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首页> 外文期刊>Biomaterials Science >Chemically diverse polymer microarrays and high throughput surface characterisation: a method for discovery of materials for stem cell culture
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Chemically diverse polymer microarrays and high throughput surface characterisation: a method for discovery of materials for stem cell culture

机译:化学上多样化的聚合物微阵列和高通量表面表征:一种用于干细胞培养的材料发现方法

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Materials discovery provides the opportunity to identify novel materials that are tailored to complex biological environments by using combinatorial mixing of monomers to form large libraries of polymers as micro arrays. The materials discovery approach is predicated on the use of the largest chemical diversity possible, yet previous studies into human pluripotent stem cell (hPSC) response to polymer microarrays have been limited to 20 or so different monomer identities in each study. Here we show that it is possible to print and assess cell adhesion of 141 different monomers in a microarray format. This provides access to the largest chemical space to date, allowing us to meet the regenerative medicine challenge to provide scalable synthetic culture ware. This study identifies new materials suitable for hPSC expansion that could not have been predicted from previous knowledge of cell-material interactions.
机译:材料发现提供了机会,可以通过使用单体的组合混合来形成适合于复杂生物环境的新型材料,从而形成大型聚合物阵列(如微阵列)。材料发现方法的前提是尽可能利用最大的化学多样性,但以前对人类多能干细胞(hPSC)对聚合物微阵列的反应的研究在每个研究中仅限于20种左右不同的单体身份。在这里,我们显示有可能以微阵列格式打印和评估141种不同单体的细胞粘附性。这提供了迄今为止最大的化学空间的访问途径,使我们能够应对再生医学的挑战,以提供可扩展的合成培养皿。这项研究确定了适用于hPSC扩展的新材料,而从以前的细胞-材料相互作用知识中无法预测到这些新材料。

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