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Thermo-Nanoimprinted Biomimetic Probe for LPS and LTA Immunosensing

机译:用于LPS和LTA免疫传感的热纳米印迹仿生探针

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摘要

A complex prepolymerized film comprising monomers, cross-linkers, and initiator is usually used to create molecularly imprinted polymers. We herein exploit ready-to-use resist materials and link molecular surface imprinting with UV- and thermo-nanoimprinting techniques to create a sensor layer for the specific recognition of the bacterial surface markers lipopolysaccharide (LPS) and lipoteichoic acid (LTA). To account for the highly polar moieties of LPS and LTA, we evaluate different resist and stamp materials of distinct surface properties by AFM and molecularly imprinted sorbent assays. Thermo nanoimprinting of LPS and LTA micelles to Epon 1002F films exhibits excellent sensitivity of up to 13 times increased signals compared to those of the nonimprinted films and negligible cross-reaction with the tested nonspecific analyte. Additionally, the sensitivity and selectivity of the thermo nanoimprints is compared to conventional molecular surface imprints using a cocktail of acrylic monomers in QCM measurements.
机译:通常使用包含单体,交联剂和引发剂的复杂的预聚合膜来制造分子印迹聚合物。我们在本文中利用即用型抗蚀剂材料,并通过紫外线和热纳米压印技术链接分子表面压印,以创建用于细菌表面标记脂多糖(LPS)和脂磷壁酸(LTA)的特异性识别的传感器层。为了说明LPS和LTA的高极性部分,我们通过AFM和分子印迹吸附剂测定法评估了具有不同表面特性的不同抗蚀剂和印模材料。 LPS和LTA胶束对Epon 1002F膜的热纳米压印与非压印膜相比具有高达13倍的增强信号灵敏度,并且与测试的非特异性分析物的交叉反应可忽略不计。此外,在QCM测量中,使用丙烯酸单体混合物将热纳米压印的灵敏度和选择性与常规分子表面压印进行了比较。

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