Research and Development Centre, Malladi Drugs and Pharmaceuticals Ltd., No. 788/1, Irulapalayam, Kuthambakkam 602 107, India ; Department of Chemistry, PRIST University, East Campus, Thanjavur 613 403, India.
Saudi Pharm J. 2012 Jan;20(1):53-61. doi: 10.1016/j.jsps.2011.06.004. Epub 2011 Jul 5.
In this study molecular imprinting technology was employed to prepare a specific affinity sorbent for the resolution of Cathine, a chiral drug product. The molecularly imprinted polymer (MIP) was prepared by non-covalent molecular imprinting with either (+) or (-)-Cathine (threo-2-amino-1-hydroxy-1-phenyl propane; norpseudoephedrine) as the template. Methacrylic acid and ethylene glycol di-methacrylate were copolymerized in the presence of the template molecule. The bulk polymerization was carried out in chloroform with 2,2'-azobisisobutyronitrile as the initiator, at 5 °C and under UV radiation. The resulting MIP was ground into powders, which were slurry packed into analytical columns. After removal of template molecules, the MIP-packed columns were found to be effective for the resolution of (±)-Cathine racemates. The separation factor for the enantiomers ranged between 1.5 and 2.4 when the column was packed with MIP prepared with (+)-Cathine as the template. A separation factor ranging from 1.6 to 2.9 could be achieved from the column packed with MIP, prepared with (-)-Cathine as the template. Although the separation factor was higher with that previously obtained from reversed-phase column chromatography following derivatization with a chiral agent, elution peaks were broader due to the heterogeneity of binding sites on MIP particles and the possible non-specific interaction.
在这项研究中,采用分子印迹技术制备了一种特定的亲和吸附剂,用于拆分手性药物 Cathine。该分子印迹聚合物(MIP)是通过非共价分子印迹法,以(+)或(-)-Cathine(苏-2-氨基-1-羟基-1-苯基丙烷;norpseudoephedrine)作为模板制备的。甲基丙烯酸和乙二醇二甲基丙烯酸酯在模板分子的存在下共聚。本体聚合在氯仿中进行,以 2,2'-偶氮二异丁腈作为引发剂,在 5°C 下并在紫外辐射下进行。所得 MIP 被研磨成粉末,然后将其浆状填充到分析柱中。在除去模板分子后,发现 MIP 填充柱可有效拆分(±)-Cathine 外消旋体。当用(+)-Cathine 作为模板制备 MIP 填充柱时,对映体的分离因子在 1.5 到 2.4 之间。用(-)-Cathine 作为模板制备的 MIP 填充柱可以实现 1.6 到 2.9 的分离因子。尽管与先前通过用手性试剂衍生化的反相柱色谱法获得的分离因子更高,但由于 MIP 颗粒上结合位点的异质性和可能的非特异性相互作用,洗脱峰较宽。