Literature DB >> 24010546

Glioblastoma behaviors in three-dimensional collagen-hyaluronan composite hydrogels.

Shreyas S Rao1, Jessica Dejesus, Aaron R Short, Jose J Otero, Atom Sarkar, Jessica O Winter.   

Abstract

Glioblastoma multiforme (GBM) tumors, which arise from glia in the central nervous system (CNS), are one of the most deadly forms of human cancer with a median survival time of ∼1 year. Their high infiltrative capacity makes them extremely difficult to treat, and even with aggressive multimodal clinical therapies, outcomes are dismal. To improve understanding of cell migration in these tumors, three-dimensional (3D) multicomponent composite hydrogels consisting of collagen and hyaluronic acid, or hyaluronan (HA), were developed. Collagen is a component of blood vessels known to be associated with GBM migration; whereas, HA is one of the major components of the native brain extracellular matrix (ECM). We characterized hydrogel microstructural features and utilized these materials to investigate patient tumor-derived, single cell morphology, spreading, and migration in 3D culture. GBM morphology was influenced by collagen type with cells adopting a rounded morphology in collagen-IV versus a spindle-shaped morphology in collagen-I/III. GBM spreading and migration were inversely dependent on HA concentration; with higher concentrations promoting little or no migration. Further, noncancerous astrocytes primarily displayed rounded morphologies at lower concentrations of HA; in contrast to the spindle-shaped (spread) morphologies of GBMs. These results suggest that GBM behaviors are sensitive to ECM mimetic materials in 3D and that these composite hydrogels could be used to develop 3D brain mimetic models for studying migration processes.

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Year:  2013        PMID: 24010546      PMCID: PMC4333346          DOI: 10.1021/am402097j

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  62 in total

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Authors:  Elisabetta M Caspani; Diego Echevarria; Klemens Rottner; J Victor Small
Journal:  Neuron Glia Biol       Date:  2006-05

4.  C6 glioma-astrocytoma cell and fetal astrocyte migration into artificial basement membrane: a permissive substrate for neural tumors but not fetal astrocytes.

Authors:  J J Bernstein; E R Laws; K V Levine; L R Wood; G Tadvalkar; W J Goldberg
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5.  Measuring the mechanical stress induced by an expanding multicellular tumor system: a case study.

Authors:  V D Gordon; M T Valentine; M L Gardel; D Andor-Ardó; S Dennison; A A Bogdanov; D A Weitz; T S Deisboeck
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6.  Influence of chondroitin sulfate and hyaluronic acid on structure, mechanical properties, and glioma invasion of collagen I gels.

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8.  Refolding hydrogels self-assembled from N-(2-hydroxypropyl)methacrylamide graft copolymers by antiparallel coiled-coil formation.

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Review 9.  Neural tissue engineering: strategies for repair and regeneration.

Authors:  Christine E Schmidt; Jennie Baier Leach
Journal:  Annu Rev Biomed Eng       Date:  2003       Impact factor: 9.590

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  47 in total

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Review 2.  Proteinaceous Hydrogels for Bioengineering Advanced 3D Tumor Models.

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3.  Glioma Cell Invasion is Significantly Enhanced in Composite Hydrogel Matrices Composed of Chondroitin 4- and 4,6-Sulfated Glycosaminoglycans.

Authors:  Meghan T Logun; Nicole S Bisel; Emily A Tanasse; Wujun Zhao; Bhagya Gunasekera; Leidong Mao; Lohitash Karumbaiah
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4.  The Influence of Hyaluronic Acid and Glioblastoma Cell Coculture on the Formation of Endothelial Cell Networks in Gelatin Hydrogels.

Authors:  Mai T Ngo; Brendan A Harley
Journal:  Adv Healthc Mater       Date:  2017-09-22       Impact factor: 9.933

5.  Three-dimensional cell culture: A powerful tool in tumor research and drug discovery.

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6.  Analysis of Cancer Cell Invasion and Anti-metastatic Drug Screening Using Hydrogel Micro-chamber Array (HMCA)-based Plates.

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7.  Surfen-mediated blockade of extratumoral chondroitin sulfate glycosaminoglycans inhibits glioblastoma invasion.

Authors:  Meghan T Logun; Kallie E Wynens; Gregory Simchick; Wujun Zhao; Leidong Mao; Qun Zhao; Subhas Mukherjee; Daniel J Brat; Lohitash Karumbaiah
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8.  Biomechanical forces in tissue engineered tumor models.

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Review 9.  Toward 3D biomimetic models to understand the behavior of glioblastoma multiforme cells.

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10.  Hyaluronic acid induces ROCK-dependent amoeboid migration in glioblastoma cells.

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Journal:  Biomater Sci       Date:  2020-08-04       Impact factor: 6.843

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