Department of Chemistry, Physics and Atmospheric Sciences, Jackson State University, Jackson, MS, USA.
J Mol Model. 2021 May 5;27(6):153. doi: 10.1007/s00894-021-04765-6.
Density functional theory methods have been applied to understand binding of (s)-propranolol, a template, to a methacrylic acid molecule acting as a functional monomer using basic 1:1 model. The model has been expanded to study the effect of various pH by adding hydronium and hydroxide ions solvated by water molecules to the template-monomer system, to mimic acidic and basic environments, respectively. This could be considered a model study towards a potential use of molecular imprinting method for the design of a transdermal patch for a topical and direct delivery of (s)-propranolol to hemangiomas. In addition, this study provides detailed binding site analysis of the template and functional monomer verified by the theoretical IR spectra analysis, as well as solvent and pH effects on template-monomer binding energy.
密度泛函理论方法已被应用于理解(s)-普萘洛尔(一种模板)与甲基丙烯酸分子(作为功能单体)的结合,使用基本的 1:1 模型。该模型通过向模板-单体系统中添加水分子溶剂化的氢离子和氢氧根离子,分别模拟酸性和碱性环境,从而扩展到研究各种 pH 值的影响。这可以被认为是对分子印迹法用于设计局部和直接递送至血管畸形的(s)-普萘洛尔透皮贴剂的潜在用途的模型研究。此外,该研究通过理论红外光谱分析验证了模板和功能单体的详细结合位点分析,以及溶剂和 pH 值对模板-单体结合能的影响。