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GPCR signaling is often studied in engineered cell lines. But receptors behave very differently in native tissues. Fluorescent chemical probes targeting the GLP-1 receptor are now allowing researchers to visualize receptor organization, nanodomains, and signaling environments directly in pancreatic islets and brain tissue—revealing aspects of GPCR biology that traditional tools simply could not capture. Episode Overview In this conversation, Johannes Broichhagen and David Hodson discuss the development of Luxendin probes—fluorescent ligands designed to label the GLP-1 receptor in living tissue. These chemical tools were originally developed to solve a persistent problem in GPCR research: antibodies often fail to reliably detect receptors like GLP-1R. By designing ligand-based probes derived from GLP-1 receptor antagonists, researchers can now visualize receptor localization, quantify receptor expression, and study receptor nanodomains in physiologically relevant systems. The discussion also explores how these probes have enabled new insights into pancreatic islet biology, receptor clustering, dual GLP-1/GIP agonist pharmacology, and the spatial organization of GPCR signaling. What You’ll Learn • How fluorescent ligand probes enable visualization of GLP-1 receptors in native tissues • Why antibodies frequently fail to detect GPCRs reliably • What Luxendin probes reveal about GLP-1 receptor localization in pancreatic beta cells • How super-resolution microscopy uncovered GLP-1 receptor nanodomains • Why dual GLP-1/GIP agonist drugs reveal unexpected receptor interactions • How chemical probes enable GPCR imaging in brain regions regulating food intake • What these discoveries mean for GPCR drug discovery and pharmacology research Episode Timestamps 00:00 Introduction 01:30 Why GLP-1 receptor biology remains difficult to study 05:00 Strategies for labeling GPCRs in native tissue 07:30 Designing Luxendin fluorescent probes 12:00 Practical handling and experimental considerations 16:00 Imaging GLP-1 receptors in pancreatic islets 21:00 Super-resolution imaging of GPCR nanodomains 24:00 Dual GLP-1/GIP agonists and receptor pharmacology 28:00 What receptor labeling reveals about brain signaling 31:30 Validation challenges and experimental controls 33:30 Audience Q&A About the Dr. GPCR Podcast The Dr. GPCR Podcast features conversations with scientists shaping GPCR biology, pharmacology, and drug discovery. Each episode explores how discoveries emerge, how experimental tools evolve, and how new insights change the way researchers understand receptor signaling. Hashtags #GPCR #ReceptorBiology #DrugDiscovery #Pharmacology #DrGPCR 🧠 Want more like this? Join the Dr. GPCR Premium Ecosystem to unlock exclusive episodes, practical toolkits, and early access to GPCR University content. 👉 https://www.ecosystem.drgpcr.com/gpcr... _____ Join Terry’s Corner today! Visit https://www.terrykenakin.com for expert-led, on-demand pharmacology courses, and join us at the monthly AMAs with Dr. Terry Kenakin. https://www.ecosystem.drgpcr.com/terr... _____ Get to know our Partners: 👉 Celtarys Research • Company Page: https://www.ecosystem.drgpcr.com/celt... • Press Release: https://www.ecosystem.drgpcr.com/post... • Celtarys News: https://www.ecosystem.drgpcr.com/gpcr... 👉 Eurofins DiscoverX • Company Page: https://www.ecosystem.drgpcr.com/euro... • Press Release: https://www.ecosystem.drgpcr.com/post... • Celtarys News: https://www.ecosystem.drgpcr.com/gpcr... _____ Dr. GPCR is dedicated to fostering a collaborative ecosystem focused on GPCRs. By connecting researchers, sharing knowledge, and facilitating partnerships, the #DrGPCR Ecosystem provides resources to advance GPCR drug discovery. The ecosystem encompasses a range of initiatives to inform and engage the scientific community, including courses, news updates, and networking opportunities.