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Simple Surface Modification of Poly(dimethylsiloxane) via Surface Segregating Smart Polymers for Biomicrofluidics

机译:通过表面分离智能聚合物对生物微流体进行聚二甲基硅氧烷的简单表面改性

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摘要

Poly(dimethylsiloxane) (PDMS) is likely the most popular material for microfluidic devices in lab-on-a-chip and other biomedical applications. However, the hydrophobicity of PDMS leads to non-specific adsorption of proteins and other molecules such as therapeutic drugs, limiting its broader use. Here, we introduce a simple method for preparing PDMS materials to improve hydrophilicity and decrease non-specific protein adsorption while retaining cellular biocompatibility, transparency, and good mechanical properties without the need for any post-cure surface treatment. This approach utilizes smart copolymers comprised of poly(ethylene glycol) (PEG) and PDMS segments (PDMS-PEG) that, when blended with PDMS during device manufacture, spontaneously segregate to surfaces in contact with aqueous solutions and reduce the hydrophobicity without any added manufacturing steps. PDMS-PEG-modified PDMS samples showed contact angles as low as 23.6° ± 1° and retained this hydrophilicity for at least twenty months. Their improved wettability was confirmed using capillary flow experiments. Modified devices exhibited considerably reduced non-specific adsorption of albumin, lysozyme, and immunoglobulin G. The modified PDMS was biocompatible, displaying no adverse effects when used in a simple liver-on-a-chip model using primary rat hepatocytes. This PDMS modification method can be further applied in analytical separations, biosensing, cell studies, and drug-related studies.
机译:聚二甲基硅氧烷(PDMS)可能是芯片实验室和其他生物医学应用中微流控设备最流行的材料。但是,PDMS的疏水性导致蛋白质和其他分子(例如治疗药物)的非特异性吸附,从而限制了其更广泛的用途。在这里,我们介绍了一种简单的方法来制备PDMS材料,以提高亲水性并减少非特异性蛋白质的吸附,同时保持细胞的生物相容性,透明度和良好的机械性能,而无需进行任何后处理的表面处理。这种方法利用了由聚乙二醇(PEG)和PDMS链段(PDMS-PEG)组成的智能共聚物,当在设备制造过程中与PDMS混合时,它们自发地分离到与水溶液接触的表面并降低了疏水性,而无需进行任何额外的制造脚步。 PDMS-PEG改性的PDMS样品的接触角低至23.6°±1°,并且至少保持了20个月的亲水性。使用毛细管流动实验证实了它们改善的润湿性。修饰后的器械表现出明显降低的白蛋白,溶菌酶和免疫球蛋白G的非特异性吸附。修饰后的PDMS具有生物相容性,当在使用原代大鼠肝细胞的简单肝片模型中使用时,没有任何不利影响。这种PDMS修饰方法可以进一步应用于分析分离,生物传感,细胞研究和药物相关研究。

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