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人诱导多能干细胞衍生感觉神经元中伤害感受功能和阿片样物质信号的出现。

Emergence of nociceptive functionality and opioid signaling in human induced pluripotent stem cell-derived sensory neurons.

机构信息

Institute of Reconstructive Neurobiology, University of Bonn Medical Faculty and University Hospital Bonn, Bonn.

LIFE & BRAIN GmbH, Cellomics Unit, Bonn, Germany, Germany.

出版信息

Pain. 2023 Aug 1;164(8):1718-1733. doi: 10.1097/j.pain.0000000000002860. Epub 2023 Jan 19.

Abstract

Induced pluripotent stem cells (iPSCs) have enabled the generation of various difficult-to-access cell types such as human nociceptors. A key challenge associated with human iPSC-derived nociceptors (hiPSCdNs) is their prolonged functional maturation. While numerous studies have addressed the expression of classic neuronal markers and ion channels in hiPSCdNs, the temporal development of key signaling cascades regulating nociceptor activity has remained largely unexplored. In this study, we used an immunocytochemical high-content imaging approach alongside electrophysiological staging to assess metabotropic and ionotropic signaling of large scale-generated hiPSCdNs across 70 days of in vitro differentiation. During this period, the resting membrane potential became more hyperpolarized, while rheobase, action potential peak amplitude, and membrane capacitance increased. After 70 days, hiPSCdNs exhibited robust physiological responses induced by GABA, pH shift, ATP, and capsaicin. Direct activation of protein kinase A type II (PKA-II) through adenylyl cyclase stimulation with forskolin resulted in PKA-II activation at all time points. Depolarization-induced activation of PKA-II emerged after 35 days of differentiation. However, effective inhibition of forskolin-induced PKA-II activation by opioid receptor agonists required 70 days of in vitro differentiation. Our results identify a pronounced time difference between early expression of functionally important ion channels and emergence of regulatory metabotropic sensitizing and desensitizing signaling only at advanced stages of in vitro cultivation, suggesting an independent regulation of ionotropic and metabotropic signaling. These data are relevant for devising future studies into the development and regulation of human nociceptor function and for defining time windows suitable for hiPSCdN-based drug discovery.

摘要

诱导多能干细胞 (iPSC) 能够生成各种难以获取的细胞类型,例如人类伤害感受器。与人类 iPSC 衍生的伤害感受器 (hiPSCdN) 相关的一个关键挑战是它们的功能成熟过程漫长。虽然许多研究已经解决了 hiPSCdN 中经典神经元标记物和离子通道的表达问题,但调节伤害感受器活性的关键信号级联在时间上的发展在很大程度上仍未得到探索。在这项研究中,我们使用免疫细胞化学高通量成像方法和电生理分期来评估大规模生成的 hiPSCdN 在体外分化 70 天过程中的代谢型和离子型信号。在此期间,静息膜电位变得更加超极化,而 rheobase、动作电位峰值幅度和膜电容增加。70 天后,hiPSCdN 表现出对 GABA、pH 变化、ATP 和辣椒素的强大生理反应。通过使用 forskolin 直接激活腺苷酸环化酶来激活蛋白激酶 A 型 II (PKA-II),导致在所有时间点都能激活 PKA-II。分化 35 天后出现 PKA-II 的去极化诱导激活。然而,阿片受体激动剂有效抑制 forskolin 诱导的 PKA-II 激活需要体外分化 70 天。我们的结果表明,在体外培养的晚期,功能重要的离子通道的早期表达与调节性代谢增敏和脱敏信号的出现之间存在明显的时间差异,表明离子型和代谢型信号的独立调节。这些数据对于设计未来研究人类伤害感受器功能的发育和调节以及定义适合基于 hiPSCdN 的药物发现的时间窗口具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe7f/10348637/d50008cf74e9/jop-164-1718-g001.jpg

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