Proteomics

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The Matrisome Reveals the Characterization of Skin Keloid Microenvironment


ABSTRACT: Keloids are fibroproliferative dermal tumors of unknown origin that are characterized by the overabundant accumulation of extracellular matrix (ECM) components. The mechanism of keloid formation has remained unclear because of a poor understanding of its molecular basis. In this study, the dermal ECM components of keloids were identified, and the pathological mechanism of keloid formation was characterized using large-scale, quantitative proteomic analyses of decellularized keloid biomatrix scaffolds. We identified a total of 267 dermal core ECM and ECM-associated proteins that were differentially expressed between patients with keloids and healthy controls. Skin mechanical properties, key pathways, and biological processes including protease activity, wound healing, and adhesion were disordered in keloids. The integrated network analysis of the upregulated ECM proteins revealed the involvement of estrogen signaling pathways in keloid formation. Our findings may improve the scientific basis of keloid treatment and provide new ideas for the establishment of keloid models.

ORGANISM(S): Homo Sapiens

SUBMITTER: Yunping Zhu  

PROVIDER: PXD019052 | iProX | Fri May 08 00:00:00 BST 2020

REPOSITORIES: iProX

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The "Matrisome" reveals the characterization of skin keloid microenvironment.

Zhang Shikun S   Liu Binghui B   Wang Wenjuan W   Lv Luye L   Gao Dunqin D   Chai Mi M   Li Mansheng M   Wu Zhihong Z   Zhu Yunping Y   Ma Jie J   Leng Ling L  

FASEB journal : official publication of the Federation of American Societies for Experimental Biology 20210401 4


Keloids are fibroproliferative dermal tumors of unknown origin that are characterized by the overabundant accumulation of extracellular matrix (ECM) components. The mechanism of keloid formation has remained unclear because of a poor understanding of its molecular basis. In this study, the dermal ECM components of keloids were identified and the pathological features of keloid formation were characterized using large-scale quantitative proteomic analyses of decellularized keloid biomatrix scaffo  ...[more]

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