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首页> 外文期刊>The Journal of Chemical Physics >Molecular dynamics study of charged dendrimers in salt-free solution: Effect of counterions
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Molecular dynamics study of charged dendrimers in salt-free solution: Effect of counterions

机译:无盐溶液中带电树枝状大分子的分子动力学研究:抗衡离子的作用

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Polyamidoamine dendrimers, being protonated under physiological conditions, represent a promising class of nonviral, nanosized vectors for drug and gene delivery. We performed extensive molecular dynamics simulations of a generic model dendrimer in a salt-free solution with dendrimer's terminal beads positively charged. Solvent molecules as well as counterions were explicitly included as interacting beads. We find that the size of the charged dendrimer depends nonmonotonically on the strength of electrostatic interactions demonstrating a maximum when the Bjerrum length equals the diameter of a bead. Many other structural and dynamic characteristics of charged dendrimers are also found to follow this pattern. We address such a behavior to the interplay between repulsive interactions of the charged terminal beads and their attractive interactions with oppositely charged counterions. The former favors swelling at small Bjerrum lengths and the latter promotes counterion condensation. Thus, counterions can have a dramatic effect on the structure and dynamics of charged dendrimers and, under certain conditions, cannot be treated implicitly. (c) 2006 American Institute of Physics.
机译:在生理条件下质子化的聚酰胺酰胺树状聚合物代表了有前景的一类用于药物和基因传递的非病毒,纳米级载体。我们在无盐溶液中对树枝状聚合物的末端珠带正电,对通用模型树枝状聚合物进行了广泛的分子动力学模拟。溶剂分子和抗衡离子被明确包括为相互作用的珠。我们发现,带电树枝状分子的大小非单调取决于静电相互作用的强度,当Bjerrum长度等于珠子的直径时,静电相互作用的强度最大。还发现带电树枝状聚合物的许多其他结构和动态特性也遵循这种模式。我们针对带电末端珠的排斥相互作用与其与带相反电荷的抗衡离子的有吸引力的相互作用之间的相互作用解决了这一问题。前者倾向于在较小的Bjerrum长度处溶胀,而后者则促进抗衡离子缩合。因此,抗衡离子可对带电树枝状大分子的结构和动力学产生巨大影响,并且在某些条件下不能隐式处理。 (c)2006年美国物理研究所。

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