. The hGRF-induced rise in [Ca2+]i was completely suppressed by replacing extracellular Na+ with impermeant molecules such as mannitol. The onset and offset of suppression was as rapid as that induced by Co2+. Quantitative analysis showed significant inhibition of the hGRF-induced rise in [Ca2+]i by Na+ replacement (P less than 0.01). 7. Tetrodotoxin, a potent blocker of voltage-sensitive Na+ channels (5 and 20 microM), did not affect the hGRF-induced rise in [Ca2+]i. 8. Extracellular application of the membrane permeable dibutyryl cyclic AMP (DBcAMP) to elevate intracellular levels of cyclic AMP caused a large rise in [Ca2+]i, which was dependent on extracellular Na+ and was abolished by 2 mM-Co2+ applied in the bath.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用双波长比例视频成像系统和低照度电荷耦合器件(CCD)摄像机可视化,通过定量荧光显微镜分析了人类生长激素释放因子(hGRF)诱导的细胞内离子钙[Ca2 +] i的变化。分散的雄性大鼠垂体前叶细胞中的Fura-2。 2.在对hGRF有反应的细胞中,经常观察到[Ca2 +] i的自发性基础振荡,通常以[Ca2 +] i的梯度位于细胞的浆膜下区域为特征。 3.在对hGRF有反应的细胞中,该肽引起[Ca 2+] i升高,特别是在浆膜下膜区域。连续施加10 nM-hGRF会产生[Ca2 +] i响应的几种不同的时间模式,这些模式并不归因于空间响应曲线。 [Ca2 +] i的持续升高是对hGRF的最常见反应类型(所检测细胞的44%)。 4.响应10 nM-hGRF的细胞中有三分之一显示出自发的基础[Ca2 +] i振荡,范围为100至500 nM。这些细胞的基础和10 nM-hGRF诱导的[Ca2 +] i的平均值分别为81 +/- 11 nM(平均值+/- S.E.M.,n = 27)和560 +/- 47 nM(n = 27)。基底[Ca2 +] i与hGRF诱导的[Ca2 +] i升高之间无显着相关性,也没有关于空间响应曲线的一致相关性。 5. 2 mM-Co2 +的使用消除了hGRF诱导的[Ca2 +] i的升高。通过比较分别应用hGRF和不添加Co2 +的hGRF诱发的平均[Ca2 +] i进行的这种效应的定量分析,也表明通过应用Co2 +(p可以显着抑制hGRF诱导的[Ca2 +] i升高。小于0.001)。 6. hGRF诱导的[Ca2 +] i的升高通过用不渗透分子(如甘露醇)替代细胞外Na +而被完全抑制。抑制的发作和抵消与Co2 +诱导的一样快。定量分析显示,Na +替代可显着抑制hGRF诱导的[Ca2 +] i升高(P小于0.01)。 7.河豚毒素是电压敏感的Na +通道(5和20 microM)的有效阻滞剂,不影响hGRF诱导的[Ca2 +] i升高。 8.细胞外施用透膜性二丁酰环AMP(DBcAMP)来提高细胞内环AMP的水平,导致[Ca2 +] i大幅上升,这取决于细胞外Na +,并被浴液中的2 mM-Co2 +所废除。 (摘要以400字截断)

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