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促甲状腺激素释放激素和多巴胺对牛催乳素细胞钙稳态影响的Fura-2成像

Fura-2 imaging of thyrotropin-releasing hormone and dopamine effects on calcium homeostasis of bovine lactotrophs.

作者信息

Akerman S N, Zorec R, Cheek T R, Moreton R B, Berridge M J, Mason W T

机构信息

Agricultural and Food Research Council Institute of Animal Physiology and Genetics Research, Babraham, Cambridge.

出版信息

Endocrinology. 1991 Jul;129(1):475-88. doi: 10.1210/endo-129-1-475.

Abstract

Dual wavelength digital imaging microscopy to detect fura-2 has been employed to characterize in normal bovine PRL-secreting cells the effects of TRH and dopamine on the intracellular ionized calcium concentration [( Ca2+]i). Concentrations of TRH greater than 10 nM caused a rapid but transient increase in [Ca2+]i, arising mainly from intracellular calcium stores, since it was unaffected by lowering extracellular calcium with EGTA or blocking calcium channels with Co2+. The threshold for TRH action was close to 0.1 nM. TRH action was dose dependent, with lower concentrations (less than 1-10 nM) slowing the time to peak [Ca2+]i response. The TRH-induced [Ca2+]i rise had a Q10 of about 2. TRH caused multiple transient increases in [Ca2+]i, but a recovery time of 10-15 min was required for full restoration of the TRH-induced response. In some cells the [Ca2+]i response to TRH was polarized to one region of the cell, suggesting the following possibilities, none of them exclusive: 1) Ca2+ release sites may be localized within the cell; or 2) an efficient local mechanism exists for lowering Ca2+ once it is liberated inside the cells; or 3) barriers may exist to diffusion of Ca2+ released within the cell. Extracellular application of Co2+, Mn2+, and EGTA under basal conditions resulted in lowering of [Ca2+]i within seconds, consistent with tonic Ca2+ influx under resting conditions which could contribute to the basal release of hormone. Dopamine, a PRL release-inhibiting factor, also lowered [Ca2+]i under basal conditions. However, the [Ca2+]i response of lactotrophs to TRH was unaffected by dopamine. This suggests that dopamine and TRH act via separate intracellular pathways to modulate hormone secretion. Applications of forskolin preceding the TRH-induced transient rise in [Ca2+]i resulted in a prolonged plateau rise in [Ca2+]i. This was mainly due to increased influx of Ca2+ since addition of Co2+ or EGTA-containing or Ca(2+)-free medium during this phase of response lowered the plateau concentration of [Ca2+]i.

摘要

双波长数字成像显微镜用于检测fura-2,已被用于研究在正常牛催乳素分泌细胞中促甲状腺激素释放激素(TRH)和多巴胺对细胞内游离钙浓度[Ca2+]i的影响。浓度大于10 nM的TRH会引起[Ca2+]i迅速但短暂的升高,这主要源于细胞内钙库,因为用乙二醇双(2-氨基乙基醚)四乙酸(EGTA)降低细胞外钙或用Co2+阻断钙通道对其没有影响。TRH作用的阈值接近0.1 nM。TRH的作用呈剂量依赖性,较低浓度(小于1 - 10 nM)会延长[Ca2+]i反应达到峰值的时间。TRH诱导的[Ca2+]i升高的Q10约为2。TRH导致[Ca2+]i多次短暂升高,但完全恢复TRH诱导的反应需要10 - 15分钟的恢复时间。在一些细胞中,对TRH 的[Ca2+]i反应集中在细胞的一个区域,这提示了以下几种可能性,它们并非相互排斥:1)Ca2+释放位点可能定位于细胞内;或2)细胞内存在一种有效的局部机制,一旦Ca2+在细胞内释放,可降低其浓度;或3)细胞内释放的Ca2+扩散可能存在屏障。在基础条件下,细胞外施加Co2+、Mn2+和EGTA会在数秒内导致[Ca2+]i降低,这与静息条件下持续的Ca2+内流一致,而这种内流可能有助于激素的基础释放。多巴胺是一种催乳素释放抑制因子,在基础条件下也会降低[Ca2+]i。然而,催乳素细胞对TRH的[Ca2+]i反应不受多巴胺影响。这表明多巴胺和TRH通过不同的细胞内途径调节激素分泌。在TRH诱导的[Ca2+]i短暂升高之前应用福斯可林会导致[Ca2+]i出现长时间的平台期升高。这主要是由于Ca2+内流增加,因为在反应的这个阶段加入Co2+或含EGTA或无Ca2+的培养基会降低[Ca2+]i的平台期浓度。

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