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Rational computational design for the development of andrographolide molecularly imprinted polymer

机译:Andrographolide分子印迹聚合物发展的合理计算设计

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Andrographolide is a popular medicinal compound derived from Andrographis Paniculata (AP). Molecularly Imprint Polymer (MIP) is a "Lock and Key" approach, where MIP is the lock and Andrographolide is the key which fits to the MIP lock by both physically and chemically. MIP will be used as selective extraction tool to enrich Andrographolide bioactive compound. Pre-polymerization step is crucial to design MIP. This work investigates molecular interactions and the Gibbs free binding energies on the development of MIP. The structure of Andrographolide (template) and functional monomers were drawn in HyperChem 8.0.10. A hybrid quantum chemical model was used with a few functional monomers. Possible conformations of template and functional monomer as 1:n (n < 4) were designed and simulated to geometrically optimize the complex to the lowest energy in gas phase. The Gibbs free binding energies of each conformation were calculated using semi-empirical PM3 simulation method. Results proved that functional monomers that contain carboxylic group shows higher binding energy compared to those with amine functional group. Itaconic acid (IA) chosen as the best functional monomer at optimum ratio (1:3) of template: monomer to prepare andrographolide MIP. This study demonstrates the importance of studying intermolecular interaction among template, functional monomer and template-monomer ratio in developing MIP.
机译:Androghrapholide是一种衍生自Extrographis Paniculata(AP)的受欢迎的药物化合物。分子印记聚合物(MIP)是“锁定和钥匙”方法,其中MIP是锁,并且Andrographolide是物理和化学拟合摩托锁定的键。 MIP将用作选择性提取工具,以富集Endrographolide生物活性化合物。预聚合步骤至关重要的设计壁。这项工作研究了分子相互作用和GIBBS自由结合能对MIP的发育。在超接收8.0.10中绘制了Andrographolide(模板)和功能性单体的结构。杂交量子化学模型与少数功能单体一起使用。设计并模拟模板和功能性单体的可能构象,并模拟以几何优化气相中最低能量的复合物。使用半经验PM3仿真方法计算每个构象的GIBBS自由结合能。结果证明,与胺官能团相比,含有羧基的功能性单体显示出更高的结合能。作为最佳效率(1:3)的模板中选择的衣康酸(IA)作为最佳官能单体:单体制备Androhogholide MIP。本研究表明,在开发壁中研究模板,功能性单体和模板 - 单体比中的分子间相互作用的重要性。

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