Literature DB >> 23519702

Polymeric Aqueous Biphasic System Rehydration Facilitates High Throughput Cell Exclusion Patterning For Cell Migration Studies.

Hossein Tavana1, Kerim Kaylan, Tommaso Bersano-Begey, Kathryn E Luker, Gary D Luker, Shuichi Takayama.   

Abstract

This paper describes a cell-exclusion patterning method facilitated by a polymeric aqueous two-phase system. The immersion aqueous phase (polyethylene glycol) containing cells rehydrates a dried disk of the denser phase (dextran) on the substrate to form a dextran droplet. With the right properties of the phase-forming polymers, the rehydrating droplet remains immiscible with the immersion phase. Proper formulation of the two-phase system ensures that the interfacial tension between the rehydrating droplet and the surrounding aqueous phase prevents cells from crossing the interface so that cells only adhere to the regions of the substrate around the dextran phase droplet. Washing out the patterning two-phase reagents reveals a cell monolayer containing a well-defined circular gap that serves as the migration niche for cells of the monolayer. Migration of cells into the cell-excluded area is readily visualized and quantified over time. A 96-well plate format of this "gap healing" migration assay demonstrates the ability to detect inhibition of cell migration by known cytoskeleton targeting agents. This straightforward method, which only requires a conventional liquid handler and readily prepared polymer solutions, opens new opportunities for high throughput cell migration assays.

Entities:  

Keywords:  Polymeric aqueous two-phase system; cell migration; cell-exclusion patterning; interfacial tension

Year:  2011        PMID: 23519702      PMCID: PMC3601801          DOI: 10.1002/adfm.201002559

Source DB:  PubMed          Journal:  Adv Funct Mater        ISSN: 1616-301X            Impact factor:   18.808


  35 in total

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9.  Taxol stabilizes microtubules in mouse fibroblast cells.

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  13 in total

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2.  Robotic production of cancer cell spheroids with an aqueous two-phase system for drug testing.

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Review 3.  Biomaterials-Based Approaches to Tumor Spheroid and Organoid Modeling.

Authors:  Pradip Shahi Thakuri; Chun Liu; Gary D Luker; Hossein Tavana
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4.  Phytochemicals potently inhibit migration of metastatic breast cancer cells.

Authors:  Stephanie Lemmo Ham; Samila Nasrollahi; Kush N Shah; Andrew Soltisz; Sailaja Paruchuri; Yang H Yun; Gary D Luker; Anupam Bishayee; Hossein Tavana
Journal:  Integr Biol (Camb)       Date:  2015-07       Impact factor: 2.192

5.  High Throughput, Polymeric Aqueous Two-Phase Printing of Tumor Spheroids.

Authors:  Ehsan Atefi; Stephanie Lemmo; Darcy Fyffe; Gary D Luker; Hossein Tavana
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6.  Thymoquinone Alterations of the Apoptotic Gene Expressions and Cell Cycle Arrest in Genetically Distinct Triple-Negative Breast Cancer Cells.

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7.  Droplet formation and shrinking in aqueous two-phase systems using a membrane emulsification method.

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8.  Cell co-culture patterning using aqueous two-phase systems.

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9.  Optimization of Aqueous Biphasic Tumor Spheroid Microtechnology for Anti-Cancer Drug Testing in 3D Culture.

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Review 10.  Liquid-based three-dimensional tumor models for cancer research and drug discovery.

Authors:  Stephanie L Ham; Ramila Joshi; Pradip S Thakuri; Hossein Tavana
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