Literature DB >> 30132879

The mechanical and pharmacological regulation of glioblastoma cell migration in 3D matrices.

Pranita Kaphle1, Yongchao Li1, Li Yao1.   

Abstract

The invasion of glioblastoma is a complex process based on the interactions of tumor cells and the extracellular matrix. Tumors that are engineered using biomaterials are more physiologically relevant than a two-dimensional (2D) cell culture system. Matrix metalloproteinases and the plasminogen activator generated by tumor cells regulate a tumor's invasive behavior. In this study, microtumors were fabricated by encapsulating U87 glioma cells in Type I collagen and then glioma cell migration in the collagen hydrogels was investigated. Crosslinking of collagen with 8S-StarPEG increased the hydrogel viscosity and reduced the tumor cell migration speed in the hydrogels. The higher migration speed corresponded to the increased gene expression of MMP-2, MMP-9, urokinase plasminogen activator (uPA), and tissue plasminogen activator (tPA) in glioma cells grown in non-crosslinked collagen hydrogels. Inhibitors of these molecules hindered U87 and A172 cell migration in collagen hydrogels. Aprotinin and tranexamic acid did not inhibit U87 and A172 migration on the culture dish. This study demonstrated the differential effect of pharmacologic molecules on tumor cell motility in either a 2D or three-dimensional culture environment.
© 2018 Wiley Periodicals, Inc.

Entities:  

Keywords:  collagen; glioblastoma; hydrogel; inhibition; migration

Mesh:

Substances:

Year:  2018        PMID: 30132879      PMCID: PMC8006216          DOI: 10.1002/jcp.27209

Source DB:  PubMed          Journal:  J Cell Physiol        ISSN: 0021-9541            Impact factor:   6.384


  56 in total

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Review 5.  Tumor vasculature and glioma stem cells: Contributions to glioma progression.

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Journal:  Cancer Lett       Date:  2014-12-16       Impact factor: 8.679

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Journal:  Cancer Cell       Date:  2005-09       Impact factor: 31.743

7.  Plasmin inhibitors prevent leukocyte accumulation and remodeling events in the postischemic microvasculature.

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Journal:  PLoS One       Date:  2011-02-22       Impact factor: 3.240

Review 8.  Microengineered tumor models: insights & opportunities from a physical sciences-oncology perspective.

Authors:  Peter DelNero; Young Hye Song; Claudia Fischbach
Journal:  Biomed Microdevices       Date:  2013-08       Impact factor: 2.838

Review 9.  Experimental anti-tumor therapy in 3-D: spheroids--old hat or new challenge?

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Journal:  Int J Radiat Biol       Date:  2007 Nov-Dec       Impact factor: 2.694

10.  By activating matrix metalloproteinase-7, shear stress promotes chondrosarcoma cell motility, invasion and lung colonization.

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Journal:  Oncotarget       Date:  2015-04-20
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  6 in total

Review 1.  Proteinaceous Hydrogels for Bioengineering Advanced 3D Tumor Models.

Authors:  Barbara Blanco-Fernandez; Vítor M Gaspar; Elisabeth Engel; João F Mano
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2.  Dissecting and rebuilding the glioblastoma microenvironment with engineered materials.

Authors:  Kayla J Wolf; Joseph Chen; Jason Coombes; Manish K Aghi; Sanjay Kumar
Journal:  Nat Rev Mater       Date:  2019-08-16       Impact factor: 66.308

3.  Agent-based computational modeling of glioblastoma predicts that stromal density is central to oncolytic virus efficacy.

Authors:  Adrianne L Jenner; Munisha Smalley; David Goldman; William F Goins; Charles S Cobbs; Ralph B Puchalski; E Antonio Chiocca; Sean Lawler; Paul Macklin; Aaron Goldman; Morgan Craig
Journal:  iScience       Date:  2022-05-13

Review 4.  Three-dimensional in vitro culture models in oncology research.

Authors:  Camille Jubelin; Javier Muñoz-Garcia; Laurent Griscom; Denis Cochonneau; Emilie Ollivier; Marie-Françoise Heymann; François M Vallette; Lisa Oliver; Dominique Heymann
Journal:  Cell Biosci       Date:  2022-09-11       Impact factor: 9.584

5.  Collagen Matrices Mediate Glioma Cell Migration Induced by an Electrical Signal.

Authors:  Li Yao; Kimmy Tran; Diana Nguyen
Journal:  Gels       Date:  2022-08-29

6.  A Fully Integrated Arduino-Based System for the Application of Stretching Stimuli to Living Cells and Their Time-Lapse Observation: A Do-It-Yourself Biology Approach.

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Journal:  Ann Biomed Eng       Date:  2021-03-16       Impact factor: 3.934

  6 in total

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