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首页> 外文期刊>Journal of nanoscience and nanotechnology >Liposomes form nanotubules and long range networks in the presence of electric field
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Liposomes form nanotubules and long range networks in the presence of electric field

机译:脂质体在电场存在下形成纳米管和远程网络

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摘要

Liposomes are lipid bilayer-bound micron scale structures critical to therapeutic treatments, biophysical studies, cosmetics, food, constrained volume experiments, and gene transfer.(1-8) Applying an electric field to separate mixtures of liposomes played a role in their discovery and is still presently used for a variety of processes.(1, 9, 10) Our group has found agreement between models of electric field-induced transport and capillary electrophoresis measurements where the liposomes are described as slightly elongated with the charged lipids migrating to form a local dipole.(11) Here we show much more diverse structures that cannot be accounted for in these models. A variety of morphologies emerge, from individual liposomes being stretched into nanotubules several microns in length to long-range organized assemblies of liposomes over tens of microns. Based in this result, existing theories for electromigration of soft particles need to be re-addressed. Also, the formation of nanoscale lipid tubules suggests that unique structures for bionanoengineering can be fabricated. Much higher intrinsic fields than those applied here are observed in biology that suggests mechanical electrostatic interaction may play role in shape and function of individual biological membranes and networks of membrane-bound structures.
机译:脂质体是脂质双层结合的微米级结构,对治疗,生物物理研究,化妆品,食品,受限体积实验和基因转移至关重要。(1-8)施加电场以分离脂质体混合物在脂质体的发现和发挥作用中起着重要作用。 (1,9,10)我们的小组发现电场诱导的转运模型与毛细管电泳测量模型之间的一致性,其中脂质体被描述为稍微伸长,带电脂质迁移形成脂质体。局部偶极子。(11)在这里,我们显示了这些模型无法解释的更加多样化的结构。出现了多种形态,从单个脂质体被拉伸成长度为几微米的纳米管,再到数十微米的长距离组织的脂质体。基于此结果,需要重新讨论现有的软粒子电迁移理论。而且,纳米级脂质小管的形成表明可以制造用于生物纳米工程的独特结构。在生物学中观察到的固有场域比此处应用的场域高得多,这表明机械静电相互作用可能在单个生物膜的形状和功能以及膜结合结构的网络中起作用。

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