脂质体
小泡
化学
脂质双层
纳米技术
双层
膜
药物输送
自组装
DNA折纸
纳米
DNA纳米技术
纳米尺度
生物物理学
DNA
材料科学
生物化学
生物
复合材料
作者
Yang Yang,Jing Wang,Hideki Shigematsu,Weiming Xu,William M. Shih,James E. Rothman,Chenxiang Lin
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2016-03-21
卷期号:8 (5): 476-483
被引量:239
摘要
Artificial lipid-bilayer membranes are valuable tools for the study of membrane structure and dynamics. For applications such as the study of vesicular transport and drug delivery, there is a pressing need for artificial vesicles with controlled size. However, controlling vesicle size and shape with nanometre precision is challenging, and approaches to achieve this can be heavily affected by lipid composition. Here, we present a bio-inspired templating method to generate highly monodispersed sub-100-nm unilamellar vesicles, where liposome self-assembly was nucleated and confined inside rigid DNA nanotemplates. Using this method, we produce homogeneous liposomes with four distinct predefined sizes. We also show that the method can be used with a variety of lipid compositions and probe the mechanism of templated liposome formation by capturing key intermediates during membrane self-assembly. The DNA nanotemplating strategy represents a conceptually novel way to guide lipid bilayer formation and could be generalized to engineer complex membrane/protein structures with nanoscale precision.
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