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Three-dimensional biosensor surface based on novel thorns-like polyelectrolytes

机译:三维生物传感器表面基于新颖的荆棘状聚电解质

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摘要

We have developed a new three-dimensional (3D) surface for use in biosensors that is based on modified novel thorns-like polyelectrolytes (3D-PETx), which comprises of poly-L-lysine (PLL) appended with multitude oligo (ethylene glycol) (OEG) and biotin moieties. It tethered to the sensor surface by PLL, while the OEG-biotin chains are forced to stretch away from the surface for target detections. Due to its 3D structure, the number of the OEG-biotin per surface unit is markedly increased compared to conventional 2D polyelectrolytes (2D-PET) coating. Their antifouling property and sensing performance for human IgG and PSA were compared with the 2D-PET by BioLayer Interferometry (Blitz), Surface Plasmon Resonance (SPR), microfluidic devices and Enzyme-Linked ImmunoSorbent Assay (ELISA). Experimental results show that 3D-PETx presents higher sensitivity for biomarker detection both in buffer and in serum and provides an almost non-fouling surface even in undiluted serum. In addition, a sensitive PSA detection was achieved in undiluted serum with a LOD down to 0.6 ng/mL. The successful immunosensing in undiluted serum demonstrate the potential of the 3D-PETx coating for real clinical applications.
机译:我们开发了一种新的三维(3D)表面,用于基于改性新型刺的聚电解质(3D-PETX)的生物传感器,其包含含有众多寡核苷酸的聚-L-赖氨酸(PLL)(乙二醇)(OEG)和生物素部分。它通过PLL将其束缚在传感器表面上,而OEG-BIOTIN链被迫远离表面延伸以进行靶检测。由于其3D结构,与传统的2D聚电解质(2D-PET)涂层相比,每个表面单元的OEG-Biotin的数量明显增加。通过Biolayer干涉测量(Blitz),表面等离子体共振(SPR),微流体装置和酶联免疫吸附测定(ELISA)将其防污性能和对人IgG和PSA的感测性能进行比较。实验结果表明,3D-PETX在缓冲液和血清中对生物标志物检测的敏感性较高,即使在未稀释的血清中也提供了几乎不污染的表面。此外,在未稀释的血清中实现了敏感的PSA检测,含量降至0.6ng / ml。未稀释的血清中成功的免疫抑制表现出真实临床应用的3D-PETX涂层的潜力。

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