Zhang Lianming, Luo Kui, Gao Jingxia, Li Jianping
College of Chemistry and Bioengineering, Guilin University of Technology, Guilin 541004, China.
Polymers (Basel). 2022 Oct 2;14(19):4133. doi: 10.3390/polym14194133.
A new chiral molecularly imprinted polymer (MIP) sensor with dual recognition ability was developed for the highly selective separation of enantiomers with toxic side effects in drugs. The sensor contains double-stranded deoxyribonucleic acid (dsDNA) as the element that immobilizes the chiral molecular conformation: the dsDNA enables the imprinted cavities to match the three-dimensional structure and functional groups from the chiral molecule. By embedding the spatial orientation of dsDNA in MIPs, one can accurately capture and immobilize the molecular conformation, eliminating the influence of interfering analogues. Herein, L-penicillamine (L-Pen) was selected as the chiral template molecule and embedded into dsDNA to form dsDNA-L-Pen complex, which was then embedded into the MIPs by electropolymerization. After elution, the stereo-selective imprinted cavities were obtained. The ATATATATATAT-TATATATATATA base sequence showed a high affinity for the embedded L-Pen, which endowed the imprinted cavities with a larger number of sites and improved the selectivity toward Pen enantiomers. Under the optimal working conditions, the current response of the MIP/dsDNA sensor exhibited a positive linear relationship with the logarithm of the L-Pen concentration in the range of 3.0 × 10 to 3.0 × 10 mol/L, and the detection limit was 2.48 × 10 mol/L. After the introduction of dsDNA into the MIP, the selectivity of the sensor toward D-Pen increased by 6.4 times, and the sensor was successfully applied in the analysis of L-Pen in penicillamine tablets.
开发了一种具有双重识别能力的新型手性分子印迹聚合物(MIP)传感器,用于高选择性分离药物中具有毒副作用的对映体。该传感器包含双链脱氧核糖核酸(dsDNA)作为固定手性分子构象的元件:dsDNA使印迹腔与手性分子的三维结构和官能团相匹配。通过将dsDNA的空间取向嵌入MIP中,可以准确捕获和固定分子构象,消除干扰类似物的影响。在此,选择L-青霉胺(L-Pen)作为手性模板分子并嵌入dsDNA中形成dsDNA-L-Pen复合物,然后通过电聚合将其嵌入MIP中。洗脱后,获得立体选择性印迹腔。ATATATATATAT-TATATATATATA碱基序列对嵌入的L-Pen表现出高亲和力,这赋予印迹腔更多的位点,并提高了对Pen对映体的选择性。在最佳工作条件下,MIP/dsDNA传感器的电流响应与L-Pen浓度在3.0×10至3.0×10 mol/L范围内的对数呈正线性关系,检测限为2.48×10 mol/L。将dsDNA引入MIP后,传感器对D-Pen的选择性提高了6.4倍,该传感器成功应用于青霉胺片中L-Pen的分析。