Literature DB >> 29782011

A Preclinical Mouse Model of Osteosarcoma to Define the Extracellular Vesicle-mediated Communication Between Tumor and Mesenchymal Stem Cells.

Tonny Lagerweij1, Maria Pérez-Lanzón2, S Rubina Baglio3.   

Abstract

Within the tumor microenvironment, resident or recruited mesenchymal stem cells (MSCs) contribute to malignant progression in multiple cancer types. Under the influence of specific environmental signals, these adult stem cells can release paracrine mediators leading to accelerated tumor growth and metastasis. Defining the crosstalk between tumor and MSCs is of primary importance to understand the mechanisms underlying cancer progression and identify novel targets for therapeutic intervention. Cancer cells produce high amounts of extracellular vesicles (EVs), which can profoundly affect the behavior of target cells in the tumor microenvironment or at distant sites. Tumor EVs enclose functional biomolecules, including inflammatory RNAs and (onco)proteins, that can educate stromal cells to enhance the metastatic behavior of cancer cells or to participate in the pre-metastatic niche formation. In this article, we describe the development of a preclinical cancer mouse model that enables specific evaluation of the EV-mediated crosstalk between tumor and mesenchymal stem cells. First, we describe the purification and characterization of tumor-secreted EVs and the assessment of the EV internalization by MSCs. We then make use of a multiplex bead-based immunoassay to evaluate the alteration of the MSC cytokine expression profile induced by cancer EVs. Finally, we illustrate the generation of a bioluminescent orthotopic xenograft mouse model of osteosarcoma that recapitulates the tumor-MSC interaction, and show the contribution of EV-educated MSCs to tumor growth and metastasis formation. Our model provides the opportunity to define how cancer EVs shape a tumor-supporting environment, and to evaluate whether blockade of the EV-mediated communication between tumor and MSCs prevents cancer progression.

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Year:  2018        PMID: 29782011      PMCID: PMC6101124          DOI: 10.3791/56932

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  32 in total

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Journal:  Nat Med       Date:  2012-06       Impact factor: 53.440

5.  Blocking Tumor-Educated MSC Paracrine Activity Halts Osteosarcoma Progression.

Authors:  S Rubina Baglio; Tonny Lagerweij; Maria Pérez-Lanzón; Xuan Dung Ho; Nicolas Léveillé; Sonia A Melo; Anne-Marie Cleton-Jansen; Ekaterina S Jordanova; Laura Roncuzzi; Michelina Greco; Monique A J van Eijndhoven; Giulia Grisendi; Massimo Dominici; Roberta Bonafede; Sinead M Lougheed; Tanja D de Gruijl; Nicoletta Zini; Silvia Cervo; Agostino Steffan; Vincenzo Canzonieri; Aare Martson; Katre Maasalu; Sulev Köks; Tom Wurdinger; Nicola Baldini; D Michiel Pegtel
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8.  Human platelet lysate as a fetal bovine serum substitute improves human adipose-derived stromal cell culture for future cardiac repair applications.

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Journal:  Cell Tissue Res       Date:  2012-03-07       Impact factor: 5.249

9.  Granulocyte-like myeloid derived suppressor cells (G-MDSC) are increased in multiple myeloma and are driven by dysfunctional mesenchymal stem cells (MSC).

Authors:  Cesarina Giallongo; Daniele Tibullo; Nunziatina L Parrinello; Piera La Cava; Michelino Di Rosa; Vincenzo Bramanti; Cosimo Di Raimondo; Concetta Conticello; Annalisa Chiarenza; Giuseppe A Palumbo; Roberto Avola; Alessandra Romano; Francesco Di Raimondo
Journal:  Oncotarget       Date:  2016-12-27

Review 10.  Mesenchymal stem cells: key players in cancer progression.

Authors:  Sarah M Ridge; Francis J Sullivan; Sharon A Glynn
Journal:  Mol Cancer       Date:  2017-02-01       Impact factor: 27.401

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  9 in total

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2.  Tumor-derived exosomes promote carcinogenesis of murine oral squamous cell carcinoma.

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Review 3.  Exosomes in the tumor microenvironment of sarcoma: from biological functions to clinical applications.

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5.  Biodistribution of gadolinium- and near infrared-labeled human umbilical cord mesenchymal stromal cell-derived exosomes in tumor bearing mice.

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6.  Detection of nucleic acids and other low abundance components in native bone and osteosarcoma extracellular matrix by isotope enrichment and DNP-enhanced NMR.

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Review 7.  Role of extracellular vesicles in osteosarcoma.

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Review 8.  New perspective into mesenchymal stem cells: Molecular mechanisms regulating osteosarcoma.

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Review 9.  Bone Microenvironment and Osteosarcoma Metastasis.

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