Institute of Neurophysiology, Charité - Universitätsmedizin, 10117, Berlin, Germany.
NeuroCure Cluster of Excellence, Charité - Universitätsmedizin, 10117, Berlin, Germany.
Sci Rep. 2019 Mar 20;9(1):4890. doi: 10.1038/s41598-019-41259-1.
Recently developed technology to differentiate induced pluripotent stem cells (iPSCs) into human induced neurons (iNs) provides an exciting opportunity to study the function of human neurons. However, functional characterisations of iNs have been hampered by the reliance on mass culturing protocols which do not allow assessment of synaptic release characteristics and neuronal morphology at the individual cell level with quantitative precision. Here, we have developed for the first time a protocol to generate autaptic cultures of iPSC-derived iNs. We show that our method efficiently generates mature, autaptic iNs with robust spontaneous and action potential-driven synaptic transmission. The synaptic responses are sensitive to modulation by metabotropic receptor agonists as well as potentiation by acute phorbol ester application. Finally, we demonstrate loss of evoked and spontaneous release by Unc13A knockdown. This culture system provides a versatile platform allowing for quantitative and integrative assessment of morphophysiological and molecular parameters underlying human synaptic transmission.
最近开发的将诱导多能干细胞 (iPSC) 分化为人类诱导神经元 (iNs) 的技术为研究人类神经元的功能提供了一个令人兴奋的机会。然而,iNs 的功能特征受到依赖大规模培养方案的阻碍,这些方案不允许在单个细胞水平上以定量精度评估突触释放特性和神经元形态。在这里,我们首次开发了一种生成 iPSC 衍生 iNs 的自突触培养物的方案。我们表明,我们的方法有效地生成了成熟的自突触 iNs,具有强大的自发性和动作电位驱动的突触传递。突触反应对代谢型受体激动剂的调节以及急性佛波酯应用的增强敏感。最后,我们证明了 Unc13A 敲低导致诱发和自发释放的损失。这种培养系统提供了一个多功能平台,允许对人类突触传递的形态生理和分子参数进行定量和综合评估。