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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Sensors for bioanalytes by imprinting-Polymers mimicking both biological receptors and the corresponding bioparticles
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Sensors for bioanalytes by imprinting-Polymers mimicking both biological receptors and the corresponding bioparticles

机译:传感器由imprinting-Polymers bioanalytes模仿生物受体和相应bioparticles

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摘要

Structuring of thin polymer layers by soft lithography with template bioparticles results in the formation of selective surface cavities, leading to highly effective sensor systems when combined with mass-sensitive transducers, especially QCM. These sensors allow selective differentiation of various stages of development of yeast cells. In order to achieve a higher degree of standardisation, we fabricated plastic yeast cells and utilised them for the stamp imprinting procedures. These sensitive layers are capable of the differentiation between Saccharomyces cerevisiae and Saccharomyces bayanus. Aside from achieving the same sensitivity compared to the polymers that were structured using native cells, we realised further enhancement of selectivity exceeding a factor of three regarding the two cell strains. These ideas could also be transferred to develop a recognition system for the more flexible erythrocytes and therefore MIP-layers of polyvinyl pyrrolidone were combined with QCMs. These devices provide sensor-based ABO blood group typing. Additionally, the differentiation of the subgroups A(1) and A(2) is shown with the generated MIP-layers that are decorated by high selectivity, namely the threefold frequency effect for the imprinted template, and negligible unspecific effects. Application of soft lithographic methods furthermore allows the design of artificial erythrocytes. These "plastic" blood cells posses an increased robustness compared to the native cells, thus opening up multiple novel strategies of surface patterning.
机译:构建由软薄的聚合物层光刻模板bioparticles结果选择性表面蛀牙的形成,时高效的传感器系统结合mass-sensitive传感器,尤其是药物。分化的不同阶段的发展酵母细胞。标准化的程度,我们塑料制作的酵母细胞,利用他们的邮票印迹过程。之间的分化能力酿酒酵母和酿酒bayanus。敏感的聚合物细胞结构使用本机,我们意识到进一步增强选择性超过一个三个关于两个细胞的压力因素。这些想法也可以转移到发展一个识别系统更加灵活红细胞因此MIP-layers聚乙烯吡咯烷酮与药物相结合。这些设备提供传感器ABO血型的血液组类型。的子组(1)和(2)所示生成MIP-layers装饰的高频率选择性,即三倍影响压印模板,可以忽略不计不具体的影响。此外允许光刻方法设计的人工红细胞。“塑料”拥有增加血液细胞鲁棒性与原生细胞相比,是如此打开多个小说表面的策略模式。

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