Literature DB >> 27312025

Sebaceous Gland Atrophy in Psoriasis: An Explanation for Psoriatic Alopecia?

Laure Rittié1, Trilokraj Tejasvi2, Paul W Harms3, Xianying Xing1, Rajan P Nair1, Johann E Gudjonsson1, William R Swindell1, James T Elder4.   

Abstract

In a transcriptome study of lesional psoriatic skin (PP) versus normal skin, we found a coexpressed gene module (N5) enriched 11.5-fold for lipid biosynthetic genes. We also observed fewer visible hairs in PP skin, compared with uninvolved nonlesional psoriatic skin or normal skin (P < 0.0001). To ask whether these findings might be due to abnormalities of the pilosebaceous unit, we carried out three-dimensional morphometric analysis of paired PP and nonlesional psoriatic skin biopsies. Sebaceous glands were markedly atrophic in PP versus nonlesional psoriatic skin (91% average reduction in volume, P = 0.031). Module N5 genes were strongly downregulated in PP versus normal skin (fold change < 0.25, 44.4-fold) and strongly upregulated in sebaceous hyperplasia (fold change > 4, 54.1-fold). The intersection of PP-downregulated and sebaceous hyperplasia-upregulated gene lists generated a gene expression signature consisting solely of module N5 genes, whose expression in PP versus normal skin was inversely correlated with the signature of IL17-stimulated keratinocytes. Despite loss of visible hairs, morphometry identified elongated follicles in PP versus nonlesional psoriatic skin (average 1.7 vs. 1.2 μm, P = 0.020). These results document sebaceous gland atrophy in nonscalp psoriasis, identify a cytokine-regulated set of sebaceous gland signature genes, and suggest that loss of visible hair in PP skin may result from abnormal sebaceous gland function.
Copyright © 2016 The Authors. Published by Elsevier Inc. All rights reserved.

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Year:  2016        PMID: 27312025      PMCID: PMC5112032          DOI: 10.1016/j.jid.2016.05.113

Source DB:  PubMed          Journal:  J Invest Dermatol        ISSN: 0022-202X            Impact factor:   8.551


  57 in total

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3.  PPARγ-mediated and arachidonic acid-dependent signaling is involved in differentiation and lipid production of human sebocytes.

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Journal:  J Invest Dermatol       Date:  2013-10-15       Impact factor: 8.551

4.  Asebia-2J (Scd1(ab2J)): a new allele and a model for scarring alopecia.

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8.  Keratinocyte differentiation in psoriatic scalp: morphology and expression of epithelial keratins.

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9.  Genetic architecture of mouse skin inflammation and tumour susceptibility.

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10.  Cellular dissection of psoriasis for transcriptome analyses and the post-GWAS era.

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2.  Endogenous Glucocorticoid Deficiency in Psoriasis Promotes Inflammation and Abnormal Differentiation.

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3.  Epidermal PPARγ Is a Key Homeostatic Regulator of Cutaneous Inflammation and Barrier Function in Mouse Skin.

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4.  Psoriatic Alopecia in a Patient with Systemic Lupus Erythematosus.

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Review 5.  Adipokines in the Skin and in Dermatological Diseases.

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7.  CHAC1 as a novel biomarker for distinguishing alopecia from other dermatological diseases and determining its severity.

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Review 8.  Sebaceous-immunobiology is orchestrated by sebum lipids.

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  8 in total

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