膜
纳米技术
纳米尺度
超分子化学
纳米壳
纳米颗粒
纳米结构
材料科学
弹性(材料科学)
离子
生物物理学
化学
复合材料
结晶学
生物化学
有机化学
晶体结构
生物
作者
Tamás Bozó,Richárd Brecska,Pál Gróf,Miklós Kellermayer
出处
期刊:Langmuir
[American Chemical Society]
日期:2014-12-18
卷期号:31 (2): 839-845
被引量:11
摘要
Cochleates, prospective nanoscale drug delivery vehicles, are rolls of negatively charged phospholipid membrane layers. The membrane layers are held together by calcium ions; however, neither the magnitude of membrane interaction forces nor the overall mechanical properties of cochleates have been known. Here, we manipulated individual nanoparticles with atomic force microscopy to characterize their nanomechanical behavior. Their stiffness (4.2-12.5 N/m) and membrane-rupture forces (45.3-278 nN) are orders of magnitude greater than those of the tough viral nanoshells. Even though the fundamental building material of cochleates is a fluid membrane, the combination of supramolecular geometry, the cross-linking action of calcium, and the tight packing of the ions apparently lead to extreme mechanical resilience. The supramolecular design of cochleates may provide efficient protection for encapsulated materials and give clues to understanding biomolecular structures of similar design, such as the myelinated axon.
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