Peptides and peptide-based biomaterials and their biomedical applications

This edited volume is composed of chapters written by experts in the field describing fundamental research on small peptide fragments in relation to their biological action and potential roles in biomedical applications from diagnosis to implant protection. It provides a review of the wide scope and...

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Bibliographic Details
Other Authors Sunna, Anwar (Editor), Care, Andrew (Editor), Bergquist, Peter L. (Editor)
Format Electronic eBook
LanguageEnglish
Published Cham, Switzerland : Springer, 2017.
SeriesAdvances in experimental medicine and biology ; v. 1030.
Subjects
Online AccessFull text
ISBN9783319660950
9783319660943
ISSN0065-2598 ;
Physical Description1 online resource (xiii, 300 pages) : illustrations (some color)

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245 0 0 |a Peptides and peptide-based biomaterials and their biomedical applications /  |c Anwar Sunna, Andrew Care, Peter L. Bergquist, editors. 
264 1 |a Cham, Switzerland :  |b Springer,  |c 2017. 
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490 1 |a Advances in experimental medicine and biology,  |x 0065-2598 ;  |v volume 1030 
504 |a Includes bibliographical references and index. 
505 0 |a Programmable bio-surfaces for biomedical applications / Kiyotaka Shiba -- Solid-binding peptides in biomedicine / Andrew Care, Peter L. Bergquist, Anwar Sunna -- Molecular modelling of peptide-based materials for biomedical applications / Tiffany R. Walsh -- Design principles of peptide based self-assembled nanomaterials / Rania S. Seoudi, Adam Mechler -- Bioprinting and biofabrication with peptide and protein biomaterials / Mitchell Boyd-Moss, Kate Fox, Milan Brandt, David Nisbet, Richard Williams -- Peptides as bio-inspired molecular electronic materials / John Horsley, Jingxian Yu, Yuan Qi Yeoh, Andrew Abell -- Peptide-based materials for cartilage tissue regeneration / Nurcan Hastar, Elif Arslan, Mustafa O. Guler, Ayse B. Tekinay -- Peptides and drug delivery / Kavisha R. Ulapane, Brian M. Kopec, Mario E.G. Moral, Teruna J. Siahaan -- Peptide lipidation: a synthetic strategy to afford peptide based therapeutics / Renata Kowalczyk, Paul W.R. Harris, Geoffrey M. Williams, Sung-Hyun Yang, Margaret A. Brimble -- Molecular engineering of conus peptides as therapeutic leads / James T. Daniel, Richard J. Clark -- Uptake mechanism of cell-penetrating peptides / Maxime Gestin, Moataz Dowaidar, Ülo Langel -- Empowering the potential of cell-penetrating peptides for targeted intracellular delivery via molecular self-assembly / Yejiao Shi, João Conde, Helena S. Azevedo -- The current role of cell-penetrating peptides in cancer therapy / Lucia Feni, Ines Neundorf. 
506 |a Plný text je dostupný pouze z IP adres počítačů Univerzity Tomáše Bati ve Zlíně nebo vzdáleným přístupem pro zaměstnance a studenty 
520 |a This edited volume is composed of chapters written by experts in the field describing fundamental research on small peptide fragments in relation to their biological action and potential roles in biomedical applications from diagnosis to implant protection. It provides a review of the wide scope and significance of these relatively simple arrays of amino acids that have the ability to bind to surfaces of all kinds and can facilitate the autonomous assembly of structures in nanotechnology as well as penetrating cell membranes and delivering therapeutic drugs. Readers will learn of some of the impediments to a wider and more comprehensive catalog of these molecules and of some of the attributes of rationally-designed and chemically synthesised peptides as anticancer agents. An overview is provided of the expansive variety of biological leads for biomedically relevant peptides as well as the wide array of tissues and biological, bioactive scaffolds that are dependent on these short peptide sequences addressing topics such as cartilage and hard tissue initiation and regeneration and the transition of active reagents from molluscs to drug leads for the treatment of chronic pain. Peptides can possess surface-specific non-covalent adsorption properties that can be exploited to enhance the functionality of medical implant materials but their implementation is largely on a trial-and-error basis because an understanding of general structure/function relationships is lacking. Molecular simulation approaches can provide relevant details at the atomic scale and prospects for advancing peptide-mediated medical implant surface treatments via molecular simulation are summarized. The literature has papers emphasizing the role of peptides in the design of biohybrid functional surfaces and there has been a growing interest in applying peptides as materials-selective assemblers and self-organizers, but applications are based largely on an empirical understanding of solid surface binding characteristics, as reviewed here. The present work is written for researchers who may be considering entering this field and are exposed to a mass of fundamental research information on individual applications. It has been our intention to trace how and where the research has emerged and to outline the opportunities we see to develop novel and well-grounded tools for specific therapeutic scenarios. 
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