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聚合物水相双相系统复水有助于高通量细胞排除图案化用于细胞迁移研究。

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

作者信息

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

机构信息

Department of Biomedical Engineering, University of Akron, Akron, OH 44325 ; Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI 48109.

出版信息

Adv Funct Mater. 2011 Aug 9;21(15):2920-2926. doi: 10.1002/adfm.201002559. Epub 2011 May 24.

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.

摘要

本文描述了一种由聚合物水两相系统促成的细胞排斥图案化方法。含有细胞的浸没水相(聚乙二醇)使基底上较致密相(葡聚糖)的干燥圆盘再水化,形成葡聚糖液滴。凭借成相聚合物的合适特性,再水化液滴与浸没相保持不混溶。两相系统的恰当配方可确保再水化液滴与周围水相之间的界面张力阻止细胞穿过界面,从而使细胞仅黏附于葡聚糖相液滴周围的基底区域。洗去图案化两相试剂后,可揭示出含有明确界定的圆形间隙的细胞单层,该间隙充当单层细胞的迁移微环境。随着时间推移,细胞向细胞排斥区域的迁移易于观察和定量。这种“间隙愈合”迁移测定法的96孔板形式证明了检测已知细胞骨架靶向剂对细胞迁移抑制作用的能力。这种直接的方法仅需要传统的液体处理仪和易于制备的聚合物溶液,为高通量细胞迁移测定开辟了新机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97ed/3601801/c944ca58765c/nihms430874f1.jpg

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