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- W2000568894 abstract "Although a large number of studies on organic nanotubes have focused on the molecular design of building blocks and their material function, there has been little research that has addressed the function of the nanochannels themselves, such as their encapsulation ability. The dimensions of self-assembled organic nanotubes (S-ONTs) are well compatible with those of diverse nanostructures, including proteins, organic, inorganic or metal nanoparticles, dendrimers, viruses and DNAs. S-ONTs can give rise to a novel research field of mesoscale host–guest science and engineering. More interestingly, S-ONTs can accommodate extremely small liquid volumes on the order of attoliters in their nanochannels. Focusing on the distinctive function and structural characteristics of these nanochannels, herein we describe the recent progress in research on the unique properties of nanochannels that can encapsulate, transport and release biomacromolecules as well as exert a confinement effect on water. Self-assembled organic nanotubes (S-ONTs) from rationally designed synthetic amphiphiles provide a variety of inner and outer surfaces as well as homogeneous hollow cylinders with precisely controlled inner diameters. Focusing on distinctive characteristics of the nanospace or nanochannel, we review the recent progress in the research on encapsulation, transportation, stabilization and release behavior of biomacromolecules in the S-ONT nanochannels in terms of application to a bioengineering field." @default.
- W2000568894 created "2016-06-24" @default.
- W2000568894 creator A5014026714 @default.
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- W2000568894 creator A5090367649 @default.
- W2000568894 creator A5090428762 @default.
- W2000568894 date "2014-08-20" @default.
- W2000568894 modified "2023-10-01" @default.
- W2000568894 title "Self-organized nanotube materials and their application in bioengineering" @default.
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