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The Design, Synthesis and Characterization of Novel Triple Helical Collagen Mimetic Structures

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Release : 2002
Genre :
Kind : eBook
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Book Synopsis The Design, Synthesis and Characterization of Novel Triple Helical Collagen Mimetic Structures by : Juliann Mijong Kwak

Download or read book The Design, Synthesis and Characterization of Novel Triple Helical Collagen Mimetic Structures written by Juliann Mijong Kwak. This book was released on 2002. Available in PDF, EPUB and Kindle. Book excerpt:

The Design, Synthesis and Characterization of Scaffold-assembled and Dendritic Collagen Mimetics

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Release : 2002
Genre :
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Book Synopsis The Design, Synthesis and Characterization of Scaffold-assembled and Dendritic Collagen Mimetics by : Garth Alden Kinberger

Download or read book The Design, Synthesis and Characterization of Scaffold-assembled and Dendritic Collagen Mimetics written by Garth Alden Kinberger. This book was released on 2002. Available in PDF, EPUB and Kindle. Book excerpt:

The Design, Synthesis and Characterization of Scaffold-assembled Collagen Mimetics and Peptide Dendrimers

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Release : 2004
Genre : Collagen
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Book Synopsis The Design, Synthesis and Characterization of Scaffold-assembled Collagen Mimetics and Peptide Dendrimers by : Weibo Cai

Download or read book The Design, Synthesis and Characterization of Scaffold-assembled Collagen Mimetics and Peptide Dendrimers written by Weibo Cai. This book was released on 2004. Available in PDF, EPUB and Kindle. Book excerpt:

Peptides: The Wave of the Future

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Release : 2014-11-14
Genre : Science
Kind : eBook
Book Rating : 641/5 ( reviews)

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Book Synopsis Peptides: The Wave of the Future by : Richard A. Houghten

Download or read book Peptides: The Wave of the Future written by Richard A. Houghten. This book was released on 2014-11-14. Available in PDF, EPUB and Kindle. Book excerpt: This volume contains the proceedings of the Second International Peptide Symposium and the Seventeenth American Peptide Symposium, held on 9-14 June, 2001, at the Town and Country Resort in San Diego, California. The biennial meeting was held under the auspices of the American Peptide Society. In addition to the main Symposium, we were honored to have the Merrifield Satellite Symposium, honoring Bruce Merrifield's accomplishments on his 80th birthday. Over 1250 participants from around the world attended the lectures, posters, and exhibits. Reflecting the international nature of the Symposium, there were participants from 37 countries in attendance. In addition to the 75 plenary lectures, there were over 575 poster presentations, and 70 commercial exhibits as well as booths from the American, Australian, Chinese, European, and Japanese Peptide Societies. These proceedings include plenary lectures and oral and poster presentations collected from a wide diversity of topics providing a truly comprehensive and up-to-date overview of the field of peptide science. This publication contains essential reference information for researchers active in peptide science.

Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates

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Release : 2011
Genre : Biomedical materials
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Book Rating : 430/5 ( reviews)

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Book Synopsis Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates by : Ohm Divyam Krishna

Download or read book Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates written by Ohm Divyam Krishna. This book was released on 2011. Available in PDF, EPUB and Kindle. Book excerpt: Collagens are one of the most abundant proteins found in body tissues and organs, endowing structural integrity, mechanical strength, and multiple biological functions. Destabilized collagen inside human body leads to various degenerative diseases (ex. osteoarthritis) and ageing. This has continued to motivate the design of synthetic peptides and bio-synthetic polypeptides to closely mimic the native collagens in terms of triple helix structure and stability, potential for higher order assembly, and biological properties. However, the widespread application of de novo collagens has been limited in part by the need for hydroxylated proline in the formation of stable triple helical structures. To address this continued need, a hydroxyproline-free, thermally stable collagen-mimetic peptide (CLP-Cys) was rationally designed via the incorporation of electrostatically stabilized amino acid triplets. CLP-Cys was synthesized via solid phase peptide synthesis. The formation and stability of the triple helical structure were indicated via circular dichroism (CD) experiments and confirmed via differential scanning calorimetry (DSC) results. CLP-Cys also self-assembled into nano-rods and micro-fibrils, as evidenced via a combination of dynamic light scattering and transmission electron microscopy. Given the high thermal stability and its propensity for higher-order assembly, CLP-Cys was further functionalized at both the ends with a thermally responsive polymer, poly(diethylene glycol methyl ether methacrylate), (PDEGMEMA) to synthesize a biohybrid triblock copolymer. The CD results indicated that the triple helical form is retained, the thermal unfolding is sustained and helix to coil transition is reversible in the triblock hybrid context. The LCST of PDEGMEMA homopolymer (26 °C) is increased (to 35 °C) upon conjugation to the hydrophilic collagen peptide domain. Further, a combination of static light scattering, Cryo-SEM, TEM and confocal microscopy elucidated that the collapse of the thermo-responsive polymer upon heating (to above the LCST) leads to the assembly of these hybrid materials as micrometer sized spheres. At 75 °C a morphological transformation from spheres to fibrils were observed. These studies provided unique perspectives about the impact of stimuli-responsive polymers and the triple-helix forming peptides on each other; and how temperature as a stimulus can be employed to sequentially guide the assembly. The development of self-assembling hybrid materials with multiple sensitivities to temperature would offer useful opportunities in the design of stimuli-responsive nano-materials. The CLP-Cys peptide sequence has been designed to incorporate biologically relevant amino acid triplets (GEKGER) and its positive impact was seen via recruitment of human mesenchymal stem cells (hMSCs) for adhesion, spreading and proliferation on CLP-Cys functionalized glass and hyaluronic acid based hydrogel surfaces. Therefore, the prospects of these materials in biomedical applications including wound healing and tissue engineering are promising.

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