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Drug-dendrimer supramolecular complexation studied from molecular dynamics simulations and NMR spectroscopy

机译:从分子动力学模拟和NMR光谱研究药物树状大分子的超分子络合

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Fully atomistic molecular dynamics (MD) simulations and NMR spectroscopy were employed to get insights about the molecular details of drug-dendrimer supramolecular association phenomena, using piroxicam (PRX) and the third generation poly(amido amine) (PAMAM-G3) dendrimer as model systems. Theoretical results concerning the complex stoichiometry suggest that PRX forms drug-dendrimer complexes of the type 24:1 at pH 7.0. This result was validated with the experimental quantities obtained from aqueous solubility profiles, which led to an empiric stoichiometry of 23:1 for the PRX:PAMAM-G3 system. The predicted binding mode between PRX and PAMAM-G3 accounts for the preferred encapsulation of the drug inside dendrimer cavities, which is mainly driven by van der Waals and hydrogen bonding interactions, and to a lesser extent, for the external association of the guest through electrostatic contacts with the positively charged amino groups of PAMAM periphery. The binding mode obtained from MD simulations was confirmed with 2D-NOESY experiments, which evidence the preferred internal complexation of PRX with PAMAMG3. The predominance of internal encapsulation over external contacts in the PRX:PAMAM-G3 system differs from the general behaviour expected for acidic anionic guests, for which external electrostatic interactions with the positively charged PAMAM surface have been postulated as the most relevant factor for drug association.
机译:使用吡罗昔康(PRX)和第三代聚(酰胺胺)(PAMAM-G3)树状大分子作为模型,使用完全原子分子动力学(MD)模拟和NMR光谱来了解有关药物树状大分子超分子缔合现象的分子细节。系统。有关复杂化学计量的理论结果表明,PRX在pH 7.0时会形成24:1类型的药物-树状聚合物复合物。该结果通过从水溶性曲线获得的实验量得到了验证,这导致PRX:PAMAM-G3系统的经验化学计量比为23:1。 PRX和PAMAM-G3之间的预测结合模式说明了药物在树状大分子腔内的优选封装,这主要是由范德华力和氢键相互作用驱动的,而在较小程度上,是客体通过静电的外部缔合与PAMAM外围带正电荷的氨基接触。通过2D-NOESY实验确认了从MD模拟获得的结合模式,这证明了PRX与PAMAMG3的优选内部复合。在PRX:PAMAM-G3系统中,内部封装在外部触点上的优势不同于酸性阴离子客体所预期的一般行为,为此,人们假定与带正电荷的PAMAM表面的外部静电相互作用是与药物缔合最相关的因素。

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