Centro de Bioinformática y Simulación Molecular, Universidad de Talca, Casilla 721, Talca, Chile.
J Mol Graph Model. 2013 Feb;39:71-8. doi: 10.1016/j.jmgm.2012.11.003. Epub 2012 Nov 19.
The interaction of poly(amidoamine)-G3 (PAMAM-G3) dendrimer with nicotinic acid (NA) was investigated by using molecular dynamics (MD) simulations. First, sample free energy profiles of NA crossing PAMAM-G3 at pH 6 and 3 were computed using the adaptive biasing force (ABF) method. We found that PAMAM-G3 provides a more appropriate environment for NA inclusion when internal tertiary amine groups are unprotonated (at pH 6). However, when internal tertiary amine groups are protonated (at pH 3), the PAMAM cavities are less hydrophobic; therefore the drug-dendrimer interactions become similar to drug-solvent interactions. Traditional MD simulations were also performed to investigate the structural stability of the PAMAM-NA complexes near the free energy minima at pH 6. We found that association of NA and PAMAM adopts a preferred binding mode around the surface of PAMAM, where hydrogen bond (HB) interactions with the amino and amide NH groups of the nearby monomers are established. These interactions are very stable whether additional van der Waals interactions between pyridine ring of NA and methylene groups of the more external monomers of PAMAM are established.
使用分子动力学(MD)模拟研究了聚(酰胺-胺)-G3(PAMAM-G3)树枝状大分子与烟碱酸(NA)的相互作用。首先,使用自适应偏置力(ABF)方法计算了 pH 值为 6 和 3 时 NA 通过 PAMAM-G3 的自由能分布。我们发现,当内部叔胺基未质子化(在 pH 值为 6 时)时,PAMAM-G3 为 NA 的包含提供了更合适的环境。然而,当内部叔胺基质子化(在 pH 值为 3 时)时,PAMAM 腔的疏水性降低;因此,药物-树枝状大分子相互作用变得类似于药物-溶剂相互作用。还进行了传统的 MD 模拟,以研究 pH 值为 6 时自由能最小值附近 PAMAM-NA 复合物的结构稳定性。我们发现,NA 和 PAMAM 的缔合采用了围绕 PAMAM 表面的优先结合模式,其中与附近单体的氨基和酰胺 NH 基团建立氢键(HB)相互作用。无论是否建立了 NA 的吡啶环和 PAMAM 更外部单体的亚甲基之间的额外范德华相互作用,这些相互作用都非常稳定。