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mGluR5 stimulates gliotransmission in the nucleus accumbens

机译:mGluR5刺激伏隔核中的胶质细胞传递

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Although metabotropic glutamate receptor 5 (mGluR5) is essential for cocaine self-administration and drug-seeking behavior, there is limited knowledge of the cellular actions of this receptor in the nucleus accumbens (NAc). Although mGluR5 has the potential to regulate neurons directly, recent studies have shown the importance of mGluR5 in regulating Ca~(2+) signaling in astrocytes and, as a consequence, the Ca~(2+)-dependent release of excitatory transmitters from these glia. In this study, we demonstrate that activation of mGluR5 induces Ca~(2+) oscillations in NAc astrocytes with the correlated appearance of NMDA receptor-dependent slow inward currents detected in medium spiny neurons (MSNs). Photolysis of caged Ca~(2+) loaded specifically into astrocytes evoked slow inward currents demonstrating that Ca~(2+) elevations in astrocytes are responsible for these excitatory events. Pharmacological evaluation of these glial-evoked NMDA currents shows that they are mediated by NR2B-containing NMDA receptors, whereas synaptic NMDA receptors rely on NR2A-containing receptors. Stimulation of glutamatergic afferents activates mGluR5-dependent astrocytic Ca~(2+) oscillations and gliotransmission that is sustained for minutes beyond the initial stimulus. Because gliotransmission is mediated by NMDA receptors, depolarized membrane potentials exhibited during up-states augment excitation provided by gliotransmission, which drives bursts of MSN action potentials. Because the predominant mGluR5-dependent action of glutamatergic afferents is to cause the sustained activation of astrocytes, which in turn excite MSNs through extrasynaptic NMDA receptors, our results raise the potential for gliotransmission being involved in prolonged mGluR5-dependent adaptation in the NAc.
机译:尽管代谢型谷氨酸受体5(mGluR5)对于可卡因的自我给药和寻药行为必不可少,但对该伏隔核(NAc)中该受体的细胞作用的了解有限。尽管mGluR5具有直接调节神经元的潜力,但最近的研究表明,mGluR5在星形胶质细胞中调节Ca〜(2+)信号传导中的重要性,因此,Ca〜(2+)依赖于这些兴奋性递质的释放胶质细胞。在这项研究中,我们证明了mGluR5的激活在NAc星形胶质细胞中诱导Ca〜(2+)振荡,并与在中棘状神经元(MSNs)中检测到的NMDA受体依赖性慢内向电流相关。笼养的Ca〜(2+)专门装在星形胶质细胞中的光解引起缓慢的内向电流,这表明星形胶质细胞中Ca〜(2+)的升高是这些兴奋事件的原因。这些神经胶质诱发的NMDA电流的药理评估表明,它们是由含有NR2B的NMDA受体介导的,而突触NMDA受体则依赖于含有NR2A的受体。刺激谷氨酸能传入的细胞会激活依赖mGluR5的星形细胞Ca〜(2+)振荡和神经胶质传递,这种刺激在初始刺激后持续了几分钟。由于神经胶质传递是由NMDA受体介导的,因此在上态期间显示的去极化膜电位会增加由神经胶质传递提供的兴奋,从而驱动MSN动作电位的爆发。由于谷氨酸能传入的主要依赖mGluR5的作用是引起星形胶质细胞的持续活化,继而通过突触外NMDA受体激发MSN,因此我们的结果提高了神经胶质传递可能与NAc中mGluR5依赖性延长的适应有关。

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