Department of Chemical and Biological Engineering, Korea University, Seoul 136-713, Republic of Korea.
ACS Appl Mater Interfaces. 2020 Nov 25;12(47):53318-53327. doi: 10.1021/acsami.0c15944. Epub 2020 Nov 16.
Discontinuous dewetting (DD) is an attractive technique that enables the production of large liquid arrays in microwells and is applicable to the synthesis of anisotropic microparticles with complex morphologies. However, such loading of liquids into microwells presents a significant challenge, as the liquids used in this technique should exhibit low mold surface wettability. This study introduces DD in a degassed mold (DM), a simple yet powerful technique that achieves uniform loading of microparticle precursors into large microwell arrays within 1 min. Using this technique, hydrogel microparticles are produced by different polymerization mechanisms with various shapes and sizes, ranging from a few micrometers to hundreds of micrometers. Hydrophobic oil microparticles are produced by the simple plasma treatment of the DM, and agarose microparticles encapsulating bovine serum albumin (in a well-dispersed state) are produced by submerging the DM in fluorinated oil. To demonstrate additional functionality of microparticles using this technique, high concentrations of magnetic nanoparticles are loaded into microparticles for particle-based immunoassays performed in a microwell plate, and the immunoassay performance is comparable to that of ELISA.
非连续去湿(DD)是一种很有吸引力的技术,它可以在微井中产生大的液体阵列,适用于合成具有复杂形态的各向异性微粒子。然而,将液体装入微井中是一个重大挑战,因为该技术中使用的液体应表现出低模具表面润湿性。本研究在脱气模具(DM)中引入了 DD,这是一种简单而强大的技术,可在 1 分钟内将微粒子前体均匀地装入大的微井阵列中。使用该技术,可以通过不同的聚合机制产生具有不同形状和大小的水凝胶微粒子,范围从几微米到几百微米。疏油微粒子通过 DM 的简单等离子体处理产生,并且通过将 DM 浸入氟化油中来产生包封牛血清白蛋白的琼脂糖微粒子(处于良好分散状态)。为了展示使用该技术的微粒子的其他功能,将高浓度的磁性纳米粒子加载到微粒子中,用于在微井板中进行基于粒子的免疫分析,并且免疫分析性能与 ELISA 相当。