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Scanning Electron Microscopy of Macerated Tissue to Visualize the Extracellular Matrix
Published on: June 14, 2016
A novel multi-network approach reveals tissue-specific cellular modulators of fibrosis in systemic sclerosis
Jaclyn N Taroni1, Casey S Greene2, Viktor Martyanov1
1Department of Molecular and Systems Biology, Geisel School of Medicine at Dartmouth, 7400 Remsen, Hanover, NH, 03755, USA.
Background:
Systemic sclerosis (SSc) is a multi-organ autoimmune disease characterized by skin fibrosis. Internal organ involvement is heterogeneous. It is unknown whether disease mechanisms are common across all involved affected tissues or if each manifestation has a distinct underlying pathology.
Methods:
We used consensus clustering to compare gene expression profiles of biopsies from four SSc-affected tissues (skin, lung, esophagus, and peripheral blood) from patients with SSc, and the related conditions pulmonary fibrosis (PF) and pulmonary arterial hypertension, and derived a consensus disease-associate signature across all tissues. We used this signature to query tissue-specific functional genomic networks. We performed novel network analyses to contrast the skin and lung microenvironments and to assess the functional role of the inflammatory and fibrotic genes in each organ. Lastly, we tested the expression of macrophage activation state-associated gene sets for enrichment in skin and lung using a Wilcoxon rank sum test.
Results:
We identified a common pathogenic gene expression signature-an immune-fibrotic axis-indicative of pro-fibrotic macrophages (MØs) in multiple tissues (skin, lung, esophagus, and peripheral blood mononuclear cells) affected by SSc. While the co-expression of these genes is common to all tissues, the functional consequences of this upregulation differ by organ. We used this disease-associated signature to query tissue-specific functional genomic networks to identify common and tissue-specific pathologies of SSc and related conditions. In contrast to skin, in the lung-specific functional network we identify a distinct lung-resident MØ signature associated with lipid stimulation and alternative activation. In keeping with our network results, we find distinct MØ alternative activation transcriptional programs in SSc-associated PF lung and in the skin of patients with an "inflammatory" SSc gene expression signature.
Conclusions:
Our results suggest that the innate immune system is central to SSc disease processes but that subtle distinctions exist between tissues. Our approach provides a framework for examining molecular signatures of disease in fibrosis and autoimmune diseases and for leveraging publicly available data to understand common and tissue-specific disease processes in complex human diseases.
Insights
Systemic sclerosis (SSc) involves a common immune-fibrotic gene signature across tissues, but macrophage activation differs, revealing organ-specific pathologies in this autoimmune fibrotic disease.
Area of Science:
- Immunology
- Genomics
- Fibrosis Research
Background:
- Systemic sclerosis (SSc) is a multi-organ autoimmune disease with heterogeneous internal organ involvement.
- The underlying pathology across different affected tissues in SSc remains unclear, with questions about common versus distinct disease mechanisms.
Purpose of the Study:
- To investigate common and tissue-specific molecular mechanisms in Systemic Sclerosis (SSc) across multiple affected organs.
- To identify a shared gene expression signature and explore organ-specific functional genomic networks in SSc.
Main Methods:
- Consensus clustering of gene expression profiles from SSc-affected skin, lung, esophagus, and blood.
- Analysis of tissue-specific functional genomic networks and macrophage activation states.
Main Results:
- A common immune-fibrotic gene signature, linked to pro-fibrotic macrophages, was identified across SSc-affected tissues.
- Distinct macrophage activation signatures were observed in lung (lipid-associated) versus skin (inflammatory) in SSc.
Conclusions:
- The innate immune system plays a central role in SSc, with tissue-specific variations in macrophage activation.
- This study provides a framework for analyzing molecular signatures in complex fibrotic and autoimmune diseases.
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