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培养的成年人类星形胶质细胞中钙依赖性信号通路的嘌呤能反应。

Purinergic responses of calcium-dependent signaling pathways in cultured adult human astrocytes.

机构信息

Kinsmen Laboratory of Neurological Research, Department of Psychiatry, The University of British Columbia, Vancouver, BC Canada.

出版信息

BMC Neurosci. 2014 Jan 22;15:18. doi: 10.1186/1471-2202-15-18.

Abstract

BACKGROUND

The properties of Ca2+ signaling mediated by purinergic receptors are intrinsically linked with functional activity of astrocytes. At present little is known concerning Ca2+-dependent purinergic responses in adult human astrocytes. This work has examined effects of purinergic stimulation to alter levels of intracellular Ca2+ in adult human astrocytes. Ca2+-sensitive spectrofluorometry was carried out to determine mobilization of intracellular Ca2+ following adenosine triphosphate (ATP) or 3'-O-(4-benzoyl)benzoyl-ATP (Bz-ATP) stimulation of adult human astrocytes. In some experiments pharmacological modulation of Ca2+ pathways was applied to help elucidate mechanisms of Ca2+ signaling. RT-PCR was also performed to confirm human astrocyte expression of specific purinoceptors which were indicated from imaging studies.

RESULTS

The endogenous P2 receptor agonist ATP (at 100 μM or 1 mM) applied in physiological saline solution (PSS) evoked a rapid increase of [Ca2+]i to a peak amplitude with the decay phase of response exhibiting two components. The two phases of decay consisted of an initial rapid component which was followed by a secondary slower component. In the presence of Ca2+-free solution, the secondary phase of decay was absent indicating this prolonged component was due to influx of Ca2+. This prolonged phase of decay was also attenuated with the store-operated channel (SOC) inhibitor gadolinium (at 2 μM) added to standard PSS, suggesting this component was mediated by SOC activation. These results are consistent with ATP activation of P2Y receptor (P2YR) in adult human astrocytes leading to respective rapid [Ca2+]i mobilization from intracellular stores followed by Ca2+ entry through SOC. An agonist for P2X7 receptor (P2X7R), BzATP induced a very different response compared with ATP whereby BzATP (at 300 μM) elicited a slowly rising increase in [Ca2+]i to a plateau level which was sustained in duration. The BzATP-induced increase in [Ca2+]i was not enhanced with lipopolysaccharide pre-treatment of cells as previously found for P2X7R mediated response in human microglia. RT-PCR analysis showed that adult human astrocytes in vitro constitutively express mRNA for P2Y1R, P2Y2R and P2X7R.

CONCLUSION

These results suggest that activation of metabotropic P2YR (P2Y1R and/or P2Y2R) and ionotropic P2X7R could mediate purinergic responses in adult human astrocytes.

摘要

背景

嘌呤能受体介导的 Ca2+信号的特性与星形胶质细胞的功能活动密切相关。目前,人们对成人星形胶质细胞中依赖 Ca2+的嘌呤能反应知之甚少。本研究检测了嘌呤能刺激对成人星形胶质细胞细胞内 Ca2+水平变化的影响。采用 Ca2+敏感荧光光谱法,在成人星形胶质细胞中用三磷酸腺苷(ATP)或 3'-O-(4-苯甲酰基)苯甲酰基-ATP(Bz-ATP)刺激后,测定细胞内 Ca2+的动员。在一些实验中,应用药理学方法调节 Ca2+通路,以帮助阐明 Ca2+信号转导的机制。还进行了 RT-PCR,以确认从成像研究中表明的特定嘌呤能受体在人类星形胶质细胞中的表达。

结果

生理盐溶液(PSS)中应用内源性 P2 受体激动剂 ATP(100 μM 或 1 mM)迅速引起 [Ca2+]i 增加,反应的衰减相表现出两个组成部分。两个衰减相包括初始快速相,随后是较慢的次级相。在无 Ca2+溶液中,不存在次级衰减相,表明该延长相是由于 Ca2+内流引起的。在标准 PSS 中加入 SOC 抑制剂钆(2 μM)也会减弱该延长的衰减相,表明该成分是由 SOC 激活介导的。这些结果与 ATP 激活成人星形胶质细胞中的 P2Y 受体(P2YR)一致,导致从细胞内储存中快速动员 Ca2+,随后通过 SOC 进入 Ca2+。P2X7 受体(P2X7R)的激动剂 BzATP 与 ATP 相比引起非常不同的反应,BzATP(300 μM)引起 [Ca2+]i 缓慢增加至平台水平,并持续时间延长。与先前在人类小胶质细胞中发现的 P2X7R 介导的反应不同,BzATP 诱导的 [Ca2+]i 增加不能通过细胞的脂多糖预处理增强。RT-PCR 分析显示,体外培养的成人星形胶质细胞中,mRNA 持续表达 P2Y1R、P2Y2R 和 P2X7R。

结论

这些结果表明,代谢型 P2YR(P2Y1R 和/或 P2Y2R)和离子型 P2X7R 的激活可能介导成人星形胶质细胞中的嘌呤能反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e14e/3903030/db293b41e69f/1471-2202-15-18-1.jpg

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