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1.
PLoS Comput Biol ; 18(9): e1010468, 2022 09.
Article in English | MEDLINE | ID: mdl-36095011

ABSTRACT

Studies comparing single cell RNA-Seq (scRNA-Seq) data between conditions mainly focus on differences in the proportion of cell types or on differentially expressed genes. In many cases these differences are driven by changes in cell interactions which are challenging to infer without spatial information. To determine cell-cell interactions that differ between conditions we developed the Cell Interaction Network Inference (CINS) pipeline. CINS combines Bayesian network analysis with regression-based modeling to identify differential cell type interactions and the proteins that underlie them. We tested CINS on a disease case control and on an aging mouse dataset. In both cases CINS correctly identifies cell type interactions and the ligands involved in these interactions improving on prior methods suggested for cell interaction predictions. We performed additional mouse aging scRNA-Seq experiments which further support the interactions identified by CINS.


Subject(s)
Gene Expression Profiling , Single-Cell Analysis , Animals , Bayes Theorem , Cell Communication , Gene Expression Profiling/methods , Ligands , Mice , Sequence Analysis, RNA/methods , Single-Cell Analysis/methods
2.
Nat Commun ; 13(1): 5637, 2022 09 26.
Article in English | MEDLINE | ID: mdl-36163190

ABSTRACT

Idiopathic pulmonary fibrosis (IPF) is a fatal disease with limited treatment options. In this study, we focus on the properties of airway basal cells (ABC) obtained from patients with IPF (IPF-ABC). Single cell RNA sequencing (scRNAseq) of bronchial brushes revealed extensive reprogramming of IPF-ABC towards a KRT17high PTENlow dedifferentiated cell type. In the 3D organoid model, compared to ABC obtained from healthy volunteers, IPF-ABC give rise to more bronchospheres, de novo bronchial structures resembling lung developmental processes, induce fibroblast proliferation and extracellular matrix deposition in co-culture. Intratracheal application of IPF-ABC into minimally injured lungs of Rag2-/- or NRG mice causes severe fibrosis, remodeling of the alveolar compartment, and formation of honeycomb cyst-like structures. Connectivity MAP analysis of scRNAseq of bronchial brushings suggested that gene expression changes in IPF-ABC can be reversed by SRC inhibition. After demonstrating enhanced SRC expression and activity in these cells, and in IPF lungs, we tested the effects of saracatinib, a potent SRC inhibitor previously studied in humans. We demonstrate that saracatinib modified in-vitro and in-vivo the profibrotic changes observed in our 3D culture system and novel mouse xenograft model.


Subject(s)
Idiopathic Pulmonary Fibrosis , Animals , Disease Models, Animal , Fibroblasts/metabolism , Fibrosis , Humans , Idiopathic Pulmonary Fibrosis/pathology , Lung/pathology , Mice , Phenotype
3.
Sci Adv ; 5(12): eaaw3851, 2019 12.
Article in English | MEDLINE | ID: mdl-31840053

ABSTRACT

Efforts to decipher chronic lung disease and to reconstitute functional lung tissue through regenerative medicine have been hampered by an incomplete understanding of cell-cell interactions governing tissue homeostasis. Because the structure of mammalian lungs is highly conserved at the histologic level, we hypothesized that there are evolutionarily conserved homeostatic mechanisms that keep the fine architecture of the lung in balance. We have leveraged single-cell RNA sequencing techniques to identify conserved patterns of cell-cell cross-talk in adult mammalian lungs, analyzing mouse, rat, pig, and human pulmonary tissues. Specific stereotyped functional roles for each cell type in the distal lung are observed, with alveolar type I cells having a major role in the regulation of tissue homeostasis. This paper provides a systems-level portrait of signaling between alveolar cell populations. These methods may be applicable to other organs, providing a roadmap for identifying key pathways governing pathophysiology and informing regenerative efforts.


Subject(s)
Connectome , Lung/cytology , Mammals/metabolism , Single-Cell Analysis , Animals , Cell Line , Extracellular Space/metabolism , Genes , Homeostasis , Humans , Ligands , Pulmonary Alveoli/metabolism , Receptors, Cell Surface/metabolism , Semaphorins/metabolism , Signal Transduction , Species Specificity , Vascular Endothelial Growth Factor A/metabolism
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