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Stretching DNA in polymer nanochannels fabricated by thermal imprint in PMMA

机译:在pmma中通过热印记制备的聚合物纳米通道中拉伸DNa

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摘要

We present results regarding the fast and inexpensive fabrication of polymer biochips for investigating the statics and dynamics of DNA confined in nanochannels. The biochips have been fabricated by means of nanoimprint lithography ( NIL) in low molecular weight polymethyl methacrylate ( PMMA) using a 4 inch diameter two-level hybrid stamp. The fluidic structures were sealed using thermal polymer fusion bonding. The stamp has nanometer-and micrometer-sized protrusions defined in a thermally grown SiO2 layer and the sol - gel process derived duromeric hybrid polymer Ormocomp, respectively. The stamp is compatible with molecular vapor deposition ( MVD), used for applying a durable chlorosilane based antistiction coating, and allows for imprint up to a temperature of 270 degrees C. The extension of YOYO-1 stained T4 GT7 bacteriophage DNA inside the PMMA nanochannels has been experimentally investigated using epi-fluorescence microscopy. The measured average extension length amounts to 20% of the full contour length with a standard deviation of 4%. These results are in good agreement with results obtained by stretching DNA in conventional fused silica nanochannels.
机译:我们目前的结果有关快速,廉价地制造聚合物生物芯片用于调查限制在纳米通道中的DNA的静态和动态。通过使用4英寸直径的二级混合印模在低分子量聚甲基丙烯酸甲酯(PMMA)中进行纳米压印光刻(NIL)来制造生物芯片。使用热聚合物熔融键合密封流体结构。该压模具有分别定义在热生长的SiO2层和溶胶-凝胶法衍生的二聚体杂化聚合物Ormocomp中的纳米和微米大小的凸起。该印章与分子气相沉积(MVD)兼容,用于施加耐用的基于氯硅烷的抗粘连涂层,并允许在高达270摄氏度的温度下进行印记。YOYO-1染色的T4 GT7噬菌体DNA在PMMA纳米通道内部的延伸。已经使用落射荧光显微镜进行了实验研究。测得的平均延伸长度为整个轮廓长度的20%,标准偏差为4%。这些结果与通过在常规的熔融二氧化硅纳米通道中拉伸DNA获得的结果高度吻合。

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