Electron Microscopic Mapping of Mitochondrial Morphology in the Cochlear Nerve Fibers

To enable nervous system function, neurons are powered in a use-dependent manner by mitochondria undergoing morphological-functional adaptation. In a well-studied model system—the mammalian cochlea, auditory nerve fibers (ANFs) display distinct electrophysiological properties, which is essential for...

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Veröffentlicht in:Journal of the Association for Research in Otolaryngology 2024-08, Vol.25 (4), p.341-354
Hauptverfasser: Lu, Yan, Jiang, Yi, Wang, Fangfang, Wu, Hao, Hua, Yunfeng
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Sprache:eng
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Zusammenfassung:To enable nervous system function, neurons are powered in a use-dependent manner by mitochondria undergoing morphological-functional adaptation. In a well-studied model system—the mammalian cochlea, auditory nerve fibers (ANFs) display distinct electrophysiological properties, which is essential for collectively sampling acoustic information of a large dynamic range. How exactly the associated mitochondrial networks are deployed in functionally differentiated ANFs remains scarcely interrogated. Here, we leverage volume electron microscopy and machine-learning-assisted image analysis to phenotype mitochondrial morphology and distribution along ANFs of full-length in the mouse cochlea inner spiral bundle. This reveals greater variance in mitochondrial size with increased ANF habenula to terminal path length. Particularly, we analyzed the ANF terminal-residing mitochondria, which are critical for local calcium uptake during sustained afferent activities. Our results suggest that terminal-specific enrichment of mitochondria, in addition to terminal size and overall mitochondrial abundance of the ANF, correlates with heterogenous mitochondrial contents of the terminal.
ISSN:1438-7573
1525-3961
1438-7573
DOI:10.1007/s10162-024-00957-y