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Glycosylated Peptide Materials
2020Carbohydrate-modified peptides (i.e., “glycopeptides”) inspired by natural glycoproteins and proteoglycans are receiving increasing interest as the basis for biomaterials with advanced structural and functional properties. This chapter first introduces the reader to different chemical and enzymatic methods that are used to synthesize glycosylated ...
Juanpablo Olguin +3 more
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Multifunctional peptide fibrils for biomedical materials
Peptide Science, 2004AbstractThe Ile‐Lys‐Val‐Ala‐Val (IKVAV) containing peptide, A208 (AASIKVAVSADR, mouse laminin α1 chain 2097–2108), was recently found to form amyloid‐like fibrils. Fibril formation is critical for its biological activities, including promotion of cell adhesion and neurite outgrowth.
Shingo, Kasai +5 more
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New materials from proteins and peptides
Current Opinion in Structural Biology, 2012In this review we highlight recent accomplishments in the design of materials from proteins and peptides. Examples include hydrogels made from aggregating designed β-hairpin peptides, whose physical properties respond to small changes in the amino acid composition of the peptide; materials that combine different segments of natural elastomeric proteins
Tijana Z, Grove, Lynne, Regan
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Designer Self‐Assembling Peptide Materials
Macromolecular Bioscience, 2007AbstractUnderstanding of macromolecular materials at the molecular level is becoming increasingly important for a new generation of nanomaterials for nanobiotechnology and other disciplines, namely, the design, synthesis, and fabrication of nanodevices at the molecular scale from bottom up.
Xiaojun, Zhao, Shuguang, Zhang
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An Adaptable Peptide-Based Porous Material
Science, 2010Swelling Pores Porosity is a key parameter when selecting materials for catalysts, chemical separations, gas storage, host-guest interactions, and related chemical processes. In most cases the porosity of a material is fixed. Rabone et al. (p. 1053
Rabone, J. +12 more
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Peptide‐based materials: from nanostructures to applications
Journal of Peptide Science, 2011Peer ...
Bianco, A, VENANZI, MARIANO, Aleman, C.
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2012
Synthesis of Polypeptides by Ring-Opening Polymerization of alpha-Amino Acid N-Carboxyanhydrides, by Jianjun Cheng and Timothy J. Deming.- Peptide Synthesis and Self-Assembly, by S. Maude, L. R. Tai, R. P. W. Davies, B. Liu, S. A. Harris, P. J. Kocienski and A. Aggeli.- Elastomeric Polypeptides, by Mark B. van Eldijk, Christopher L.
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Synthesis of Polypeptides by Ring-Opening Polymerization of alpha-Amino Acid N-Carboxyanhydrides, by Jianjun Cheng and Timothy J. Deming.- Peptide Synthesis and Self-Assembly, by S. Maude, L. R. Tai, R. P. W. Davies, B. Liu, S. A. Harris, P. J. Kocienski and A. Aggeli.- Elastomeric Polypeptides, by Mark B. van Eldijk, Christopher L.
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Solution behavior of peptide and peptide-hybrid materials
2008Peptide based and peptide hybrid materials represent two interesting and challenging classes of biomaterials. Both classes consist of and contain, respectively, one or more polypeptide blocks, endowing the resulting polymers with enhanced self-assembly properties, biocompatibility or novel characteristics.
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Synthesis of Hybrid Peptide-Based Materials
Peptide nanomaterials are a class of materials characterized by high biocompatibility, excellent degradability, and unique biomimetic properties. Moreover, they feature tunable amino acid structures and sequences, allowing flexible design and customization.Xin, Luan, Gang, Wei
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