Role of Sheet-Edge Interactions in β-sheet Self-Assembling Peptide Hydrogels
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Jacek K. Wychowaniec | A. Miller | Andrew M. Smith | O. Mykhaylyk | A. Saiani | J. Wychowaniec | C. Ligorio
[1] A. Saiani,et al. Self‐Assembling Peptide Hydrogel Matrices Improve the Neurotrophic Potential of Human Adipose‐Derived Stem Cells , 2019, Advanced healthcare materials.
[2] Jacek K. Wychowaniec,et al. Graphene oxide containing self-assembling peptide hybrid hydrogels as a potential 3D injectable cell delivery platform for intervertebral disc repair applications , 2019, Acta biomaterialia.
[3] C. Mura,et al. Stimuli-Responsive, Pentapeptide, Nanofiber Hydrogel for Tissue Engineering. , 2019, Journal of the American Chemical Society.
[4] S. Heilshorn,et al. Engineering Hydrogel Microenvironments to Recapitulate the Stem Cell Niche. , 2018, Annual review of biomedical engineering.
[5] D. Adams,et al. How should multicomponent supramolecular gels be characterised? , 2018, Chemical Society reviews.
[6] W. Stetler-Stevenson,et al. Macromolecule-Network Electrostatics Controlling Delivery of the Biotherapeutic Cell Modulator TIMP-2. , 2018, Biomacromolecules.
[7] Xuexiang Han,et al. Injectable Hexapeptide Hydrogel for Localized Chemotherapy Prevents Breast Cancer Recurrence. , 2018, ACS applied materials & interfaces.
[8] L. White,et al. Peptide Hydrogels—A Tissue Engineering Strategy for the Prevention of Oesophageal Strictures , 2017 .
[9] K. Williams,et al. In vivo characterisation of a therapeutically relevant self‐assembling 18F‐labelled β‐sheet forming peptide and its hydrogel using positron emission tomography , 2017, Journal of labelled compounds & radiopharmaceuticals.
[10] Alberto Saiani,et al. 3D cell bioprinting of self-assembling peptide-based hydrogels , 2017 .
[11] A. Miller,et al. Controlling Self-Assembling Peptide Hydrogel Properties through Network Topology. , 2017, Biomacromolecules.
[12] W. Alves,et al. Shear Alignment of Bola-Amphiphilic Arginine-Coated Peptide Nanotubes. , 2017, Biomacromolecules.
[13] Bing Xu,et al. Aromatic–Aromatic Interactions Enable α-Helix to β-Sheet Transition of Peptides to Form Supramolecular Hydrogels , 2016, Journal of the American Chemical Society.
[14] S. Cartmell,et al. Peptide hydrogel in vitro non‐inflammatory potential , 2016, Journal of peptide science : an official publication of the European Peptide Society.
[15] Andrew J. Parnell,et al. Applications of shear‐induced polarized light imaging (SIPLI) technique for mechano‐optical rheology of polymers and soft matter materials , 2016 .
[16] R. Ulijn,et al. Dynamic peptide libraries for the discovery of supramolecular nanomaterials. , 2016, Nature nanotechnology.
[17] Ruirui Xing,et al. Peptide self-assembly: thermodynamics and kinetics. , 2016, Chemical Society reviews.
[18] Sanket A. Deshmukh,et al. Water ordering controls the dynamic equilibrium of micelle–fibre formation in self-assembly of peptide amphiphiles , 2016, Nature Communications.
[19] A. Miller,et al. Osteogenic differentiation of human mesenchymal stem cells promotes mineralization within a biodegradable peptide hydrogel , 2016, Journal of tissue engineering.
[20] D. Pochan,et al. Sustained release of active chemotherapeutics from injectable-solid β-hairpin peptide hydrogel. , 2016, Biomaterials science.
[21] K. Harris,et al. Understanding the Solid-State Hydration Behavior of a Common Amino Acid: Identification, Structural Characterization, and Hydration/Dehydration Processes of New Hydrate Phases of l-Lysine , 2016 .
[22] A. Miller,et al. Modification of β-Sheet Forming Peptide Hydrophobic Face: Effect on Self-Assembly and Gelation , 2016, Langmuir : the ACS journal of surfaces and colloids.
[23] W. Alves,et al. Self-Assembly of a Designed Alternating Arginine/Phenylalanine Oligopeptide. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[24] D. Pochan,et al. Rheology of peptide- and protein-based physical hydrogels: are everyday measurements just scratching the surface? , 2015, Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology.
[25] M. Oyen,et al. Mechanical characterisation of hydrogel materials , 2014 .
[26] A. Saiani,et al. From fibres to networks using self-assembling peptides. , 2013, Faraday discussions.
[27] William J Frith,et al. The influence of the kinetics of self-assembly on the properties of dipeptide hydrogels. , 2013, Faraday discussions.
[28] A. Miller,et al. Self-assembled octapeptide scaffolds for in vitro chondrocyte culture. , 2013, Acta biomaterialia.
[29] A. Miller,et al. Effect of peptide and guest charge on the structural, mechanical and release properties of β-sheet forming peptides. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[30] O. Mykhaylyk,et al. Direct Imaging of the Orientational Dynamics of Block Copolymer Lamellar Phase Subjected to Shear Flow , 2012 .
[31] Alexander J. Federation,et al. Tuning β-sheet peptide self-assembly and hydrogelation behavior by modification of sequence hydrophobicity and aromaticity. , 2011, Biomacromolecules.
[32] A. Saiani,et al. Using small angle scattering (SAS) to structurally characterise peptide and protein self-assembled materials. , 2011, Chemical Society reviews.
[33] D. Pochan,et al. Injectable solid hydrogel: mechanism of shear-thinning and immediate recovery of injectable β-hairpin peptide hydrogels. , 2010, Soft matter.
[34] S. Stupp,et al. Spontaneous and X-ray–Triggered Crystallization at Long Range in Self-Assembling Filament Networks , 2010, Science.
[35] Andrew M. Smith,et al. Fmoc-diphenylalanine self-assembly mechanism induces apparent pKa shifts. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[36] A. Miller,et al. Self-assembly and gelation properties of α-helix versus β-sheet forming peptides , 2009 .
[37] A. Miller,et al. Thermoreversible lysozyme hydrogels: properties and an insight into the gelation pathway. , 2008, Soft matter.
[38] A. Barth. Infrared spectroscopy of proteins. , 2007, Biochimica et biophysica acta.
[39] Matthew Pilarz,et al. Controlling hydrogelation kinetics by peptide design for three-dimensional encapsulation and injectable delivery of cells , 2007, Proceedings of the National Academy of Sciences.
[40] I. Hamley. Peptide fibrillization. , 2007, Angewandte Chemie.
[41] J. Trewhella,et al. Coassembling Peptide-Based Biomaterials: Effects of Pairing Equal and Unequal Chain Length Oligopeptides , 2006 .
[42] Rein V. Ulijn,et al. Peptide-based stimuli-responsive biomaterials. , 2006, Soft matter.
[43] Antonio Coniglio,et al. Percolation, gelation and dynamical behaviour in colloids , 2004 .
[44] A. Aggeli,et al. Self‐Assembling Peptide Polyelectrolyte β‐Sheet Complexes Form Nematic Hydrogels , 2003 .
[45] S. Radford,et al. pH as a trigger of peptide beta-sheet self-assembly and reversible switching between nematic and isotropic phases. , 2003, Journal of the American Chemical Society.
[46] A. Aggeli,et al. Self-assembling peptide polyelectrolyte beta-sheet complexes form nematic hydrogels. , 2003, Angewandte Chemie.
[47] Lisa Pakstis,et al. Responsive hydrogels from the intramolecular folding and self-assembly of a designed peptide. , 2002, Journal of the American Chemical Society.
[48] A. Barth,et al. What vibrations tell about proteins , 2002, Quarterly Reviews of Biophysics.
[49] A. Semenov,et al. Dynamics of Entangled Associating Polymers with Large Aggregates , 2002 .
[50] R D Kamm,et al. Self-assembly of a beta-sheet protein governed by relief of electrostatic repulsion relative to van der Waals attraction. , 2000, Biomacromolecules.
[51] J. Guenet. Structure versus rheological properties in fibrillar thermoreversible gels from polymers and biopolymers , 2000 .
[52] A. Barth,et al. The infrared absorption of amino acid side chains. , 2000, Progress in biophysics and molecular biology.
[53] Michael D. Altman,et al. Peptide self-assembly in functional polymer science and engineering , 1999 .
[54] J. Guenet,et al. Structure−Properties Relation for Agarose Thermoreversible Gels in Binary Solvents , 1998 .
[55] A. Rich,et al. Spontaneous assembly of a self-complementary oligopeptide to form a stable macroscopic membrane. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[56] J. Guenet. Thermoreversible gelation of polymers and biopolymers , 1992 .
[57] Michael E. Cates,et al. Reptation of living polymers: dynamics of entangled polymers in the presence of reversible chain-scission reactions , 1987 .