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Enrichment of IGF-1R and PPARγ signalling pathways in orbital inflammatory diseases: steps toward understanding pathogenesis

Authors :
Bobby S. Korn
Haila Al-Hussain
Gerald J. Harris
Rohan Verma
James T. Rosenbaum
Don O. Kikkawa
Chris Alabiad
Armando L. Garcia
Michael Kazim
Dongseok Choi
Deepak P. Edward
John D. Ng
Roger A. Dailey
Craig N. Czyz
Allison J Chen
Christina A. Harrington
David J. Wilson
Azza Maktabi
Jill A. Foster
Hans E. Grossniklaus
Stephen R. Planck
Eric A. Steele
Source :
British Journal of Ophthalmology. 106:1012-1017
Publication Year :
2021
Publisher :
BMJ, 2021.

Abstract

BackgroundOrbital inflammatory disease (OID) encompasses a wide range of pathology including thyroid-associated orbitopathy (TAO), granulomatosis with polyangiitis (GPA), sarcoidosis and non-specific orbital inflammation (NSOI), accounting for up to 6% of orbital diseases. Understanding the underlying pathophysiology of OID can improve diagnosis and help target therapy.AimsTo test the hypothesis that shared signalling pathways are activated in different forms of OID.MethodsIn this secondary analysis, pathway analysis was performed on the previously reported differentially expressed genes from orbital adipose tissue using patients with OID and healthy controls who were characterised by microarray. For the original publications, tissue specimens were collected from oculoplastic surgeons at 10 international centres representing four countries (USA, Canada, Australia and Saudi Arabia). Diagnoses were independently confirmed by two masked ocular pathologists (DJW, HEG). Gene expression profiling analysis was performed at the Oregon Health & Science University. Eighty-three participants were included: 25 with TAO, 6 with orbital GPA, 7 with orbital sarcoidosis, 25 with NSOI and 20 healthy controls.ResultsAmong the 83 subjects (mean (SD) age, 52.8 (18.3) years; 70% (n=58) female), those with OID demonstrated perturbation of the downstream gene expressions of the IGF-1R (MAPK/RAS/RAF/MEK/ERK and PI3K/Akt/mTOR pathways), peroxisome proliferator-activated receptor-γ (PPARγ), adipocytokine and AMPK signalling pathways compared with healthy controls. Specifically, GPA samples differed from controls in gene expression within the insulin-like growth factor-1 receptor (IGF-1R, PI3K-Akt (p=0.001), RAS (p=0.005)), PPARγ (p=0.002), adipocytokine (p=0.004) or AMPK (p=ConclusionsAlthough OID includes a heterogenous group of pathologies, TAO, GPA, sarcoidosis and NSOI share enrichment of common gene signalling pathways, namely IGF-1R, PPARγ, adipocytokine and AMPK. Pathway analyses of gene expression suggest that other forms of orbital inflammation in addition to TAO may benefit from blockade of IGF-1R signalling pathways.

Details

ISSN :
14682079 and 00071161
Volume :
106
Database :
OpenAIRE
Journal :
British Journal of Ophthalmology
Accession number :
edsair.doi.dedup.....0ee0cbed5423a39af66c013ed09467e6
Full Text :
https://doi.org/10.1136/bjophthalmol-2020-318330