Rahimi Ali, Amjad-Iranagh Sepideh, Modarress Hamid
Department of Chemical Engineering, Amirkabir University of Technology, Tehran, Iran.
J Mol Model. 2016 Mar;22(3):59. doi: 10.1007/s00894-016-2925-0. Epub 2016 Feb 17.
Poly(L-lysine) (PLL) dendrimer are amino acid based macromolecules and can be used as drug delivery agents. Their branched structure allows them to be functionalized by various groups to encapsulate drug agents into their structure. In this work, at first, an attempt was made on all-atom simulation of PLL dendrimer of different generations. Based on all-atom results, a course-grained model of this dendrimer was designed and its parameters were determined, to be used for simulation of three generations of PLL dendrimer, at two pHs. Similar to the all-atom, the coarse-grained results indicated that by increasing the generation, the dendrimer becomes more spherical. At pH 7, the dendrimer had larger size, whereas at pH 12, due to back folding of branching chains, they had the tendency to penetrate into the inner layers. The calculated radial probability and radial distribution functions confirm that at pH 7, the PLL dendrimer has more cavities and as a result it can encapsulate more water molecules into its inner structure. By calculating the moment of inertia and the aspect ratio, the formation of spherical structure for PLL dendrimer was confirmed.
聚(L-赖氨酸)(PLL)树枝状大分子是基于氨基酸的大分子,可作为药物递送剂。它们的分支结构使其能够被各种基团功能化,从而将药物制剂包裹在其结构中。在这项工作中,首先对不同代数的PLL树枝状大分子进行了全原子模拟。基于全原子模拟结果,设计了该树枝状大分子的粗粒度模型并确定了其参数,用于模拟三代PLL树枝状大分子在两种pH值下的情况。与全原子模拟结果类似,粗粒度模拟结果表明,随着代数的增加,树枝状大分子变得更加球形。在pH值为7时,树枝状大分子尺寸更大,而在pH值为12时,由于支链的反向折叠,它们有向内层渗透的趋势。计算得到的径向概率和径向分布函数证实,在pH值为7时,PLL树枝状大分子有更多的空腔,因此它可以在其内部结构中包裹更多的水分子。通过计算转动惯量和长宽比,证实了PLL树枝状大分子形成了球形结构。