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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >A new angle on Pluronic additives: Advancing droplets and understanding in digital microfluidics
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A new angle on Pluronic additives: Advancing droplets and understanding in digital microfluidics

机译:Pluronic添加剂的新视角:推动液滴的发展和对数字微流控技术的理解

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Biofouling in microfluidic devices limits the type of samples which can be handled and the duration for which samples can be manipulated. Despite the cost of disposing fouled devices, relatively few strategies have been developed to tackle this problem. Here, we have analyzed a series of eight amphiphilic droplet additives, Pluronic coblock polymers of poly(propylene oxide) (PPO) and poly(ethylene oxide) (PEO), as a solution to biofouling in digital microfluidics using serum-containing cell culture media as a model fluid. Our analysis shows that species with longer PPO chains are superior for enabling droplet motion and reducing biofouling. Two of the tested species, L92 and P105, were found to lengthen device lifetimes by 2-3 times relative to additives used previously when used at optimal concentrations. Pluronics with low PEO content such as L92 were found to be cytotoxic to an immortalized mammalian cell line, and therefore we recommend that Pluronic additives with greater or equal to 50% PEO composition, such as P105, be used for digital microfluidic applications involving cells. Finally, contact angle measurements were used to probe the interaction between Pluronic-containing droplets and device surfaces. Strong correlations were found between various types of contact angle measurements and the capacity of additives to reduce biofouling, which suggests that contact angle measurements may be useful as a tool for rapidly screening new candidates for the potential to reduce biofouling. We propose that this study will be useful for scientists and engineers who are developing digital microfluidic platforms for a wide range of applications involving protein-containing solutions, and in particular, for applications involving cells.
机译:微流控设备中的生物污垢限制了可处理样品的类型以及可操作样品的持续时间。尽管处置污损设备的成本很高,但已经开发出相对较少的策略来解决该问题。在这里,我们分析了八种两亲液滴添加剂,即聚环氧丙烷(PPO)和聚环氧乙烷(PEO)的Pluronic共嵌段聚合物,作为使用含血清细胞培养基的数字微流控技术中生物污损的解决方案作为模型流体。我们的分析表明,具有较长PPO链的物种在实现液滴运动和减少生物结垢方面表现优异。发现其中两个被测试的物质L92和P105可以将设备的寿命延长到2-3倍,相对于以前在最佳浓度下使用的添加剂而言。发现低PEO含量的Pluronics(例如L92)对永生的哺乳动物细胞系具有细胞毒性,因此我们建议将PEO含量大于或等于50%的Pluronic添加剂(例如P105)用于涉及细胞的数字微流体应用。最后,使用接触角测量来探测含Pluronic的液滴与设备表面之间的相互作用。在各种类型的接触角测量值与添加剂减少生物结垢的能力之间发现了很强的相关性,这表明接触角测量值可用作快速筛选可能减少生物结垢的新候选者的工具。我们建议这项研究对正在开发数字微流体平台的科学家和工程师有用,这些平台涉及包含蛋白质的溶液的广泛应用,尤其是涉及细胞的应用。

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