Culture and gene expression profiling of Schwann cells from human sural nerve

Abstract Polyneuropathies (PNP) are diseases of the peripheral nervous system (PNS) whose pathophysiology remains poorly understood. Schwann cells (SC) are the principle glial cells in the PNS, and their dysfunction can lead to demyelination and secondary axonal degeneration, causing or exacerbating PNP. The study of SC can thus shed light on the molecular and cellular mechanisms involved in PNP. Protocols have been developed to isolate and culture human and animal SC from large amounts of starting material. The isolation of human SC from patients, where only small biosamples are available, remains a challenge. In this study, we present a protocol to culture human SC from ~4-mm diagnostic sural nerve biopsies and a comprehensive transcriptome analysis to characterize their phenotype. Our protocol allows the reproducible establishment of cultures containing proliferative human Schwann cells that can be stored, expanded, and used as tools for diagnostic applications.

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Publication Details

Journal
Communications Biology
Published
2026-09-28
DOI
https://doi.org/10.1038/s42003-026-11023-z
Primary Topic
Nerve injury and regeneration
Type
article
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article

Culture and gene expression profiling of Schwann cells from human sural nerve

Julia Grüner, Robert helmut Blum, Thorsten Bischler, Annemarie Sodmann et al.
Communications Biology
Nerve injury and regeneration
article

Culture and gene expression profiling of Schwann cells from human sural nerve

Julia Grüner, Robert helmut Blum, Thorsten Bischler, Annemarie Sodmann, Tom Gräfenhan, Nurcan Üçeyler, Patricia García-Fernández, Eva Meller, Maximilian Koch, Claudia Sommer
article en

Abstract

Abstract Polyneuropathies (PNP) are diseases of the peripheral nervous system (PNS) whose pathophysiology remains poorly understood. Schwann cells (SC) are the principle glial cells in the PNS, and their dysfunction can lead to demyelination and secondary axonal degeneration, causing or exacerbating PNP. The study of SC can thus shed light on the molecular and cellular mechanisms involved in PNP. Protocols have been developed to isolate and culture human and animal SC from large amounts of starting material. The isolation of human SC from patients, where only small biosamples are available, remains a challenge. In this study, we present a protocol to culture human SC from ~4-mm diagnostic sural nerve biopsies and a comprehensive transcriptome analysis to characterize their phenotype. Our protocol allows the reproducible establishment of cultures containing proliferative human Schwann cells that can be stored, expanded, and used as tools for diagnostic applications.

Communications Biology
University of Würzburg (DE), Universitätsklinikum Würzburg (DE)
Openalex Percentile: Top 17%
Nerve injury and regeneration
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