| Literature DB >> 30849202 |
Abdulnaser Alkhalil1, Bonnie C Carney1,2, Taryn E Travis1,3, Seid Muhie4, Stacy Ann Miller4, Jessica C Ramella-Roman5, Pehman Ghassemi6, Rasha Hammamieh4, Marti Jett4, Lauren T Moffatt1,2, Jeffrey W Shupp1,2,3,7.
Abstract
Although pigment synthesis is well understood, relevant mechanisms of psychologically debilitating dyspigmentation in nascent tissue after cutaneous injuries are still unknown. Here, differences in genomic transcription of hyper- and hypopigmented tissue relative to uninjured skin were investigated using a red Duroc swine scar model. Transcription profiles differed based on pigmentation phenotypes with a trend of more upregulation or downregulation in hyper- or hypopigmented scars, respectively. Ingenuity Pathway Analysis of significantly modulated genes in both pigmentation phenotypes showed pathways related to redox, metabolic, and inflammatory responses were more present in hypopigmented samples, while those related to stem cell development differentiation were found mainly in hyperpigmented samples. Cell-cell and cell-extracellular matrix interactions and inflammation responses were predicted (z-score) active in hyperpigmented and inactive in hypopigmented. The proinflammatory high-mobility group box 1 pathway showed the opposite trend. Analysis of differentially regulated mutually exclusive genes showed an extensive presence of metabolic, proinflammatory, and oxidative stress pathways in hypopigmented scars, while melanin synthesis, glycosaminoglycans biosynthesis, and cell differentiation pathways were predominant in hyperpigmented scar. Several potential therapeutic gene targets have been identified.Entities:
Keywords: dyspigmentation; red Duroc; scar; transcriptome; wound
Mesh:
Substances:
Year: 2019 PMID: 30849202 PMCID: PMC6697599 DOI: 10.1111/pcmr.12780
Source DB: PubMed Journal: Pigment Cell Melanoma Res ISSN: 1755-1471 Impact factor: 4.693