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Covalent Micropatterning of Poly(dimethylsiloxane) by Photografting through a Mask

机译:通过掩膜光接枝聚二甲基硅氧烷的共价微图案

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A new photografting method to micropattern a covalent surface modification on poly(dimethylsiloxane) (PDMS) provides advantages in simplicity and efficiency. To accomplish the entire process on the benchtop, the PDMS was initially treated with benzophenone dissolved in a water/acetone mixture. This process permitted limited diffusion of the photoinitiator into the PDMS surface. Polymerization of acrylic acid was initiated by exposure of the benzophenone-implanted PDMS to UV radiation through a photomask with a thin aqueous layer of acrylic acid sandwiched between the PDMS and photomask. This procedure resulted in patterned poly(acrylic acid) (PAA) on the PDMS surface. In the modified regions, PAA and PDMS formed an interpenetrating polymer network extending 50 (mu)m into the PDMS with an X-Y spatial resolution of 5 (mu)m. The carboxyl groups of the PAA graft could be derivatized to covalently bond other molecules to the patterned PAA. Two bioanalytical applications of this micropatterned surface were demonstrated: (1) a guide for cell attachment and growth and (2) a substrate for immunoassays. 3T3 cells were shown to selectively localize to modified surface regions where they could be cultured for up to 7 days. Additionally, the micropatterned surface was used to immobilize either protein A or antibody for heterogeneous immunoassays.
机译:在聚二甲基硅氧烷(PDMS)上对共价表面改性进行微图案化的新的光接枝方法在简单性和效率上具有优势。为了在台式机上完成整个过程,PDMS首先用溶解在水/丙酮混合物中的二苯甲酮处理。该过程允许光引发剂向PDMS表面的有限扩散。丙烯酸的聚合反应是通过光掩膜将注入二苯甲酮的PDMS暴露于UV辐射下进行的,该光掩膜夹在PDMS和光掩膜之间的丙烯酸薄水层中。该过程导致在PDMS表面上形成图案化的聚(丙烯酸)(PAA)。在改性区域中,PAA和PDMS形成了一个互穿聚合物网络,该网络以50μm的X-Y空间分辨率延伸到PDMS中50μm。 PAA接枝的羧基可以被衍生化以将其他分子共价键合到图案化的PAA上。该微图案化表面的两种生物分析应用得到了证明:(1)细胞附着和生长的指南,(2)免疫测定的底物。已显示3T3细胞选择性地定位于修饰的表面区域,可以在其中培养长达7天。另外,微图案化的表面用于固定蛋白A或抗体以用于异种免疫测定。

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