Time-Resolved Extracellular Matrix Atlas of the Developing Human Skin Dermis

Skin aging is a physiological issue that is still relatively poorly understood. Studies have demonstrated that the dermal extracellular matrix (ECM) plays important roles in skin aging. However, the roles of the changes in ECM characteristics and the molecules that are secreted to the extracellular...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Mansheng Li, Xiao Li, Binghui Liu, Luye Lv, Wenjuan Wang, Dunqin Gao, Qiyu Zhang, Junyi Jiang, Mi Chai, Zhimin Yun, Yingxia Tan, Feng Gong, Zhihong Wu, Yunping Zhu, Jie Ma, Ling Leng
Formato: article
Lenguaje:EN
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://doaj.org/article/9ffd307b452d491584a6dcdba5095808
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:9ffd307b452d491584a6dcdba5095808
record_format dspace
spelling oai:doaj.org-article:9ffd307b452d491584a6dcdba50958082021-12-01T07:11:02ZTime-Resolved Extracellular Matrix Atlas of the Developing Human Skin Dermis2296-634X10.3389/fcell.2021.783456https://doaj.org/article/9ffd307b452d491584a6dcdba50958082021-11-01T00:00:00Zhttps://www.frontiersin.org/articles/10.3389/fcell.2021.783456/fullhttps://doaj.org/toc/2296-634XSkin aging is a physiological issue that is still relatively poorly understood. Studies have demonstrated that the dermal extracellular matrix (ECM) plays important roles in skin aging. However, the roles of the changes in ECM characteristics and the molecules that are secreted to the extracellular space and are involved in the formation of the dermal matrix from birth to old age remain unclear. To explore the way in which the ECM microenvironment supports the functions of skin development across different age groups is also poorly understood, we used a decellularization method and matrisome analysis to compare the composition, expression, and function of the dermal ECM in toddler, teenager, adult, and elderly skin. We found that the collagens, glycoproteins, proteoglycans, and regulatory factors that support skin development and interact with these core ECM proteins were differentially expressed at different ages. ECM expression markers occurring during the process of skin development were identified. In addition, our results elucidated the characteristics of ECM synthesis, response to skin development, and the features of the ECM that support epidermal stem cell growth via the basement membrane during skin aging.Mansheng LiXiao LiBinghui LiuLuye LvWenjuan WangDunqin GaoQiyu ZhangJunyi JiangMi ChaiZhimin YunYingxia TanFeng GongZhihong WuYunping ZhuYunping ZhuJie MaLing LengFrontiers Media S.A.articledecellularizationextracellular matrixmatrisomeskin developmentskin agingBiology (General)QH301-705.5ENFrontiers in Cell and Developmental Biology, Vol 9 (2021)
institution DOAJ
collection DOAJ
language EN
topic decellularization
extracellular matrix
matrisome
skin development
skin aging
Biology (General)
QH301-705.5
spellingShingle decellularization
extracellular matrix
matrisome
skin development
skin aging
Biology (General)
QH301-705.5
Mansheng Li
Xiao Li
Binghui Liu
Luye Lv
Wenjuan Wang
Dunqin Gao
Qiyu Zhang
Junyi Jiang
Mi Chai
Zhimin Yun
Yingxia Tan
Feng Gong
Zhihong Wu
Yunping Zhu
Yunping Zhu
Jie Ma
Ling Leng
Time-Resolved Extracellular Matrix Atlas of the Developing Human Skin Dermis
description Skin aging is a physiological issue that is still relatively poorly understood. Studies have demonstrated that the dermal extracellular matrix (ECM) plays important roles in skin aging. However, the roles of the changes in ECM characteristics and the molecules that are secreted to the extracellular space and are involved in the formation of the dermal matrix from birth to old age remain unclear. To explore the way in which the ECM microenvironment supports the functions of skin development across different age groups is also poorly understood, we used a decellularization method and matrisome analysis to compare the composition, expression, and function of the dermal ECM in toddler, teenager, adult, and elderly skin. We found that the collagens, glycoproteins, proteoglycans, and regulatory factors that support skin development and interact with these core ECM proteins were differentially expressed at different ages. ECM expression markers occurring during the process of skin development were identified. In addition, our results elucidated the characteristics of ECM synthesis, response to skin development, and the features of the ECM that support epidermal stem cell growth via the basement membrane during skin aging.
format article
author Mansheng Li
Xiao Li
Binghui Liu
Luye Lv
Wenjuan Wang
Dunqin Gao
Qiyu Zhang
Junyi Jiang
Mi Chai
Zhimin Yun
Yingxia Tan
Feng Gong
Zhihong Wu
Yunping Zhu
Yunping Zhu
Jie Ma
Ling Leng
author_facet Mansheng Li
Xiao Li
Binghui Liu
Luye Lv
Wenjuan Wang
Dunqin Gao
Qiyu Zhang
Junyi Jiang
Mi Chai
Zhimin Yun
Yingxia Tan
Feng Gong
Zhihong Wu
Yunping Zhu
Yunping Zhu
Jie Ma
Ling Leng
author_sort Mansheng Li
title Time-Resolved Extracellular Matrix Atlas of the Developing Human Skin Dermis
title_short Time-Resolved Extracellular Matrix Atlas of the Developing Human Skin Dermis
title_full Time-Resolved Extracellular Matrix Atlas of the Developing Human Skin Dermis
title_fullStr Time-Resolved Extracellular Matrix Atlas of the Developing Human Skin Dermis
title_full_unstemmed Time-Resolved Extracellular Matrix Atlas of the Developing Human Skin Dermis
title_sort time-resolved extracellular matrix atlas of the developing human skin dermis
publisher Frontiers Media S.A.
publishDate 2021
url https://doaj.org/article/9ffd307b452d491584a6dcdba5095808
work_keys_str_mv AT manshengli timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT xiaoli timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT binghuiliu timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT luyelv timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT wenjuanwang timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT dunqingao timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT qiyuzhang timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT junyijiang timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT michai timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT zhiminyun timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT yingxiatan timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT fenggong timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT zhihongwu timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT yunpingzhu timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT yunpingzhu timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT jiema timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
AT lingleng timeresolvedextracellularmatrixatlasofthedevelopinghumanskindermis
_version_ 1718405430277832704