Plexiform Neurofibromas

Plexiform neurofibromas are complex, often diffuse tumors that grow along multiple branches of peripheral nerves, most commonly in people with neurofibromatosis type 1 (NF1). Loss-of-function changes in the NF1 gene disrupt neurofibromin, a regulator of RAS signaling, allowing Schwann cells and associated nerve-tissue cells to proliferate abnormally. In cancer research, these tumors provide a model for studying tumor initiation, nerve–tumor interactions, disease progression, and transformation into malignant peripheral nerve sheath tumors. Their clinical evaluation combines physical examination with magnetic resonance imaging and molecular analysis, while research on targeted pathway inhibitors aims to reduce tumor growth, symptoms, and cancer risk.

Plexiform Neurofibromas - Related Videos

Research

JoVE Journal - Cancer Research
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An Orthotopic Sciatic Nerve Xenograft for Neurofibromatosis Type 1 Neurofibromas

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2025

Neurofibromatosis type 1 (NF1) leads to benign peripheral nerve sheath tumors (neurofibromas) that require a specific nerve microenvironment for growth. An optimized orthotopic xenograft model was developed, using intraneural injection of human Schwann cells into NSG mice. This model recapitulates human neurofibromas and provides a valuable platform to evaluate therapeutic strategies.

Research

JoVE EoE - Neuropathology

Modeling Retinal Degeneration and Regeneration in Zebrafish Using a Focal Laser Injury

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2025

This video demonstrates a procedure to induce retinal degeneration in adult zebrafish using laser injury. The laser targets photoreceptor cells in the retina, triggering cell death and a degenerative process. This damage activates Müller glia (MG) cells, leading to their dedifferentiation into stem cell progenitors that aid in retinal regeneration.

Müller Glia Cell Activation in a Laser-induced Retinal Degeneration and Regeneration Model in Zebrafish

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Cited by 13 •

2017

The zebrafish is a popular animal model to study mechanisms of retinal degeneration/regeneration in vertebrates. This protocol describes a method to induce localized injury disrupting the outer retina with minimal damage to the inner retina. Subsequently, we monitor in vivo the retinal morphology and the Müller glia response throughout retinal regeneration.

Research

JoVE Journal - Neuroscience
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Split Retina as an Improved Flatmount Preparation for Studying Inner Nuclear Layer Neurons in Vertebrate Retina

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2024

This work presents an alternative flatmount retina preparation in which the removal of photoreceptor cell bodies enables faster antibody diffusion and improved patch pipette access to inner retinal neurons for immunohistochemistry, in situ hybridization, and electrophysiology experiments.

Organotypic Hippocampal Slice Cultures As a Model to Study Neuroprotection and Invasiveness of Tumor Cells

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Cited by 18 •

2017

Organotypic hippocampal slice cultures (OHSC) represent an in vitro model that simulates the in vivo situation very well. Here we describe a vibratome-based improved slicing protocol to obtain high quality slices for use in assessing the neuroprotective potential of novel substances or the biological behavior of tumor cells.

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