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Molecular dynamics simulation studies of the conformation and lateral mobility of a charged adsorbate biomolecule: Implications for estimating the critical value of the radius of a pore in porous media

机译:带电的吸附性生物分子的构象和横向迁移率的分子动力学模拟研究:估计多孔介质中孔半径的临界值的意义

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The conformations, the values of the lateral transport coefficient of a charged biomolecule (desmopressin) in the adsorbed layer and in the liquid layers above the adsorbed layer, the potential energies of the interaction between the biomolecules located in different liquid layers with the charged solid surface and with the biomolecules in the adsorbed layer, the potential energies of the interaction between water molecules in the hydration layers surrounding the conformations of the biomolecules in different layers, as well as the structure and number of hydration layers between the different conformations of desmopressin, were determined by molecular dynamics simulation studies. The results show that the lateral mobility of the adsorbed desmopressin is approximately equal to zero and the value of the lateral transport coefficient of the biomolecule in the liquid layers located above the adsorbed layer increases as the distance of the liquid layer from the charged solid surface increases. But the values of the lateral transport coefficient of the biomolecule in the liquid layers above the adsorbed layer are lower in magnitude than the value of the transport coefficient of desmopressin along the direction normal to the charged solid surface in the liquid phase located above the vacant charged sites of the solid surface, and these differences in the values of the transport coefficients have important implications with respect to the replenishment of the biomolecules in the inner parts of a channel (pore), the overall rate of adsorption, and the form of the constitutive equations that would have to be used in macroscopic models to describe the mechanisms of mass transfer and adsorption in the pores of adsorbent media. Furthermore, a novel method is presented in this work that utilizes the information about the sizes of the conformations of the biomolecule in the adsorbed layer and in the liquid layers above the adsorbed layer along the direction that is normal to the charged solid surface, as well as the number and size of the hydration layers along the same direction, and could be used to estimate the value of the lower bound of the linear characteristic dimension of a pore (i.e., pore radius) in porous adsorbent media (e.g., porous adsorbent particles; skeletons of porous monoliths) in order to realize effective transport and overall adsorption rate. (c) 2005 Elsevier Inc. All rights reserved.
机译:构象,吸附层和吸附层上方液体层中带电生物分子(去氨加压素)的横向传输系数值,位于不同液体层中的生物分子与带电固体表面之间相互作用的势能吸附层中存在生物分子时,围绕不同层中生物分子构象的水合层中水分子之间相互作用的势能以及去氨加压素不同构象之间的水合层的结构和数量为由分子动力学模拟研究确定。结果表明,吸附的去氨加压素的侧向迁移率近似等于零,并且随着液体层离带电固体表面的距离增加,位于吸附层上方的液体层中生物分子的横向转运系数值增大。 。但是,在吸附层上方的液体层中,生物分子的横向传输系数值在大小上低于去氨加压素在垂直于处于空位带电状态的液相中沿垂直于带电固体表面方向的传输系数的值。固体表面的位置,以及这些输运系数值的差异,对通道(孔)内部生物分子的补充,总吸附速率和本构形式具有重要意义宏观模型中必须使用的方程式来描述吸附介质孔隙中的质量转移和吸附机理。此外,在这项工作中提出了一种新颖的方法,该方法利用了有关吸附分子和吸附层上方液体层中生物分子构象大小的信息,该信息也沿垂直于带电固体表面的方向进行。沿相同方向的水化层的数量和大小,可以用来估计多孔吸附剂介质(例如,多孔吸附剂颗粒)中的孔的线性特征尺寸(即孔半径)的下限值;多孔整体结构的骨架)以实现有效的传输和整体吸附速率。 (c)2005 Elsevier Inc.保留所有权利。

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