A novel electrochemical biosensor for bone turnover detection based on molecular imprinting technology

Nasrin Afsarimanesh, M. Alahi, S. Mukhopadhyay, M. Kruger
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Abstract

This research reports a novel label-free sensing method for the measurement of C-telopeptide of Type-I collagen (CTX-1) in order to monitor bone turnover at an early stage. An interdigital sensor jointly with Electrochemical Impedance Spectroscopy (EIS) was used to study the resistive and capacitive properties of samples. Molecular Imprinted Polymers (MIPs) containing recognition sites for CTX-1 molecules were synthesized. The sensor was coated with the prepared MIPs to increase the sensitivity of the sensor to CTX-1. Different known concentration samples were tested and the sensitivity curve was plotted. The Nyquist fitted Curve and its equivalent Randle's circuit was estimated using a complex non-linear least square method (CNLS). The initial results are promising for further development of an inexpensive and portable device for early detection of bone turnover, so therapy can be started earlier.
一种基于分子印迹技术的骨转换检测电化学传感器
本研究报道了一种新的无标记传感方法,用于测量i型胶原c -末端肽(CTX-1),以监测早期骨转换。采用数字间传感器与电化学阻抗谱(EIS)相结合的方法研究了样品的电阻和电容特性。合成了含有CTX-1分子识别位点的分子印迹聚合物(Molecular imprinting Polymers, MIPs)。在传感器表面涂覆制备的MIPs以提高传感器对CTX-1的灵敏度。测定了不同已知浓度的样品,绘制了灵敏度曲线。采用复杂非线性最小二乘法(CNLS)对Nyquist拟合曲线及其等效Randle电路进行估计。初步结果有望进一步开发出一种廉价且便携的设备,用于早期检测骨转换,从而可以更早地开始治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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