Myofibroblasts reduce angiogenesis and vasculogenesis in a vascularized microphysiological model of lung fibrosis
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Elena Cambria, Adriana Blazeski, Eunkyung Clare Ko, Tran Thai, Shania Dantes, David A. Barbie, Sarah E. Shelton, Roger D. Kamm

https://www.biorxiv.org/content/10.1101/2025.01.10.632378v1
Abstract: Lung fibrosis, characterized by chronic and progressive scarring, has no cure. Hallmarks are the accumulation of myofibroblasts and extracellular matrix, as well as vascular remodeling. The crosstalk between myofibroblasts and vasculature is poorly understood, with conflicting reports on whether angiogenesis and vessel density are increased or decreased in lung fibrosis. We developed a microphysiological system that recapitulates the pathophysiology of lung fibrosis and disentangles myofibroblast-vascular interactions. Lung myofibroblasts maintained their phenotype in 3D without exogenous TGF-β and displayed anti-angiogenic and anti-vasculogenic activities when cultured with endothelial cells in a microfluidic device. These effects, including decreased endothelial sprouting, altered vascular morphology, and increased vascular permeability, were mediated by increased TGF-β1 and reduced VEGF secretion. Pharmacological interventions targeting these cytokines restored vascular morphology and permeability, demonstrating the potential of this model to screen anti-fibrotic drugs. This system provides insights into myofibroblast-vascular crosstalk in lung fibrosis and offers a platform for therapeutic development.
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Created: 18th Apr 2025 at 15:24
Last updated: 5th Jan 2026 at 19:43
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Projects: MIT SRP, Hi-IMPAcTB, MetNet, Endometriosis, Cancer Systems Biology Consortium (CSBC), Shoulders Lab, NExtSEEK Independent Projects
Web page: https://nextseek.mit.edu/
Understanding the spectrum of complex metastatic processes is important to the development of a comprehensive and cohesive understanding of cancer metastasis. The Metastasis Research Network (MetNet) supports collaborative, multidisciplinary projects that focus on several themes of the metastatic process and use integrative systems-level approaches.
MetNet is advancing the understanding of metastasis as a non-linear, dynamic, and emergent process, as well as revealing mechanistic insights of early ...
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Submitter: Charles Demurjian
Studies: Chemo-mechanical diffusion waves explain collective dynamics of immune c..., Chromatin conformation, gene transcription, and nucleosome remodeling as..., Confined cell migration along extracellular matrix space in vivo, Impact of fibrinogen, fibrin thrombi and thrombin on cancer cell extrava..., IntravChip: a vascularized and perfused microfluidic model of the primar..., Myofibroblasts reduce angiogenesis and vasculogenesis in a vascularized ..., Patient-specific vascularized tumor model: Blocking monocyte recruitment..., Personalized Vascularized Models of Breast Cancer Desmoplasia Reveal Bio..., Polyploidy of MDA-MB-231 cells drives increased extravasation with enhan..., Remodeling of self-assembled microvascular networks under long term flow, Utilizing convolutional neural networks for discriminating cancer and st...
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-250519-V2_EC_Myofibroblast_ExperimentalDe..., P.KAM-251118-V1_EC_Myofibroblast_IPF.docx
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
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SOPs: P.KAM-250519-V2_EC_Myofibroblast_Imaging.docx
Data files: No Data files
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-250519-V2_EC_Myofibroblast_Imaging_Analys...
Data files: No Data files
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-250519-V2_EC_Myofibroblast_RT-PCR.docx
Data files: No Data files
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
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Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-250519-V2_EC_Myofibroblast_RT-PCR.docx
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
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SOPs: P.KAM-250519-V1_EC_Myofibroblast_CytokineELISA....
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-250519-V1_EC_Myofibroblast_CytokineELISA....
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
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Investigation: MetNet
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Data files: All Metadata - Myofibroblast EC.xlsx
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Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Myofibroblasts reduce angiogenesis and vasculog...
Assays: All Metadata
Creators: None
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Myofibroblasts reduce angiogenesis and vasculog...
Assays: ELISA - Data Linked, Luminex - Data Linked
Creators: None
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Myofibroblasts reduce angiogenesis and vasculog...
Assays: RNA Extraction - Metadata, Real Time RT-PCR - Data Linked
Creators: None
Submitter: Charles Demurjian
Investigations: MetNet
Creators: None
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Myofibroblasts reduce angiogenesis and vasculog...
Assays: Imaging - Data Linked
Creators: None
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Myofibroblasts reduce angiogenesis and vasculog...
Assays: Imaging Analysis - Data Linked
Creators: None
Submitter: Charles Demurjian
Investigations: MetNet
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