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Updated: May 17, 2026

Preparation of Rat Oligodendrocyte Progenitor Cultures and Quantification of Oligodendrogenesis Using Dual-infrared Fluorescence Scanning
Published on: February 17, 2016
Nanofiber-based platform for quantitative analysis of human oligodendrocyte ensheathment with pharmacological
Satoshi Morita1, Takayuki Kondo2, Keiko Imamura2
1Center for iPS Cell Research and Application (CiRA), Kyoto University, Kyoto, Japan; iPSC-based Drug Discovery and Development Team, RIKEN BioResource Research Center (BRC), Kyoto, Japan; Institute for Science of Life, Suntory Wellness Ltd., Kyoto, Japan.
Abstract:
Oligodendrocytes are glial cells responsible for myelination in the central nervous system, and their dysfunction underlies various neurological disorders. However, existing human oligodendrocyte models are limited by low efficiency and insufficient standardization. Here, we developed a well-defined system for differentiating human oligodendrocytes from induced pluripotent stem cells using transient transcription factor expression. To recapitulate key structural aspects of oligodendrocyte-axon interactions, we cultured oligodendrocytes on nanofibers mimicking axonal topology. On this platform, ultrastructural, live-imaging, and transcriptomic analyses demonstrated dynamic oligodendrocyte-nanofiber interactions and ensheathment-like wrapping. This process was accompanied by aligned CLDN11 expression along nanofibers, providing a quantifiable structural readout without overt maturation. To validate the utility of the platform, we quantified the effects of white matter toxins and pro-ensheathment lipids. Our findings establish a robust system for evaluating oligodendrocyte ensheathment modulators, particularly those affecting cytoskeletal organization and initial sheath formation, and for investigating the pathophysiology of human oligodendrocyte-related disorders.
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