Higerd-Rusli, G.P., Alsaloum, M., Tyagi, S., Sarveswaran, N., Estacion, M., Akin, E.J., Dib-Hajj, F.B., Liu, S., Sosniak, D., Zhao, P., Dib-Hajj, S.D., Waxman, S.G., 2022. Depolarizing NaV and Hyperpolarizing KV Channels Are Co-Trafficked in Sensory Neurons. The Journal of Neuroscience 42, 4794.   https://doi.org/10.1523/JNEUROSCI.0058-22.2022
Tags: DOC450, postnatal, rat, sensory neurons

Kim, H.W., Davies, A.J., Oh, S.B., 2022. In Vitro Visualization of Cell-to-Cell Interactions Between Natural Killer Cells and Sensory Neurons, in: Shimasaki, N. (Ed.), Natural Killer (NK) Cells: Methods and Protocols. New York, NY: Springer US, pp. 251-268. **PROTOCOL** https://doi.org/10.1007/978-1-0716-2160-8_18
Tags: natural killer cells, protocol, sensory neurons

Jocher, G., S. H. Mannschatz, M. Offterdinger and R. Schweigreiter, 2018. Microfluidics of Small-Population Neurons Allows for a Precise Quantification of the Peripheral Axonal Growth State. Front Cell Neurosci 12: 166. * uses TCND500 silicone devices with mouse sensory DRG and trigeminal neurons.  https://pubmed.ncbi.nlm.nih.gov/29962939/
Tags: DRG, Matrigel, mouse, protocol, sensory neurons, TCND500, trigeminal

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