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Integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study

BACKGROUND: Skin fibrosis is a hallmark feature of systemic sclerosis. Skin biopsy transcriptomics and blister fluid proteomics give insight into the local environment of the skin. We have integrated these modalities with the aim of developing a surrogate for the modified Rodnan skin score (mRSS), u...

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Autores principales: Clark, Kristina E N, Csomor, Eszter, Campochiaro, Corrado, Galwey, Nicholas, Nevin, Katherine, Morse, Mary A, Teo, Yee Voan, Freudenberg, Johannes, Ong, Voon H, Derrett-Smith, Emma, Wisniacki, Nicolas, Flint, Shaun M, Denton, Christopher P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9669928/
https://www.ncbi.nlm.nih.gov/pubmed/36404995
http://dx.doi.org/10.1016/S2665-9913(22)00094-7
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author Clark, Kristina E N
Csomor, Eszter
Campochiaro, Corrado
Galwey, Nicholas
Nevin, Katherine
Morse, Mary A
Teo, Yee Voan
Freudenberg, Johannes
Ong, Voon H
Derrett-Smith, Emma
Wisniacki, Nicolas
Flint, Shaun M
Denton, Christopher P
author_facet Clark, Kristina E N
Csomor, Eszter
Campochiaro, Corrado
Galwey, Nicholas
Nevin, Katherine
Morse, Mary A
Teo, Yee Voan
Freudenberg, Johannes
Ong, Voon H
Derrett-Smith, Emma
Wisniacki, Nicolas
Flint, Shaun M
Denton, Christopher P
author_sort Clark, Kristina E N
collection PubMed
description BACKGROUND: Skin fibrosis is a hallmark feature of systemic sclerosis. Skin biopsy transcriptomics and blister fluid proteomics give insight into the local environment of the skin. We have integrated these modalities with the aim of developing a surrogate for the modified Rodnan skin score (mRSS), using candidate genes and proteins from the skin and blister fluid as anchors to identify key analytes in the plasma. METHODS: In this single-centre, prospective observational study at the Royal Free Campus, University College London, London, UK, transcriptional and proteomic analyses of blood and skin were performed in a cohort of patients with systemic sclerosis (n=52) and healthy controls (n=16). Weighted gene co-expression network analysis was used to explore the association of skin transcriptomics data, clinical traits, and blister fluid proteomic results. Candidate hub analytes were identified as those present in both blister and skin gene sets (modules), and which correlated with plasma (module membership >0·7 and gene significance >0·6). Hub analytes were confirmed using RNA transcript data obtained from skin biopsy samples from patients with early diffuse cutaneous systemic sclerosis at 12 months. FINDINGS: We identified three modules in the skin, and two in blister fluid, which correlated with a diagnosis of early diffuse cutaneous systemic sclerosis. From these modules, 11 key hub analytes were identified, present in both skin and blister fluid modules, whose transcript and protein levels correlated with plasma protein concentrations, mRSS, and showed statistically significant correlation on repeat transcriptomic samples taken at 12 months. Multivariate analysis identified four plasma analytes as correlates of mRSS (COL4A1, COMP, SPON1, and TNC), which can be used to differentiate disease subtype. INTERPRETATION: This unbiased approach has identified potential biological candidates that might be drivers of local skin pathogenesis in systemic sclerosis. By focusing on measurable analytes in the plasma, we generated a promising composite plasma protein biomarker that could be used for assessment of skin severity, case stratification, and as a potential outcome measure for clinical trials and practice. Once fully validated, the biomarker score could replace a clinical score such as the mRSS, which carries substantial variability. FUNDING: GlaxoSmithKline and UK Medical Research Council.
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spelling pubmed-96699282022-11-18 Integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study Clark, Kristina E N Csomor, Eszter Campochiaro, Corrado Galwey, Nicholas Nevin, Katherine Morse, Mary A Teo, Yee Voan Freudenberg, Johannes Ong, Voon H Derrett-Smith, Emma Wisniacki, Nicolas Flint, Shaun M Denton, Christopher P Lancet Rheumatol Articles BACKGROUND: Skin fibrosis is a hallmark feature of systemic sclerosis. Skin biopsy transcriptomics and blister fluid proteomics give insight into the local environment of the skin. We have integrated these modalities with the aim of developing a surrogate for the modified Rodnan skin score (mRSS), using candidate genes and proteins from the skin and blister fluid as anchors to identify key analytes in the plasma. METHODS: In this single-centre, prospective observational study at the Royal Free Campus, University College London, London, UK, transcriptional and proteomic analyses of blood and skin were performed in a cohort of patients with systemic sclerosis (n=52) and healthy controls (n=16). Weighted gene co-expression network analysis was used to explore the association of skin transcriptomics data, clinical traits, and blister fluid proteomic results. Candidate hub analytes were identified as those present in both blister and skin gene sets (modules), and which correlated with plasma (module membership >0·7 and gene significance >0·6). Hub analytes were confirmed using RNA transcript data obtained from skin biopsy samples from patients with early diffuse cutaneous systemic sclerosis at 12 months. FINDINGS: We identified three modules in the skin, and two in blister fluid, which correlated with a diagnosis of early diffuse cutaneous systemic sclerosis. From these modules, 11 key hub analytes were identified, present in both skin and blister fluid modules, whose transcript and protein levels correlated with plasma protein concentrations, mRSS, and showed statistically significant correlation on repeat transcriptomic samples taken at 12 months. Multivariate analysis identified four plasma analytes as correlates of mRSS (COL4A1, COMP, SPON1, and TNC), which can be used to differentiate disease subtype. INTERPRETATION: This unbiased approach has identified potential biological candidates that might be drivers of local skin pathogenesis in systemic sclerosis. By focusing on measurable analytes in the plasma, we generated a promising composite plasma protein biomarker that could be used for assessment of skin severity, case stratification, and as a potential outcome measure for clinical trials and practice. Once fully validated, the biomarker score could replace a clinical score such as the mRSS, which carries substantial variability. FUNDING: GlaxoSmithKline and UK Medical Research Council. Elsevier Ltd 2022-06-23 /pmc/articles/PMC9669928/ /pubmed/36404995 http://dx.doi.org/10.1016/S2665-9913(22)00094-7 Text en © 2022 The Author(s). Published by Elsevier Ltd. This is an Open Access article under the CC BY 4.0 license https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Articles
Clark, Kristina E N
Csomor, Eszter
Campochiaro, Corrado
Galwey, Nicholas
Nevin, Katherine
Morse, Mary A
Teo, Yee Voan
Freudenberg, Johannes
Ong, Voon H
Derrett-Smith, Emma
Wisniacki, Nicolas
Flint, Shaun M
Denton, Christopher P
Integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study
title Integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study
title_full Integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study
title_fullStr Integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study
title_full_unstemmed Integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study
title_short Integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study
title_sort integrated analysis of dermal blister fluid proteomics and genome-wide skin gene expression in systemic sclerosis: an observational study
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9669928/
https://www.ncbi.nlm.nih.gov/pubmed/36404995
http://dx.doi.org/10.1016/S2665-9913(22)00094-7
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