Yamada Norifumi L, Hishida Mafumi, Torikai Naoya
Neutron Science Laboratory, High Energy Accelerator Research Organization, Tsukuba 305-0801, Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Mar;79(3 Pt 1):032902. doi: 10.1103/PhysRevE.79.032902. Epub 2009 Mar 13.
The structure of unilamellar vesicles (ULVs), comprising long- and short-chain lipids, was investigated, and the formation of nanopores on the surface of the ULVs was confirmed under the condition of long- and short-chain lipids being separated. It was also revealed that the behavior of the structural phase transition from ULVs to bilayered micelles (bicelles) depends on the number of nanopores formed on the surface of the ULVs. Because both the rim structures of nanopores and bicelles are considered to be microdomains of short-chain lipids, this phase behavior was explained by considering the kinetic pathway of the growth of the rim domain. It was concluded that the phase segregation of lipids plays an essential role in the rim formation of nanopores as well as bicelles.
研究了由长链和短链脂质组成的单层囊泡(ULV)的结构,并证实在长链和短链脂质分离的条件下,ULV表面会形成纳米孔。还发现从ULV到双层胶束(双分子层胶束)的结构相变行为取决于ULV表面形成的纳米孔数量。由于纳米孔和双分子层胶束的边缘结构都被认为是短链脂质的微区,因此通过考虑边缘域生长的动力学途径来解释这种相行为。得出的结论是,脂质的相分离在纳米孔以及双分子层胶束的边缘形成中起着至关重要的作用。