{"id":4227,"date":"2025-11-16T08:00:46","date_gmt":"2025-11-16T08:00:46","guid":{"rendered":"https:\/\/www.sygnaturediscovery.com\/poster\/electrophysiological-characterization-of-ipsc-deriver-realdrgx-sensory-neurons\/"},"modified":"2026-04-03T14:53:12","modified_gmt":"2026-04-03T14:53:12","slug":"electrophysiological-characterization-of-ipsc-deriver-realdrgx-sensory-neurons","status":"publish","type":"poster","link":"https:\/\/www.sygnaturediscovery.com\/fr\/poster\/electrophysiological-characterization-of-ipsc-deriver-realdrgx-sensory-neurons\/","title":{"rendered":"Electrophysiological Characterization of iPSC-Deriver RealDRGx Sensory Neurons"},"content":{"rendered":"<p>Human dorsal root ganglion (DRG) neurons are central to sensing pain and environmental stimuli but have historically been difficult to study on automated electrophysiology systems. In this study, Sygnature Discovery used the SyncroPatch 384i platform to characterise hiPSC-derived RealDRGx\u2122 sensory neurons, demonstrating their suitability for automated patch-clamp recording. Across six weeks of maturation, the neurons displayed expected voltage- and ligand-gated channel activity, alongside spontaneous and evoked firing. The work confirms the potential of combining iPSC-derived sensory neurons with automated electrophysiology to increase throughput in pain research, supporting hit identification and mechanistic understanding in inflammatory and neuropathic pain drug discovery<\/p>\n","protected":false},"excerpt":{"rendered":"","protected":false},"featured_media":3004,"template":"","category":[681,709,707,746,753,688],"class_list":["post-4227","poster","type-poster","status-publish","has-post-thumbnail","hentry","category-bioscience","category-cell-based-assays","category-electrophysiology","category-ion-channels","category-neuroscience","category-therapeutic-areas"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.5 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>iPSC-Derived Sensory Neuron Electrophysiology<\/title>\n<meta name=\"description\" content=\"Electrophysiology recordings show voltage- and ligand-gated activity and firing over six weeks of maturation, supporting pain drug discovery. Learn more.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.sygnaturediscovery.com\/fr\/poster\/electrophysiological-characterization-of-ipsc-deriver-realdrgx-sensory-neurons\/\" \/>\n<meta property=\"og:locale\" content=\"fr_CA\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"iPSC-Derived Sensory Neuron Electrophysiology\" \/>\n<meta property=\"og:description\" content=\"Electrophysiology recordings show voltage- and ligand-gated activity and firing over six weeks of maturation, supporting pain drug discovery. 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