4.8 Article

Transcriptional profiling of mouse peripheral nerves to the single-cell level to build a sciatic nerve ATlas (SNAT)

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ELIFE
Volume 10, Issue -, Pages -

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ELIFE SCIENCES PUBLICATIONS LTD
DOI: 10.7554/eLife.58591

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  1. Eidgenossische Technische Hochschule Zurich Ueli Suter

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Peripheral nerves are complex structures composed of diverse cell types, including Schwann cells, endothelial cells, immune system-associated cells, and connective tissue-resident cells. By establishing transcriptional profiles and utilizing RNA sequencing techniques, researchers have gained insights into the cellular composition and development of the mouse sciatic nerve. The results have been integrated into the Sciatic Nerve ATlas (SNAT) resource, providing a valuable reference point for future studies.
Peripheral nerves are organ-like structures containing diverse cell types to optimize function. This interactive assembly includes mostly axon-associated Schwann cells, but also endothelial cells of supporting blood vessels, immune system-associated cells, barrier-forming cells of the perineurium surrounding and protecting nerve fascicles, and connective tissue-resident cells within the intra-fascicular endoneurium and inter-fascicular epineurium. We have established transcriptional profiles of mouse sciatic nerve-inhabitant cells to foster the fundamental understanding of peripheral nerves. To achieve this goal, we have combined bulk RNA sequencing of developing sciatic nerves up to the adult with focused bulk and single-cell RNA sequencing of Schwann cells throughout postnatal development, extended by single-cell transcriptome analysis of the full sciatic nerve both perinatally and in the adult. The results were merged in the transcriptome resource Sciatic Nerve ATlas (SNAT: https://www.snat.ethz.ch). We anticipate that insights gained from our multi-layered analysis will serve as valuable interactive reference point to guide future studies.

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