College of Chemistry and Bioengineering, Guilin University of Technology, Guilin 541004, China.
College of Chemistry & Environment Engineering, Baise University, Baise 533000, China.
Biosensors (Basel). 2023 Apr 28;13(5):509. doi: 10.3390/bios13050509.
The efficacies and toxicities of chiral drug enantiomers are often dissimilar, necessitating chiral recognition methods. Herein, a polylysine-phenylalanine complex framework was used to prepare molecularly imprinted polymers (MIPs) as sensors with enhanced specific recognition capabilities for levo-lansoprazole. The properties of the MIP sensor were investigated using Fourier-transform infrared spectroscopy and electrochemical methods. The optimal sensor performance was achieved by applying self-assembly times of 30.0 and 25.0 min for the complex framework and levo-lansoprazole, respectively, eight electropolymerization cycles with -phenylenediamine as the functional monomer, an elution time of 5.0 min using an ethanol/acetic acid/HO mixture (2/3/8, //) as the eluent, and a rebound time of 10.0 min. A linear relationship was observed between the sensor response intensity (Δ) and logarithm of the levo-lansoprazole concentration (l-g ) in the range of 1.0 × 10-3.0 × 10 mol/L. Compared with a conventional MIP sensor, the proposed sensor showed more efficient enantiomeric recognition, with high selectivity and specificity for levo-lansoprazole. The sensor was successfully applied to levo-lansoprazole detection in enteric-coated lansoprazole tablets, thus demonstrating its suitability for practical applications.
手性药物对映异构体的疗效和毒性往往不同,因此需要手性识别方法。在此,我们使用聚赖氨酸-苯丙氨酸复合框架来制备分子印迹聚合物(MIPs)作为传感器,以增强对手性左旋兰索拉唑的特异性识别能力。使用傅里叶变换红外光谱和电化学方法研究了 MIP 传感器的性能。通过分别将复合框架和左旋兰索拉唑的自组装时间优化为 30.0 和 25.0 分钟、使用邻苯二胺作为功能单体进行 8 次电聚合循环、以乙醇/乙酸/HO 混合物(2/3/8,//)作为洗脱剂洗脱 5.0 分钟以及将重结合时间优化为 10.0 分钟,获得了最佳的传感器性能。传感器响应强度(Δ)与左旋兰索拉唑浓度(l-g )的对数之间呈现出线性关系,范围为 1.0 × 10-3.0 × 10 mol/L。与传统的 MIP 传感器相比,所提出的传感器对手性左旋兰索拉唑具有更高效的识别能力,对其具有高选择性和特异性。该传感器成功应用于肠溶片型兰索拉唑片中的左旋兰索拉唑检测,因此证明了其在实际应用中的适用性。