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Insights into the Biology of Hearing and Deafness Revealed by Single-Cell RNA Sequencing.


ABSTRACT: Single-cell RNA sequencing is a powerful tool by which to characterize the transcriptional profile of low-abundance cell types, but its application to the inner ear has been hampered by the bony labyrinth, tissue sparsity, and difficulty dissociating the ultra-rare cells of the membranous cochlea. Herein, we present a method to isolate individual inner hair cells (IHCs), outer hair cells (OHCs), and Deiters' cells (DCs) from the murine cochlea at any post-natal time point. We harvested more than 200 murine IHCs, OHCs, and DCs from post-natal days 15 (p15) to 228 (p228) and leveraged both short- and long-read single-cell RNA sequencing to profile transcript abundance and structure. Our results provide insights into the expression profiles of these cells and document an unappreciated complexity in isoform variety in deafness-associated genes. This refined view of transcription in the organ of Corti improves our understanding of the biology of hearing and deafness.

SUBMITTER: Ranum PT 

PROVIDER: S-EPMC6424336 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Insights into the Biology of Hearing and Deafness Revealed by Single-Cell RNA Sequencing.

Ranum Paul T PT   Goodwin Alexander T AT   Yoshimura Hidekane H   Kolbe Diana L DL   Walls William D WD   Koh Jin-Young JY   He David Z Z DZZ   Smith Richard J H RJH  

Cell reports 20190301 11


Single-cell RNA sequencing is a powerful tool by which to characterize the transcriptional profile of low-abundance cell types, but its application to the inner ear has been hampered by the bony labyrinth, tissue sparsity, and difficulty dissociating the ultra-rare cells of the membranous cochlea. Herein, we present a method to isolate individual inner hair cells (IHCs), outer hair cells (OHCs), and Deiters' cells (DCs) from the murine cochlea at any post-natal time point. We harvested more than  ...[more]

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