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Presence of Inhibitory Glycinergic Transmission in Medium Spiny Neurons in the Nucleus Accumbens

机译:伏隔核中棘状神经元中抑制性庆大霉素传递的存在。

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摘要

It is believed that the rewarding actions of drugs are mediated by dysregulation of the mesolimbic dopaminergic system leading to increased levels of dopamine in the nucleus accumbens (nAc). It is widely recognized that GABAergic transmission is critical for neuronal inhibition within nAc. However, it is currently unknown if medium spiny neurons (MSNs) also receive inhibition by means of glycinergic synaptic inputs. We used a combination of proteomic and electrophysiology studies to characterize the presence of glycinergic input into MSNs from nAc demonstrating the presence of glycine transmission into nAc. In D1 MSNs, we found low frequency glycinergic miniature inhibitory postsynaptic currents (mIPSCs) which were blocked by 1 μM strychnine (STN), insensitive to low (10, 50 mM) and high (100 mM) ethanol (EtOH) concentrations, but sensitive to 30 μM propofol. Optogenetic experiments confirmed the existence of STN-sensitive glycinergic IPSCs and suggest a contribution of GABA and glycine neurotransmitters to the IPSCs in nAc. The study reveals the presence of glycinergic transmission in a non-spinal region and opens the possibility of a novel mechanism for the regulation of the reward pathway.
机译:据信,药物的奖励作用是由中脑边缘多巴胺能系统的失调介导的,从而导致伏隔核(nAc)中多巴胺水平的增加。众所周知,GABA能传递对于nAc中的神经元抑制至关重要。然而,目前尚不清楚中棘神经元(MSNs)是否也通过甘氨酸能突触输入受到抑制。我们结合蛋白质组学和电生理学研究来表征从nAc到MSNs的甘氨酸输入的存在,这表明存在甘氨酸传递到nAc中。在D1 MSNs中,我们发现低频甘氨酸能微抑制突触后电流(mIPSC)被1μM士的宁(STN)阻断,对低(10、50 mM)和高(100 mM)乙醇(EtOH)浓度不敏感,但敏感至30μM异丙酚。光遗传学实验证实了STN敏感的甘氨酸能性IPSC的存在,并暗示了nAc中GABA和甘氨酸神经递质对IPSC的贡献。这项研究揭示了在非脊髓区域存在甘氨酸能传递,并为调节奖赏途径提供了新机制的可能性。

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