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Adhesion of an Ultrasmall Nanoparticle on a Bilayer Membrane is Still Size and Shape Dependent被引量:1
2015年
It has been found recently that an ultrasmall nanoparticle whose size is smaller than the thickness of a cell membrane has unique roles in biomedical applications including the development of next generation of drugs or advanced nanoscale cargo carriers.However,the effect of physical properties of an ultrasmall nanoparticle on its adhesion to a bilayer membrane,which is a key step for Nano-Bio interaction as well as the biomedical applications,is still largely unknown.By using molecular dynamics,we find that both size and shape of an ultrasmall nanoparticle strongly affect its adhesion states on a bilayer membrane(e.g.,adhesion,separation or entwined by polymer chains).Interestingly,our simulations show that with decreasing particle size,the effect of particle shape becomes even more evident for the adhesion behavior.It is indicated that the competition between nanoparticle-polymer binding and polymer chain deformation,both of which are influenced by particle size and shape,determines the final adhesion states of an ultrasmall nanoparticle.Our results are helpful for the full understanding of interaction mechanism between nanoparticles and cell membranes and the practical applications of such ultrasmall nanoparticles.
Hao YangLing WangBing YuanKai YangYuqiang Ma
关键词:ADHESIONBIOMATERIALS
由于磷脂分子与纳米粒子相互作用导致的细胞吞噬过程的协作性研究
纳米粒子是最具前景的靶向于细胞的药物输运载体,有望实现人类在细胞尺度上疾病的诊断和治疗,而细胞对纳米粒子的吞噬行为正是这些生物医药应用的关键基础。纳米粒子进入细胞通常采用两种方式:物理穿透和内吞。但人们对于在这两个过程中...
杨恺元冰马余强
关键词:协作性内吞
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