Proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.

Acne vulgaris is a very common disease of the pilosebaceous unit of the human skin. The pathological processes of acne are not fully understood. To gain further insight sebaceous follicular casts were extracted from 18 healthy and 20 acne-affected individuals by cyanoacrylate-gel biopsies and furthe...

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Main Authors: Malene Bek-Thomsen, Hans B Lomholt, Carsten Scavenius, Jan J Enghild, Holger Brüggemann
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0107908
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spelling doaj-bb8636b1dc664f7f94d5e7a5e344e0bd2021-03-04T09:00:21ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0199e10790810.1371/journal.pone.0107908Proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.Malene Bek-ThomsenHans B LomholtCarsten ScaveniusJan J EnghildHolger BrüggemannAcne vulgaris is a very common disease of the pilosebaceous unit of the human skin. The pathological processes of acne are not fully understood. To gain further insight sebaceous follicular casts were extracted from 18 healthy and 20 acne-affected individuals by cyanoacrylate-gel biopsies and further processed for mass spectrometry analysis, aiming at a proteomic analysis of the sebaceous follicular casts. Human as well as bacterial proteins were identified. Human proteins enriched in acne and normal samples were detected, respectively. Normal follicular casts are enriched in proteins such as prohibitins and peroxiredoxins which are involved in the protection from various stresses, including reactive oxygen species. By contrast, follicular casts extracted from acne-affected skin contained proteins involved in inflammation, wound healing and tissue remodeling. Among the most distinguishing proteins were myeloperoxidase, lactotransferrin, neutrophil elastase inhibitor and surprisingly, vimentin. The most significant biological process among all acne-enriched proteins was 'response to a bacterium'. Identified bacterial proteins were exclusively from Propionibacterium acnes. The most abundant P. acnes proteins were surface-exposed dermatan sulphate adhesins, CAMP factors, and a so far uncharacterized lipase in follicular casts extracted from normal as well as acne-affected skin. This is a first proteomic study that identified human proteins together with proteins of the skin microbiota in sebaceous follicular casts.https://doi.org/10.1371/journal.pone.0107908
collection DOAJ
language English
format Article
sources DOAJ
author Malene Bek-Thomsen
Hans B Lomholt
Carsten Scavenius
Jan J Enghild
Holger Brüggemann
spellingShingle Malene Bek-Thomsen
Hans B Lomholt
Carsten Scavenius
Jan J Enghild
Holger Brüggemann
Proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.
PLoS ONE
author_facet Malene Bek-Thomsen
Hans B Lomholt
Carsten Scavenius
Jan J Enghild
Holger Brüggemann
author_sort Malene Bek-Thomsen
title Proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.
title_short Proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.
title_full Proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.
title_fullStr Proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.
title_full_unstemmed Proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.
title_sort proteome analysis of human sebaceous follicle infundibula extracted from healthy and acne-affected skin.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Acne vulgaris is a very common disease of the pilosebaceous unit of the human skin. The pathological processes of acne are not fully understood. To gain further insight sebaceous follicular casts were extracted from 18 healthy and 20 acne-affected individuals by cyanoacrylate-gel biopsies and further processed for mass spectrometry analysis, aiming at a proteomic analysis of the sebaceous follicular casts. Human as well as bacterial proteins were identified. Human proteins enriched in acne and normal samples were detected, respectively. Normal follicular casts are enriched in proteins such as prohibitins and peroxiredoxins which are involved in the protection from various stresses, including reactive oxygen species. By contrast, follicular casts extracted from acne-affected skin contained proteins involved in inflammation, wound healing and tissue remodeling. Among the most distinguishing proteins were myeloperoxidase, lactotransferrin, neutrophil elastase inhibitor and surprisingly, vimentin. The most significant biological process among all acne-enriched proteins was 'response to a bacterium'. Identified bacterial proteins were exclusively from Propionibacterium acnes. The most abundant P. acnes proteins were surface-exposed dermatan sulphate adhesins, CAMP factors, and a so far uncharacterized lipase in follicular casts extracted from normal as well as acne-affected skin. This is a first proteomic study that identified human proteins together with proteins of the skin microbiota in sebaceous follicular casts.
url https://doi.org/10.1371/journal.pone.0107908
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