Cargando…

Single-Cell RNA Sequencing Analysis Reveals Greater Epithelial Ridge Cells Degeneration During Postnatal Development of Cochlea in Rats

Greater epithelial ridge cells, a transient neonatal cell group in the cochlear duct, which plays a crucial role in the functional maturation of hair cell, structural development of tectorial membrane, and refinement of audio localization before hearing. Greater epithelial ridge cells are methodolog...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Jianyong, Gao, Dekun, Chen, Junmin, Hou, Shule, He, Baihui, Li, Yue, Li, Shuna, Zhang, Fan, Sun, Xiayu, Mammano, Fabio, Sun, Lianhua, Yang, Jun, Zheng, Guiliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446670/
https://www.ncbi.nlm.nih.gov/pubmed/34540839
http://dx.doi.org/10.3389/fcell.2021.719491
_version_ 1784568933063327744
author Chen, Jianyong
Gao, Dekun
Chen, Junmin
Hou, Shule
He, Baihui
Li, Yue
Li, Shuna
Zhang, Fan
Sun, Xiayu
Mammano, Fabio
Sun, Lianhua
Yang, Jun
Zheng, Guiliang
author_facet Chen, Jianyong
Gao, Dekun
Chen, Junmin
Hou, Shule
He, Baihui
Li, Yue
Li, Shuna
Zhang, Fan
Sun, Xiayu
Mammano, Fabio
Sun, Lianhua
Yang, Jun
Zheng, Guiliang
author_sort Chen, Jianyong
collection PubMed
description Greater epithelial ridge cells, a transient neonatal cell group in the cochlear duct, which plays a crucial role in the functional maturation of hair cell, structural development of tectorial membrane, and refinement of audio localization before hearing. Greater epithelial ridge cells are methodologically homogeneous, while whether different cell subtypes are existence in this intriguing region and the degeneration mechanism during postnatal cochlear development are poorly understood. In the present study, single-cell RNA sequencing was performed on the cochlear duct of postnatal rats at day 1 (P1) and day 7 (P7) to identify subsets of greater epithelial ridge cell and progression. Gene ontology and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis were used to examine genes enriched biological processes in these clusters. We identified a total of 26 clusters at P1 and P7 rats and found that the cell number of five cell clusters decreased significantly, while four clusters had similar gene expression patterns and biological properties. The genes of these four cell populations were mainly enriched in Ribosome and P13K-Akt signal pathway. Among them, Rps16, Rpsa, Col4a2, Col6a2, Ctsk, and Jun are particularly interesting as their expression might contribute to the greater epithelial ridge cells degeneration. In conclusion, our study provides an important reference resource of greater epithelial ridge cells landscape and mechanism insights for further understanding greater epithelial ridge cells degeneration during postnatal rat cochlear development.
format Online
Article
Text
id pubmed-8446670
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-84466702021-09-18 Single-Cell RNA Sequencing Analysis Reveals Greater Epithelial Ridge Cells Degeneration During Postnatal Development of Cochlea in Rats Chen, Jianyong Gao, Dekun Chen, Junmin Hou, Shule He, Baihui Li, Yue Li, Shuna Zhang, Fan Sun, Xiayu Mammano, Fabio Sun, Lianhua Yang, Jun Zheng, Guiliang Front Cell Dev Biol Cell and Developmental Biology Greater epithelial ridge cells, a transient neonatal cell group in the cochlear duct, which plays a crucial role in the functional maturation of hair cell, structural development of tectorial membrane, and refinement of audio localization before hearing. Greater epithelial ridge cells are methodologically homogeneous, while whether different cell subtypes are existence in this intriguing region and the degeneration mechanism during postnatal cochlear development are poorly understood. In the present study, single-cell RNA sequencing was performed on the cochlear duct of postnatal rats at day 1 (P1) and day 7 (P7) to identify subsets of greater epithelial ridge cell and progression. Gene ontology and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis were used to examine genes enriched biological processes in these clusters. We identified a total of 26 clusters at P1 and P7 rats and found that the cell number of five cell clusters decreased significantly, while four clusters had similar gene expression patterns and biological properties. The genes of these four cell populations were mainly enriched in Ribosome and P13K-Akt signal pathway. Among them, Rps16, Rpsa, Col4a2, Col6a2, Ctsk, and Jun are particularly interesting as their expression might contribute to the greater epithelial ridge cells degeneration. In conclusion, our study provides an important reference resource of greater epithelial ridge cells landscape and mechanism insights for further understanding greater epithelial ridge cells degeneration during postnatal rat cochlear development. Frontiers Media S.A. 2021-09-03 /pmc/articles/PMC8446670/ /pubmed/34540839 http://dx.doi.org/10.3389/fcell.2021.719491 Text en Copyright © 2021 Chen, Gao, Chen, Hou, He, Li, Li, Zhang, Sun, Mammano, Sun, Yang and Zheng. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Chen, Jianyong
Gao, Dekun
Chen, Junmin
Hou, Shule
He, Baihui
Li, Yue
Li, Shuna
Zhang, Fan
Sun, Xiayu
Mammano, Fabio
Sun, Lianhua
Yang, Jun
Zheng, Guiliang
Single-Cell RNA Sequencing Analysis Reveals Greater Epithelial Ridge Cells Degeneration During Postnatal Development of Cochlea in Rats
title Single-Cell RNA Sequencing Analysis Reveals Greater Epithelial Ridge Cells Degeneration During Postnatal Development of Cochlea in Rats
title_full Single-Cell RNA Sequencing Analysis Reveals Greater Epithelial Ridge Cells Degeneration During Postnatal Development of Cochlea in Rats
title_fullStr Single-Cell RNA Sequencing Analysis Reveals Greater Epithelial Ridge Cells Degeneration During Postnatal Development of Cochlea in Rats
title_full_unstemmed Single-Cell RNA Sequencing Analysis Reveals Greater Epithelial Ridge Cells Degeneration During Postnatal Development of Cochlea in Rats
title_short Single-Cell RNA Sequencing Analysis Reveals Greater Epithelial Ridge Cells Degeneration During Postnatal Development of Cochlea in Rats
title_sort single-cell rna sequencing analysis reveals greater epithelial ridge cells degeneration during postnatal development of cochlea in rats
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446670/
https://www.ncbi.nlm.nih.gov/pubmed/34540839
http://dx.doi.org/10.3389/fcell.2021.719491
work_keys_str_mv AT chenjianyong singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT gaodekun singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT chenjunmin singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT houshule singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT hebaihui singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT liyue singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT lishuna singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT zhangfan singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT sunxiayu singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT mammanofabio singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT sunlianhua singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT yangjun singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats
AT zhengguiliang singlecellrnasequencinganalysisrevealsgreaterepithelialridgecellsdegenerationduringpostnataldevelopmentofcochleainrats