Changes in dermal matrix in the absence of Rac1 in keratinocytes

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Standard

Changes in dermal matrix in the absence of Rac1 in keratinocytes. / Stanley, Alanna; Pedersen, Esben Ditlev Kølle; Brakebusch, Cord; Quondamatteo, Fabio.

I: Journal of Anatomy, Bind 228, Nr. 5, 05.2016, s. 826-37.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Stanley, A, Pedersen, EDK, Brakebusch, C & Quondamatteo, F 2016, 'Changes in dermal matrix in the absence of Rac1 in keratinocytes', Journal of Anatomy, bind 228, nr. 5, s. 826-37. https://doi.org/10.1111/joa.12442

APA

Stanley, A., Pedersen, E. D. K., Brakebusch, C., & Quondamatteo, F. (2016). Changes in dermal matrix in the absence of Rac1 in keratinocytes. Journal of Anatomy, 228(5), 826-37. https://doi.org/10.1111/joa.12442

Vancouver

Stanley A, Pedersen EDK, Brakebusch C, Quondamatteo F. Changes in dermal matrix in the absence of Rac1 in keratinocytes. Journal of Anatomy. 2016 maj;228(5):826-37. https://doi.org/10.1111/joa.12442

Author

Stanley, Alanna ; Pedersen, Esben Ditlev Kølle ; Brakebusch, Cord ; Quondamatteo, Fabio. / Changes in dermal matrix in the absence of Rac1 in keratinocytes. I: Journal of Anatomy. 2016 ; Bind 228, Nr. 5. s. 826-37.

Bibtex

@article{80ac19e9343d4f41904690706abedce0,
title = "Changes in dermal matrix in the absence of Rac1 in keratinocytes",
abstract = "Keratinocytes, in response to irritants, secrete pro-inflammatory mediators which recruit and activate immune and mesenchymal cells, including fibroblasts, to repair the skin. Fibroblasts respond by synthesising collagen and promoting the crosslinking extracellular matrix (ECM). We recently showed that the deletion of Rac1 in keratinocytes causes heightened inflammation due to aberrant crosstalk with immune cells. Indeed, the skin of these mice shows a higher inflammatory response to the induction of irritant contact dermatitis (ICD), and also even to treatment with a vehicle alone, compared with controls. As inflammation is intimately linked with fibrotic disease in the skin, this raised the question as to whether this deletion may also affect the deposition and arrangement of the dermal ECM. This study assessed the effects of Rac1 deletion in keratinocytes and of the heightened inflammatory status by induction of ICD on the tissue localisation and arrangements of dermal collagen. Qualitative analysis did not reveal evidence for the formation of pathologies in the dermis. However, quantitative analysis did reveal some perturbations in the dermal matrix, namely that only the combination of the lack of Rac1 and ICD affects the architectural organisation of the dermal collagen, and that a higher inflammatory state in the tissue (i.e. when Rac1 is deleted in the keratinocytes or ICD is induced in the skin, or a combination of both) influences the diameter of the collagen fibrils. It is proposed that this increase in the diameter of collagen fibrils due to inflammation may serve as pre-fibrotic marker enabling earlier determination of fibrosis and earlier treatment. This study has revealed previously unknown effects on the ECM due to the deletion of Rac1 in keratinocytes.",
keywords = "Journal Article, Research Support, Non-U.S. Gov't",
author = "Alanna Stanley and Pedersen, {Esben Ditlev K{\o}lle} and Cord Brakebusch and Fabio Quondamatteo",
note = "{\textcopyright} 2016 Anatomical Society.",
year = "2016",
month = may,
doi = "10.1111/joa.12442",
language = "English",
volume = "228",
pages = "826--37",
journal = "Journal of Anatomy",
issn = "0021-8782",
publisher = "Wiley-Blackwell",
number = "5",

}

RIS

TY - JOUR

T1 - Changes in dermal matrix in the absence of Rac1 in keratinocytes

AU - Stanley, Alanna

AU - Pedersen, Esben Ditlev Kølle

AU - Brakebusch, Cord

AU - Quondamatteo, Fabio

N1 - © 2016 Anatomical Society.

PY - 2016/5

Y1 - 2016/5

N2 - Keratinocytes, in response to irritants, secrete pro-inflammatory mediators which recruit and activate immune and mesenchymal cells, including fibroblasts, to repair the skin. Fibroblasts respond by synthesising collagen and promoting the crosslinking extracellular matrix (ECM). We recently showed that the deletion of Rac1 in keratinocytes causes heightened inflammation due to aberrant crosstalk with immune cells. Indeed, the skin of these mice shows a higher inflammatory response to the induction of irritant contact dermatitis (ICD), and also even to treatment with a vehicle alone, compared with controls. As inflammation is intimately linked with fibrotic disease in the skin, this raised the question as to whether this deletion may also affect the deposition and arrangement of the dermal ECM. This study assessed the effects of Rac1 deletion in keratinocytes and of the heightened inflammatory status by induction of ICD on the tissue localisation and arrangements of dermal collagen. Qualitative analysis did not reveal evidence for the formation of pathologies in the dermis. However, quantitative analysis did reveal some perturbations in the dermal matrix, namely that only the combination of the lack of Rac1 and ICD affects the architectural organisation of the dermal collagen, and that a higher inflammatory state in the tissue (i.e. when Rac1 is deleted in the keratinocytes or ICD is induced in the skin, or a combination of both) influences the diameter of the collagen fibrils. It is proposed that this increase in the diameter of collagen fibrils due to inflammation may serve as pre-fibrotic marker enabling earlier determination of fibrosis and earlier treatment. This study has revealed previously unknown effects on the ECM due to the deletion of Rac1 in keratinocytes.

AB - Keratinocytes, in response to irritants, secrete pro-inflammatory mediators which recruit and activate immune and mesenchymal cells, including fibroblasts, to repair the skin. Fibroblasts respond by synthesising collagen and promoting the crosslinking extracellular matrix (ECM). We recently showed that the deletion of Rac1 in keratinocytes causes heightened inflammation due to aberrant crosstalk with immune cells. Indeed, the skin of these mice shows a higher inflammatory response to the induction of irritant contact dermatitis (ICD), and also even to treatment with a vehicle alone, compared with controls. As inflammation is intimately linked with fibrotic disease in the skin, this raised the question as to whether this deletion may also affect the deposition and arrangement of the dermal ECM. This study assessed the effects of Rac1 deletion in keratinocytes and of the heightened inflammatory status by induction of ICD on the tissue localisation and arrangements of dermal collagen. Qualitative analysis did not reveal evidence for the formation of pathologies in the dermis. However, quantitative analysis did reveal some perturbations in the dermal matrix, namely that only the combination of the lack of Rac1 and ICD affects the architectural organisation of the dermal collagen, and that a higher inflammatory state in the tissue (i.e. when Rac1 is deleted in the keratinocytes or ICD is induced in the skin, or a combination of both) influences the diameter of the collagen fibrils. It is proposed that this increase in the diameter of collagen fibrils due to inflammation may serve as pre-fibrotic marker enabling earlier determination of fibrosis and earlier treatment. This study has revealed previously unknown effects on the ECM due to the deletion of Rac1 in keratinocytes.

KW - Journal Article

KW - Research Support, Non-U.S. Gov't

U2 - 10.1111/joa.12442

DO - 10.1111/joa.12442

M3 - Journal article

C2 - 26889750

VL - 228

SP - 826

EP - 837

JO - Journal of Anatomy

JF - Journal of Anatomy

SN - 0021-8782

IS - 5

ER -

ID: 169564070