光遗传学
神经科学
诱导多能干细胞
胚胎干细胞
移植
多巴胺
多巴胺能
生物
中棘神经元
干细胞
谷氨酸的
神经干细胞
沟道视紫红质
细胞生物学
神经化学
医学
谷氨酸受体
纹状体
内科学
生物化学
受体
基因
作者
Julius A. Steinbeck,Se Joon Choi,Ana Mrejeru,Yosif Ganat,Karl Deisseroth,David Sulzer,Eugene V. Mosharov,Lorenz Studer
摘要
Recent studies have shown evidence of behavioral recovery after transplantation of human pluripotent stem cell (PSC)-derived neural cells in animal models of neurological disease. However, little is known about the mechanisms underlying graft function. Here we use optogenetics to modulate in real time electrophysiological and neurochemical properties of mesencephalic dopaminergic (mesDA) neurons derived from human embryonic stem cells (hESCs). In mice that had recovered from lesion-induced Parkinsonian motor deficits, light-induced selective silencing of graft activity rapidly and reversibly re-introduced the motor deficits. The re-introduction of motor deficits was prevented by the dopamine agonist apomorphine. These results suggest that functionality depends on graft neuronal activity and dopamine release. Combining optogenetics, slice electrophysiology and pharmacological approaches, we further show that mesDA-rich grafts modulate host glutamatergic synaptic transmission onto striatal medium spiny neurons in a manner reminiscent of endogenous mesDA neurons. Thus, application of optogenetics in cell therapy can link transplantation, animal behavior and postmortem analysis to enable the identification of mechanisms that drive recovery.
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