Neuron Tumor Interaction

Neuron-tumor interaction is the bidirectional communication between neurons and tumor cells, particularly within the nervous system, that can influence tumor growth, invasion, and disease symptoms. Tumor cells may receive neuronal signals through neurotransmitters, neurotrophic factors, and synapse-like contacts, while tumors can remodel local neural circuits and alter neuronal activity; these exchanges activate intracellular pathways that support proliferation, migration, survival, or treatment resistance. Studying this relationship helps explain how brain tumors develop within neural tissue and how cancer affects brain function, while guiding research into neural signaling, tumor microenvironment mechanisms, biomarkers, and therapies that disrupt tumor-supportive communication.

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JoVE EoE - Neurophysiology

Assessing Glutamatergic Neurons and Glioma Cells Interactions in a Co-Culture

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2025

This video demonstrates the assessment of neuronal electrical activity in a co-culture of hiPSC-derived cortical glutamatergic neurons and glioma cells using a microfluidic device with multielectrode arrays.

An Indirect Neuron-Astrocyte Co-Culture Technique for Studying Neuron-Glia Interactions

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2025

This video illustrates a method for establishing an indirect neuron-astrocyte co-culture using a compartmentalized approach. In this setup, neurons and astrocytes are spatially separated but share a conditioned medium. Neurotrophic factors released by astrocytes promote neuron differentiation and the formation of synaptic connections, suggesting neuron-glia interactions.

Three-dimensional Co-culture Model for Tumor-stromal Interaction

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Cited by 14 •

2015

Here we present a protocol to co-culture in three-dimensions, which is useful for investigating multicellular interactions and extracellular matrix-dependent modulation of cancer cell behavior. In this experimental model, cancer cells are cultured on collagen gels embedded with human cancer-associated fibroblasts.

Studying Cell-Cell Interactions in Facilitating Neuronal Maturation

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2025

Astrocytes secrete signaling molecules that enhance the maturation and differentiation of stem cells into neurons and astrocytes.

The Indirect Neuron-astrocyte Coculture Assay: An In Vitro Set-up for the Detailed Investigation of Neuron-glia Interactions

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Cited by 26 •

2016

This protocol describes the indirect neuron-astrocyte coculture for compartmentalized analysis of neuron-glia interactions.

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