首页> 美国卫生研究院文献>The Journal of Neuroscience >Retrograde Endocannabinoid Signaling in a Postsynaptic Neuron/Synaptic Bouton Preparation from Basolateral Amygdala
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Retrograde Endocannabinoid Signaling in a Postsynaptic Neuron/Synaptic Bouton Preparation from Basolateral Amygdala

机译:从基底外侧杏仁核的突触后神经元/突触布顿制备中逆行内源性大麻素信号。

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摘要

Retrograde synaptic signaling by endogenous cannabinoids (endocannabinoids) is a recently discovered form of neuromodulation in the brain. In the basolateral amygdala (BLA), endocannabinoid signaling has been implicated in learning and memory, specifically in extinction of aversive memories. To examine retrograde endocannabinoid signaling in this brain region, BLA neurons were freshly isolated using an enzyme-free procedure. These isolated neurons retain attached functional excitatory and inhibitory synaptic boutons. Spontaneous GABAergic IPSCs (sIPSCs) were isolated from these freshly isolated neurons and a 4 s step of depolarization from -60 to 0 mV produced suppression of sIPSC frequency and amplitude. A similar depolarization-induced suppression of inhibition (DSI) was observed in neurons in BLA slices. DSI in the single-cell preparation was abolished by the CB1 receptor antagonist N-(piperidin-1-yl)-5-(4-iodophenyl)-1-(2,4-dichlorophenyl)-4-methyl-1H-pyrazole-3-carboxamide, and DSI duration was shortened in the presence of 2-methyl-6-(phenylethynyl) pyridine, an mGluR5 (metabotropic glutamate receptor 5) antagonist. The initial decrease in sIPSCs induced by the DSI procedure was greatly attenuated in recordings with 20 mm BAPTA containing postsynaptic internal solution, but a delayed-onset decrease was observed under this recording condition. A CB1 agonist decreased sIPSC frequency and amplitude, whereas CB1 antagonists increased these responses. The antagonist-induced increase was abolished in 20 mm BAPTA-filled cells. These data provide solid evidence for retrograde endocannabinoid signaling in the BLA and also indicate that this retrograde signaling requires only a postsynaptic neuron and attached synaptic boutons.
机译:内源性大麻素(内源性大麻素)逆行突触信号是大脑中神经调节的一种新发现形式。在基底外侧杏仁核(BLA)中,内源性大麻素信号传导与学习和记忆有关,特别是与厌恶性记忆的消退有关。为了检查该脑区域的逆行内源性大麻素信号传导,使用无酶程序新鲜分离了BLA神经元。这些分离的神经元保留了附着的功能性兴奋性和抑制性突触钮扣。从这些新鲜分离的神经元中分离出自发的GABA能IPSC(sIPSC),从-60到0 mV的去极化4 s步骤产生了对sIPSC频率和幅度的抑制。在BLA切片的神经元中观察到了类似的去极化诱导的抑制抑制作用(DSI)。 CB1受体拮抗剂N-(哌啶-1-基)-5-(4-碘苯基)-1-(2,4-二氯苯基)-4-甲基-1H-吡唑-消除了单细胞制剂中的DSI在2-甲基-6-(苯基乙炔基)吡啶(一种mGluR5(促代谢型谷氨酸受体5)拮抗剂)的存在下,缩短了3-羧酰胺和DSI的持续时间。用DSI程序诱导的sIPSCs最初的降低在含有20mm BAPTA的突触后内部溶液的记录中被大大减弱,但是在该记录条件下观察到延迟发作的减少。 CB1激动剂可降低sIPSC频率和幅度,而CB1拮抗剂可增加这些反应。拮抗剂诱导的增加在20 mm BAPTA填充的细胞中被消除。这些数据为BLA中内源性大麻素逆行提供了可靠的证据,并且还表明该逆行信号仅需要突触后神经元和附着的突触钮扣。

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