Characterizing and targeting glioblastoma neuron-tumor networks with retrograde tracing

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Characterizing and targeting glioblastoma neuron-tumor networks with retrograde tracingRapid integration of glioblastoma into neuronal circuits promotes glioblastoma invasion and growth, as shown by rabies-based retrograde tracing. Targeting of neuron-tumor networks with pharmacological or rabies-mediated disconnection offers therapeutic potential.Rapid integration of glioblastoma into neuronal circuits promotes glioblastoma invasion and growth, as shown by rabies-based retrograde tracing. Targeting of neuron-tumor networks with pharmacological or rabies-mediated disconnection offers therapeutic potential.Svenja K. Tetzlaff, Ekin Reyhan, Nikolas Layer, C. Peter Bengtson, Alina Heuer, Julian Schroers, Anton J. Faymonville, Atefeh Pourkhalili Langeroudi, Nina Drewa, Elijah Keifert, Julia Wagner, Stella J. Soyka, Marc C. Schubert, Nirosan Sivapalan, Rangel L. Pramatarov, Verena Buchert, Tim Wageringel, Elena Grabis, Niklas Wißmann, Obada T. Alhalabi, Michael Botz, Jovana Bojcevski, Joaquín Campos, Berin Boztepe, Jonas G. Scheck, Sascha Henry Conic, Maria C. Puschhof, Giulia Villa, Richard Drexler, Yahya Zghaibeh, Fabian Hausmann, Sonja Hänzelmann, Matthia A. Karreman, Felix T. Kurz, Manuel Schröter, Marc Thier, Abigail K. Suwala, Karin Forsberg-Nilsson, Claudio Acuna, Julio Saez-Rodriguez, Amir Abdollahi, Felix Sahm, Michael O. Breckwoldt, Bogdana Suchorska, Franz L. Ricklefs, Dieter Henrik Heiland, Varun Venkataramanihttps://www.cell.com/cell/fulltext/S0092-8674(24)01276-5?rss=yeshttp://www.cell.com/cell/inpress.rssCellCell RSS feed.Wireless News CampaignDecember 7, 2024

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