Processable cyclic peptide nanotubes with tunable interiors.
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Summary
The new design of such a cyclic peptide enables one to modulate the nanotube growth process to be compatible with the polymer processing window without compromising the formation of high aspect ratio nanotubes, thus opening a viable approach toward molecularly defined porous membranes.
- Type
- article
- Published
- 2011-09-14
- Cited by
- 116
- References
- 38
- OpenAlex
- https://openalex.org/W1966112922
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41494560
Keywords
Chemistry, Cyclic peptide, Peptide, Nanotube, Membrane
References
- Strong piezoelectricity in bioinspired peptide nanotubes.
- Artificial transmembrane ion channels from self-assembling peptide nanotubes
- Amino acid containing anion receptors.
- SUPRAMOLECULAR DESIGN BY COVALENT CAPTURE. DESIGN OF A PEPTIDE CYLINDER VIA HYDROGEN-BOND-PROMOTED INTERMOLECULAR OLEFIN METATHESIS
- Selective transport of water mediated by porous dendritic dipeptides.
- One-dimensional self-assembly of planar pi-conjugated molecules: adaptable building blocks for organic nanodevices.
- Self-assembling organic nanotubes based on a cyclic peptide architecture
- Designing the Next Generation of Chemical Separation Membranes
- The conformational analysis of peptides using fourier transform IR spectroscopy
- Self-assembly of amphiphilic dendritic dipeptides into helical pores
- Alpha,gamma-peptide nanotube templating of one-dimensional parallel fullerene arrangements.
- Science and technology for water purification in the coming decades
- Self-Assembling Peptide Nanotubes
- New cyclic peptide assemblies with hydrophobic cavities: the structural and thermodynamic basis of a new class of peptide nanotubes.
- Self-Assembling Cyclic β3-Peptide Nanotubes as Artificial Transmembrane Ion Channels
- Dendritic folate rosettes as ion channels in lipid bilayers.
- Molecular design and synthesis of artificial ion channels based on cyclic peptides containing unnatural amino acids.
- Self-assembling peptide-polymer conjugates comprising (D-alt-L)-cyclopeptides as aggregator domains
- Intramolecular conformational control in a cyclic peptide composed of alternating L-proline and substituted 3-aminobenzoic acid subunits
- Large-diameter self-assembled dimers of alpha,gamma-cyclic peptides, with the nanotubular solid-state structure of cyclo-[(l-Leu-D-(Me)N-gamma-Acp)(4)-].4CHCl(2)COOH.
Cited by
- CHARACTERIZATION OF PEPTIDE CYCLASE 1 (PCY1), A SERINE PROTEASE-LIKE ENZYME INVOLVED IN CYCLIC PEPTIDE BIOSYNTHESIS IN PLANTS
- Self assembly of (N-methylated cyclic peptide)-polymer conjugates
- Understanding emergent functions in self-assembled fibrous networks
- Dipeptide Nanotubes Containing Unnatural Fluorine-Substituted β(2,3)-Diarylamino Acid and L-Alanine as Candidates for Biomedical Applications.
- Molecular dynamics simulations for designing biomimetic pores based on internally functionalized self-assembling α,γ-peptide nanotubes.
- Enzyme-regulated topology of a cyclic peptide brush polymer for tuning assembly.
- Self-assembling α,γ-cyclic peptides that generate cavities with tunable properties
- Cation-Transporting Peptides: Scaffolds for Functionalized Pores?
- Co-assembly of cyclic peptide nanotubes and block copolymers in thin films: controlling the kinetic pathway.
- Atomistic simulation based prediction of the solvent effect on the molecular mobility and glass transition of poly (methyl methacrylate)
- Active ion transporters from readily accessible acyclic octapeptides containing 3-aminobenzoic acid and alanine.
- Self‐Assembled Supramolecular Nanotube Yarn
- Self-Assembly: From Amphiphiles to Chromophores and Beyond
- Ion channel models based on self-assembling cyclic peptide nanotubes
- Surface mediated L-phenylalanyl-L-phenylalanine assembly into large dendritic structures.
- Thermodynamics versus Kinetics Dichotomy in the Linear Self-Assembly of Mixed Nanoblocks.
- Transmembrane ion transport by self-assembling α,γ-peptide nanotubes
- Critical Scales Govern the Mechanical Fragmentation Mechanisms of Biomolecular Assemblies
- Self‐Assembling Nanotubes Consisting of Rigid Cyclic γ‐Peptides
- Self-assembly and chemical processing of block copolymers: a roadmap towards a diverse array of block copolymer nanostructures
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