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Spontaneous Penetration of Carbon Nanotubes through Lipid Bilayers: A Computational Perspective

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Title
Spontaneous Penetration of Carbon Nanotubes through Lipid Bilayers: A Computational Perspective
Issued Date
2026-04
Citation
JOURNAL OF PHYSICAL CHEMISTRY B, v.130, no.14, pp.3877 - 3887
Type
Article
Keywords
SOFTWARE NEWSCELL-MEMBRANEMODELDISRUPTIONPIERCEWEIGHTED ENSEMBLE SIMULATIONMOLECULAR-DYNAMICS
ISSN
1520-6106
Abstract

Carbon nanotubes (CNTs) have been widely explored for applications ranging from drug delivery to energy conversion. To evaluate their potential as drug-delivery agents, it is essential to understand the molecular mechanisms governing their interactions with, and possible transport across, cell membranes. Molecular dynamics (MD) simulations provide a powerful framework for probing these processes at molecular resolution. In this study, we investigate the spontaneous membrane insertion and deep penetration of pristine CNTs (p-CNTs) using the weighted ensemble (WE) method combined with all-atom MD simulations. Two p-CNTs with similar diameters but different lengths were examined to elucidate how nanotube length influences membrane-interaction behavior. Both p-CNTs readily insert into the hydrophobic core of the membrane; however, they exhibit distinct behaviors near the lower leaflet. Although neither p-CNT fully escapes into the opposite aqueous phase due to strong hydrophobic interactions, the WE approach enables detailed characterization of their penetration pathways and the associated free-energy landscape within the bilayer.

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URI
https://scholar.dgist.ac.kr/handle/20.500.11750/60686
DOI
10.1021/acs.jpcb.5c08432
Publisher
AMER CHEMICAL SOC
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최승호
Choe, Seungho최승호

Department of Energy Science and Engineering

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