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Spatial Transcriptomics Resolve an Emphysema-specific Lymphoid Follicle B Cell Signature in COPD.
Rojas-Quintero, Joselyn; Ochsner, Scott A; New, Felicia; Divakar, Prajan; Yang, Chen Xi; Wu, Tianshi David; Robinson, Jerid; Shimoga Chandrashekar, Darshan; Banovich, Nicholas E; Rosas, Ivan O; Sauler, Maor; Kheradmand, Farrah; Gaggar, Amit; Margaroli, Camilla; San Jose Estepar, Raul; McKenna, Neil J; Polverino, Francesca.
Afiliação
  • Rojas-Quintero J; Baylor College of Medicine Department of Medicine, 171841, Pulmonary, Critical Care and Sleep Medicine, Houston, Texas, United States.
  • Ochsner SA; Baylor College of Medicine, 3989, Department of Molecular and Cellular Biology, Houston, Texas, United States.
  • New F; NanoString Technologies Inc, 446132, Spatial Data Analysis Services, sDAS, Seattle, Washington, United States.
  • Divakar P; NanoString Technologies Inc, 446132, Seattle, Washington, United States.
  • Yang CX; University of British Columbia, 8166, Vancouver, British Columbia, Canada.
  • Wu TD; Baylor College of Medicine, 3989, Pulmonary Division, Houston, Texas, United States.
  • Robinson J; NanoString Technologies Inc, 446132, Seattle, Washington, United States.
  • Shimoga Chandrashekar D; The University of Alabama at Birmingham Department of Medicine, 164494, Pathology - Division of Genomic Diagnostics & Bioinformatics, Birmingham, Alabama, United States.
  • Banovich NE; Translational Genomics Research Institute, 10897, Phoenix, Arizona, United States.
  • Rosas IO; Brigham and Women's Hospital, 1861, Department of Medicine, Division of Pulmonary and Critical Care Medicine, Boston, Massachusetts, United States.
  • Sauler M; Yale School of Medicine, Pulmonay, Critical Care and Sleep, New Haven, Connecticut, United States.
  • Kheradmand F; Baylor College of Medicine, Houston, Texas, United States.
  • Gaggar A; University of Alabama at Birmingham, 9968, Birmingham, Alabama, United States.
  • Margaroli C; The University of Alabama at Birmingham School of Medicine, 9967, Lung Health Center, Division of Pulmonary, Allergy & Critical Care Medicine, Department of Medicine, Birmingham, Alabama, United States.
  • San Jose Estepar R; The University of Alabama at Birmingham School of Medicine, 9967, Program in Protease and Matrix Biology, Department of Medicine, Birmingham, Alabama, United States.
  • McKenna NJ; Brigham and Women's Hospital, Radiology, Boston, Massachusetts, United States.
  • Polverino F; Baylor College of Medicine, 3989, Department of Molecular and Cellular Biology, Houston, Texas, United States.
Article em En | MEDLINE | ID: mdl-38064378
ABSTRACT
RATIONALE Within chronic obstructive pulmonary disease (COPD), emphysema is characterized by a significant yet partially understood B cell immune component.

OBJECTIVE:

To characterize the transcriptomic signatures from lymphoid follicles (LFs) in ever-smokers without COPD and COPD patients with varying degrees of emphysema.

METHODS:

Lung sections from 40 COPD patients and ever-smokers were used for LF proteomic and transcriptomic spatial profiling. Formalin and OCT-fixed lung samples obtained from biopsies or lung explants, were assessed for LF presence. Emphysema measurements were obtained from clinical chest CT scans. High confidence transcriptional (HCT) target intersection analyses were conducted to resolve emphysema-induced transcriptional networks. MEASUREMENTS AND MAIN

RESULTS:

Overall, 115 LFs from ever-smokers and GOLD 1-2 and GOLD 3-4 patients were analyzed. No LFs were found in never-smokers. Differential gene expression analysis revealed significantly increased expression of LF assembly and B cell markers genes in subjects with severe emphysema. HCT analysis revealed activation of abnormal B cell activity signature in LFs (q-value 2.56E-111). LFs from GOLD 1-2 COPD patients with emphysema showed significantly increased expression of genes associated with antigen presentation, inflammation, and B cell activation and proliferation. LFs from GOLD 1-2 COPD patients without emphysema showed an anti-inflammatory profile. The extent of centrilobular emphysema was significantly associated with genes involved in B cell maturation and antibody production. Protein-RNA network analysis showed that LFs in emphysema have a unique signature skewed towards chronic B cell activation.

CONCLUSIONS:

An off-targeted B cell activation within LFs is associated with autoimmune-mediated emphysema pathogenesis.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article