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High Throughput Layer-by-Layer Films for Extracting Film Forming Parameters and Modulating Film Interactions with Cells

机译:高通量多层膜,用于提取成膜参数和调节膜与细胞的相互作用

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A high-throughput approach which automates the synthesis of polyelectrolyte-based layer-by-layer films (HT-LbL) to facilitate rapid film generation, systematic film characterization, and rational investigations into their interactions with cells is described. Key parameters, such as polyelectrolyte adsorption time and polyelectrolyte deposition pH, were used to modulate LbL film growth to create LbL films of distinct thicknesses using the widely utilized polyelectrolytes poIy(allylamine hydrochloride) (PAH) and poly(acrylic acid) (PAA). We highlight how HT-LbL can be used to rapidly characterize film-forming parameters and robustly create linearly growing films of various molecular architectures. Film thickness and growth rates of HT-LbL films were shown to increase as a function of adsorption time. Subsequently, we investigated the role that polyelectrolyte solution pH (ranging from 2.5 to 9) has hi forming molecularly distinct films of weak polyelectrolytes and report the effect this has on modulating cell attachment and spreading. Films synthesized at PAA-pH of 5.5 and PAH-pH 2.5-5.5 exhibited the highest cellular attachment. These results indicate that HT-LbL is a robust method that can shift the paradigm regarding the use of LbL in biomedical applications as it provides a rapid method to synthesize, characterize, and screen the interactions between molecularly distinct LbL films and cells.
机译:描述了一种高通量方法,该方法可自动合成基于聚电解质的逐层薄膜(HT-LbL),以促进快速的薄膜生成,系统的薄膜表征以及对它们与细胞相互作用的合理研究。使用广泛使用的聚电解质聚烯丙胺盐酸盐(PAH)和聚丙烯酸(PAA),使用诸如聚电解质吸附时间和聚电解质沉积pH等关键参数来调节LbL膜的生长,以创建厚度不同的LbL膜。我们重点介绍了如何使用HT-LbL快速表征成膜参数并稳健地创建各种分子结构的线性生长膜。 HT-LbL膜的厚度和生长速率显示出随吸附时间的增加而增加。随后,我们研究了聚电解质溶液的pH值(范围从2.5到9)具有形成分子不同的弱聚电解质膜的作用,并报道了其对调节细胞附着和扩散的影响。在PAA-pH为5.5和PAH-pH为2.5-5.5时合成的薄膜表现出最高的细胞附着力。这些结果表明,HT-LbL是一种健壮的方法,可以改变有关在生物医学应用中使用LbL的范例,因为它提供了一种合成,表征和筛选分子上不同的LbL膜与细胞之间相互作用的快速方法。

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