neurite
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A neurite or neuronal process refers to any projection from the cell body of a neuron. This projection can be either an axon or a dendrite. The term is frequently used when speaking of immature or developing neurons, especially of cells in culture, because it can be difficult to tell axons from dendrites before differentiation is complete.
In the Vinony graph
Vinony's link graph records 143 inbound references to neurite, and connects out to International Standard Book Number, neuron and digital object identifier.
It is catalogued under the topic Cell anatomy.
Vinony links it to 17 Wikipedia language editions.
Research
37,195 papers- Neuropathological stageing of Alzheimer-related changes.Acta neuropathologica · 1991
- TSH enhances neurite outgrowth.Frontiers in endocrinology · 2024
- Vimentin network dysregulation mediates neurite deficits in SNCA duplication Parkinson's patient-derived midbrain neurons.Science advances · 2025
- Cytoskeletal and signaling mechanisms of neurite formation.Cell and tissue research · 2015
- Quantification of relative neurite tortuosity using Fourier transforms.Journal of neuroscience methods · 2021
via PubMed
~6 min read
Encyclopedic overview
7 sectionsContents
- Neurite development
- Establishing polarity
- ''In vitro''
- ''In vivo''
- See also
- References
- External links
A neurite or neuronal process refers to any projection from the cell body of a neuron. This projection can be either an axon or a dendrite. The term is frequently used when speaking of immature or developing neurons, especially of cells in culture, because it can be difficult to tell axons from dendrites before differentiation is complete.
== Neurite development == The development of a neurite (neuritogenesis) requires a complex interplay of both extracellular and intracellular signals. At every given point along a developing neurite, there are receptors detecting both positive and negative growth cues from every direction in the surrounding space. The developing neurite sums together all of these growth signals in order to determine which direction the neurite will ultimately grow towards. While not all of the growth signals are known, several have been identified and characterized. Among the known extracellular growth signals are netrin, a midline chemoattractant, and semaphorin, ephrin and collapsin, all inhibitors of neurite growth.
Excerpted from Wikipedia’s “neurite” article, available under the CC BY-SA 4.0 licence.