bioRxiv · 10.1101/2024.03.18.585565
Characterizing and targeting glioblastoma neuron-tumor networks with retrograde tracing
Abstract
Glioblastomas are invasive brain tumors with high therapeutic resistance. Neuron-to-glioma synapses have been shown to promote glioblastoma progression. However, a characterization of tumor-connected neurons has been hampered by a lack of technologies. Here, we adapted retrograde tracing using rabies viruses to investigate and manipulate neuron-tumor networks. Glioblastoma rapidly integrated into neural circuits across the brain engaging in widespread functional communication, with acetylcholinergic neurons driving glioblastoma invasion. We uncovered patient-specific and tumor cell state-dependent differences in synaptogenic gene expression associated with neuron-tumor connectivity and subsequent invasivity. Importantly, radiotherapy enhanced neuron-tumor connectivity by increased neuronal activity. In turn, simultaneous neuronal activity inhibition and radiotherapy showed increased therapeutic effects, indicative of a role for neuron-to-glioma synapses in contributing to therapeutic resistance. Lastly, rabies-mediated genetic ablation of tumor-connected neurons halted glioblastoma progression, offering a viral strategy to tackle glioblastoma. Together, this study provides a framework to comprehensively characterize neuron-tumor networks and target glioblastoma.
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Tetzlaff, S. K., Reyhan, E., Bengtson, C. P., Schroers, J., Wagner, J., Schubert, M. C., Layer, N., Puschhof, M. C., Faymonville, A. J., Drewa, N., Pramatarov, R. L., Wissmann, N., Alhalabi, O., Heuer, A., Sivapalan, N., Campos, J., Boztepe, B., Scheck, J. G., Villa, G., Schröter, M., Sahm, F., Forsberg-Nilsson, K., Breckwoldt, M. O., Acuna, C., Suchorska, B., Heiland, H. D., Saez-Rodriguez, J., Venkataramani, V.. 2024-03-22. Characterizing and targeting glioblastoma neuron-tumor networks with retrograde tracing. https://doi.org/10.1101/2024.03.18.585565
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