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In-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration

INTRODUCTION: Age-related macular degeneration (AMD), an ever-increasing ocular disease, has become one of the leading causes of irreversible blindness. Recent advances in single-cell genomics are improving our understanding of the molecular mechanisms of AMD. However, the pathophysiology of this mu...

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Autores principales: Wang, Wencan, Lin, Peng, Wang, Siyu, Zhang, Guosi, Chen, Chong, Lu, Xiaoyan, Zhuang, Youyuan, Su, Jianzhong, Wang, Hong, Xu, Liangde
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235539/
https://www.ncbi.nlm.nih.gov/pubmed/37273909
http://dx.doi.org/10.3389/fnmol.2023.1173123
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author Wang, Wencan
Lin, Peng
Wang, Siyu
Zhang, Guosi
Chen, Chong
Lu, Xiaoyan
Zhuang, Youyuan
Su, Jianzhong
Wang, Hong
Xu, Liangde
author_facet Wang, Wencan
Lin, Peng
Wang, Siyu
Zhang, Guosi
Chen, Chong
Lu, Xiaoyan
Zhuang, Youyuan
Su, Jianzhong
Wang, Hong
Xu, Liangde
author_sort Wang, Wencan
collection PubMed
description INTRODUCTION: Age-related macular degeneration (AMD), an ever-increasing ocular disease, has become one of the leading causes of irreversible blindness. Recent advances in single-cell genomics are improving our understanding of the molecular mechanisms of AMD. However, the pathophysiology of this multifactorial disease is complicated and still an ongoing challenge. To better understand disease pathogenesis and identify effective targets, we conducted an in-depth analysis of the single-cell transcriptome of AMD. METHODS: The cell expression specificity of the gene (CESG) was selected as an index to identify the novel cell markers. A computational framework was designed to explore the cell-specific TF regulatory loops, containing the interaction of gene pattern signatures, transcription factors regulons, and differentially expressed genes. RESULTS: Three potential novel cell markers were DNASE1L3 for endothelial cells, ABCB5 for melanocytes, and SLC39A12 for RPE cells detected. We observed a notable change in the cell abundance and crosstalk of fibroblasts cells, melanocytes, schwann cells, and T/NK cells between AMD and controls, representing a complex cellular ecosystem in disease status. Finally, we identified six cell type related and three disease-associated ternary loops and elaborated on the robust association between key immune-pathway and AMD. DISCUSSION: In conclusion, this study facilitates the optimization of screening for AMD-related receptor ligand pathways and proposes to further improve the interpretability of disease associations from single-cell data. It illuminated that immune-related regulation paths could be used as potential diagnostic markers for AMD, and in the future, also as therapeutic targets, providing insights into AMD diagnosis and potential interventions.
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spelling pubmed-102355392023-06-03 In-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration Wang, Wencan Lin, Peng Wang, Siyu Zhang, Guosi Chen, Chong Lu, Xiaoyan Zhuang, Youyuan Su, Jianzhong Wang, Hong Xu, Liangde Front Mol Neurosci Molecular Neuroscience INTRODUCTION: Age-related macular degeneration (AMD), an ever-increasing ocular disease, has become one of the leading causes of irreversible blindness. Recent advances in single-cell genomics are improving our understanding of the molecular mechanisms of AMD. However, the pathophysiology of this multifactorial disease is complicated and still an ongoing challenge. To better understand disease pathogenesis and identify effective targets, we conducted an in-depth analysis of the single-cell transcriptome of AMD. METHODS: The cell expression specificity of the gene (CESG) was selected as an index to identify the novel cell markers. A computational framework was designed to explore the cell-specific TF regulatory loops, containing the interaction of gene pattern signatures, transcription factors regulons, and differentially expressed genes. RESULTS: Three potential novel cell markers were DNASE1L3 for endothelial cells, ABCB5 for melanocytes, and SLC39A12 for RPE cells detected. We observed a notable change in the cell abundance and crosstalk of fibroblasts cells, melanocytes, schwann cells, and T/NK cells between AMD and controls, representing a complex cellular ecosystem in disease status. Finally, we identified six cell type related and three disease-associated ternary loops and elaborated on the robust association between key immune-pathway and AMD. DISCUSSION: In conclusion, this study facilitates the optimization of screening for AMD-related receptor ligand pathways and proposes to further improve the interpretability of disease associations from single-cell data. It illuminated that immune-related regulation paths could be used as potential diagnostic markers for AMD, and in the future, also as therapeutic targets, providing insights into AMD diagnosis and potential interventions. Frontiers Media S.A. 2023-05-19 /pmc/articles/PMC10235539/ /pubmed/37273909 http://dx.doi.org/10.3389/fnmol.2023.1173123 Text en Copyright © 2023 Wang, Lin, Wang, Zhang, Chen, Lu, Zhuang, Su, Wang and Xu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Molecular Neuroscience
Wang, Wencan
Lin, Peng
Wang, Siyu
Zhang, Guosi
Chen, Chong
Lu, Xiaoyan
Zhuang, Youyuan
Su, Jianzhong
Wang, Hong
Xu, Liangde
In-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration
title In-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration
title_full In-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration
title_fullStr In-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration
title_full_unstemmed In-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration
title_short In-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration
title_sort in-depth mining of single-cell transcriptome reveals the key immune-regulated loops in age-related macular degeneration
topic Molecular Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235539/
https://www.ncbi.nlm.nih.gov/pubmed/37273909
http://dx.doi.org/10.3389/fnmol.2023.1173123
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