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Highly permeable artificial water channels that can self-assemble into two-dimensional arrays

Shen, Yue Xiao
•
Si, Wen
•
Erbakan, Mustafa
altro
Weitz, David A.
2015
  • journal article

Periodico
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Abstract
Bioinspired artificial water channels aim to combine the high permeability and selectivity of biological aquaporin (AQP) water channels with chemical stability. Here, we carefully characterized a class of artificial water channels, peptide-appended pillar[5]arenes (PAPs). The average single-channel osmotic water permeability for PAPs is 1.0(± 0.3) × 10(-14) cm(3)/s or 3.5(± 1.0) × 10(8) water molecules per s, which is in the range of AQPs (3.4 ∼ 40.3 × 10(8) water molecules per s) and their current synthetic analogs, carbon nanotubes (CNTs, 9.0 × 10(8) water molecules per s). This permeability is an order of magnitude higher than first-generation artificial water channels (20 to ∼ 10(7) water molecules per s). Furthermore, within lipid bilayers, PAP channels can self-assemble into 2D arrays. Relevant to permeable membrane design, the pore density of PAP channel arrays (∼ 2.6 × 10(5) pores per μm(2)) is two orders of magnitude higher than that of CNT membranes (0.1 ∼ 2.5 × 10(3) pores per μm(2)). PAP channels thus combine the advantages of biological channels and CNTs and improve upon them through their relatively simple synthesis, chemical stability, and propensity to form arrays.
DOI
10.1073/pnas.1508575112
WOS
WOS:000359285100034
Archivio
http://hdl.handle.net/11368/2872201
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84938926612
http://www.pnas.org/content/112/32/9810.full.pdf
Diritti
open access
license:digital rights management non definito
license:digital rights management non definito
FVG url
https://arts.units.it/request-item?handle=11368/2872201
Soggetti
  • Artificial aquaporin

  • Artificial water chan...

  • Peptide-appended pill...

  • Single-channel water ...

  • Two-dimensional array...

  • Aquaporin

  • Ion Channel

  • Ion

  • Models, Molecular

  • Molecular Dynamics Si...

  • Nanotube

  • Carbon

  • Peptide

  • Permeability

  • Unilamellar Liposome

  • Water

  • Multidisciplinary

Scopus© citazioni
121
Data di acquisizione
Jun 15, 2022
Vedi dettagli
Web of Science© citazioni
160
Data di acquisizione
Mar 19, 2024
Visualizzazioni
1
Data di acquisizione
Apr 19, 2024
Vedi dettagli
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