Patient-specific vascularized tumor model: Blocking monocyte recruitment with multispecific antibodies targeting CCR2 and CSF-1R
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Huu Tuan Nguyen, Nadia Gurvich, Mark Robert Gillrie, Giovanni Offeddu, Mouhita Humayun, Ellen L. Kan, Zhengpeng Wan, Mark Frederick Coughlin, Christie Zhang, Vivian Vu, Sharon Wei Ling Lee, Seng-Lai Tan, David Barbie, Jonathan Hsu, Roger D. Kamm
Link to Paper: https://www.sciencedirect.com/science/article/abs/pii/S0142961224002655
Abstract: Tumor-associated inflammation drives cancer progression and therapy resistance, often linked to the infiltration of monocyte-derived tumor-associated macrophages (TAMs), which are associated with poor prognosis in various cancers. To advance immunotherapies, testing on immunocompetent pre-clinical models of human tissue is crucial. We have developed an in vitro model of microvascular networks with tumor spheroids or patient tissues to assess monocyte trafficking into tumors and evaluate immunotherapies targeting the human tumor microenvironment. Our findings demonstrate that macrophages in vascularized breast and lung tumor models can enhance monocyte recruitment via CCL7 and CCL2, mediated by CSF-1R. Additionally, a multispecific antibody targeting CSF-1R, CCR2, and neutralizing TGF-β (CSF1R/CCR2/TGF-β Ab) repolarizes TAMs towards an anti-tumoral M1-like phenotype, reduces monocyte chemoattractant protein secretion, and blocks monocyte migration. This antibody also inhibits monocyte recruitment in patient-specific vascularized tumor models. In summary, this vascularized tumor model recapitulates the monocyte recruitment cascade, enabling functional testing of innovative therapeutic antibodies targeting TAMs in the tumor microenvironment.
Link to All Images: https://omero.mit.edu/webclient/?show=project-557
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Created: 24th Jan 2024 at 18:43
Last updated: 17th Dec 2024 at 16:59
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Projects: Hi-IMPAcTB, MIT SRP, MetNet, Endometriosis, Cancer Systems Biology Consortium (CSBC)
Institutions: Massachusetts Institute of Technology
Programme: Metastasis Network
Public web page: Not specified
Organisms: Not specified
Submitter: Charles Demurjian
Studies: Impact of fibrinogen, fibrin thrombi and thrombin on cancer cell extrava..., Patient-specific vascularized tumor model: Blocking monocyte recruitment..., Personalized Vascularized Models of Breast Cancer Desmoplasia Reveal Bio..., Utilizing convolutional neural networks for discriminating cancer and st...
Assays: All Metadata, Cancer Cell Extravasation Analysis - Data Linked, Cell Culture and Tumor Spheroid Creation - Metadata, Cell Culture and Tumor Spheroid Creation - Metadata, Clot Modeling Analysis - Data Linked, Convolutional Neural Network - Data Linked, Device Creation - Metadata, Device Creation - Metadata, Device Imaging - Data Linked, Device Imaging - Data Linked, Device Imaging - Data Linked, Device Imaging - Metadata, Flow Cytometry - Data Linked, Flow Cytometry - Data Linked, Flow Cytometry Analysis - Data Linked, Flow Cytometry Analysis - Data Linked, Imaging Analysis - Data Attached, Microfluidic Device Creation - Metadata, Microfluidic Device Creation - Metadata, Migration Assay Analysis - Data Linked, Permeability Analysis - Data Linked, Tumoroid Formation - Metadata
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Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-230131-V1_Cell-culture.docx, P.KAM-240129-V1_Cell-Culture-and-Tumor-Spheroid..., P.KAM-240129-V1_Monocyte-Isolation-iVas.docx
Data files: samples-publish2024-02-09-CEL.xlsx
Snapshots: No snapshots
Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-240129-V1_Device-iVas.docx
Data files: samples-publish2024-02-09-CEL.xlsx, samples-publish2024-02-09-OOC.xlsx
Snapshots: No snapshots
Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-240129-V1_Device-iVas.docx, P.KAM-240129-V1_Imaging-Analysis-iVas.docx, P.KAM-240129-V1_Immunofluorescene-iVas.docx, P.KAM-240129-V1_Migration-Assays-iVas.docx
Data files: samples-publish2024-02-09-D.IMG.xlsx, samples-publish2024-02-09-OOC.xlsx
Snapshots: No snapshots
Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-240129-V1_Imaging-Analysis-iVas.docx, P.KAM-240129-V1_Migration-Assays-iVas.docx
Data files: samples-publish2024-02-09-A.MIGR.xlsx, samples-publish2024-02-09-D.IMG.xlsx
Snapshots: No snapshots
Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: P.KAM-240129-V1_Flow-Cytometry-iVas.docx
Data files: samples-publish2024-02-09-AB.xlsx, samples-publish2024-02-09-ABP.xlsx, samples-publish2024-02-09-CEL.xlsx, samples-publish2024-02-09-D.FLOW.xlsx
Snapshots: No snapshots
Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Organisms: No organisms
SOPs: No SOPs
Data files: samples-publish2024-02-09-A.FLOW.xlsx, samples-publish2024-02-09-D.FLOW.xlsx
Snapshots: No snapshots
Submitter: Charles Demurjian
Assay type: Experimental Assay Type
Technology type: Technology Type
Investigation: MetNet
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: All Metadata
Batch sample publishing
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Batch sample publishing
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Device Imaging - Data Linked, Migration Assay Analysis - Data Linked
Batch sample publishing
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Batch sample publishing
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Flow Cytometry - Data Linked, Flow Cytometry Analysis - Data Linked
Batch sample publishing
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Flow Cytometry - Data Linked
Batch sample publishing
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Flow Cytometry - Data Linked
Batch sample publishing
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Device Imaging - Data Linked, Microfluidic Device Creation - Metadata
Batch sample publishing
Creator: Charles Demurjian
Submitter: Charles Demurjian
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Flow Cytometry - Data Linked
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Device Imaging - Data Linked
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Device Imaging - Data Linked, Migration Assay Analysis - Data Linked
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Device Imaging - Data Linked, Migration Assay Analysis - Data Linked
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Patient-specific vascularized tumor model: Bloc...
Assays: Device Imaging - Data Linked, Microfluidic Device Creation - Metadata
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Creator: Charles Demurjian
Submitter: Charles Demurjian
Investigations: MetNet
Studies: Impact of fibrinogen, fibrin thrombi and thromb..., Patient-specific vascularized tumor model: Bloc..., Personalized Vascularized Models of Breast Canc..., Utilizing convolutional neural networks for dis... and 1 hidden item
Assays: Cell Culture and Tumor Spheroid Creation - Meta..., Cell Culture and Tumor Spheroid Creation - Meta..., Microfluidic Device Creation - Metadata, Tumoroid Formation - Metadata and 1 hidden item