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基于组合聚电解质多层膜的工程 ECM 的高通量细胞筛选。

High-throughput cellular screening of engineered ECM based on combinatorial polyelectrolyte multilayer films.

机构信息

Department of Chemistry, Program in NeuroEngineering, McGill University, 801 Sherbrooke St. W., Montreal, Quebec H3A 2K6, Canada.

出版信息

Biomaterials. 2012 Aug;33(24):5841-7. doi: 10.1016/j.biomaterials.2012.05.001. Epub 2012 May 24.

Abstract

The capacity to engineer the extracellular matrix is critical to better understand cell function and to design optimal cellular environments to support tissue engineering, transplantation and repair. Stacks of adsorbed polymers can be engineered as soft wet three dimensional matrices, with properties tailored to support cell survival and growth. Here, we have developed a combinatorial method to generate coatings that self assemble from solutions of polyelectrolytes in water, layer by layer, to produce a polyelectrolyte multilayer (PEM) coating that has enabled high-throughput screening for cellular biocompatibility. Two dimensional combinatorial PEMs were used to rapidly identify assembly conditions that promote optimal cell survival and viability. Conditions were first piloted using a cell line, human embryonic kidney 293 cells (HEK 293), and subsequently tested using primary cultures of embryonic rat spinal commissural neurons. Cell viability was correlated with surface energy (wettability), modulus (matrix stiffness), and surface charge of the coatings.Our findings indicate that the modulus is a crucial determinant of the capacity of a surface to inhibit or support cell survival.

摘要

工程细胞外基质的能力对于更好地理解细胞功能以及设计最佳的细胞环境以支持组织工程、移植和修复至关重要。堆叠的吸附聚合物可以被设计成柔软的湿三维基质,其特性可量身定制以支持细胞存活和生长。在这里,我们开发了一种组合方法来生成自组装的聚合物电解质多层(PEM)涂层,该方法是从水溶液中的聚电解质溶液中逐层组装而成,可实现用于细胞生物相容性的高通量筛选。二维组合 PEM 被用于快速确定促进最佳细胞存活和活力的组装条件。首先使用细胞系人胚肾 293 细胞(HEK 293)对条件进行试点测试,然后使用胚胎大鼠脊髓连合神经元的原代培养物进行测试。细胞活力与涂层的表面能(润湿性)、模量(基质硬度)和表面电荷相关。我们的研究结果表明,模量是表面抑制或支持细胞存活能力的关键决定因素。

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