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Artificial Protein and Peptide Nanofibers

Design, Fabrication, Characterization, and Applications

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2020
ISBN13: 9780081028506
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Juridisch :
Elsevier Science e druk, 2020 9780081028506
€ 247,00
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Samenvatting

Artificial Protein and Peptide Nanofibers: Design, Fabrication, Characterization, and Applications provides comprehensive knowledge of the preparation, modification and applications of protein and peptide nanofibers. The book reviews the synthesis and strategies necessary to create protein and peptide nanofibers, such as self-assembly (including supramolecular assembly), electrospinning, template synthesis, and enzymatic synthesis. Then, the key chemical modification and molecular design methods are highlighted that can be utilized to improve the bio-functions of these synthetic fibers. Finally, fabrication methods for key applications, such as sensing, drug delivery, imaging, tissue engineering and electronic devices are reviewed.

This book will be an ideal resource for those working in materials science, polymer science, chemical engineering, nanotechnology and biomedicine.

Specificaties

ISBN13:9780081028506
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p><br> </p> <p> Section A Fabrication and characterizations of artificial  protein and peptide nanofibers </p> <p> 1 Supramolecular self-assembly: A facile way to fabricate protein  and peptide nanomaterials  Luyang Zhao, Xuehai Yan </p> <p> 2 Self-assembly formation of peptide and protein nanofibers on  surfaces and at interfaces <br>Shuwei Sun, Zhiqiang Su, Gang Wei </p> <p> 3 Fabrication of amyloid nanofiber matrices by electrospinning<br>Devina Jaiswal, Sara Katebifar, Swetha Rudraiah,  Sangamesh G. Kumbar </p> <p> 4 Novel protein and peptide nanofibrous structures  via supramolecular co-assembly <br>Christian Helbing, Klaus D. Jandt</p> <p> 5 Characterization techniques of protein and peptide nanofibers:  Self-assembly kinetics  <br>Gang Wei </p> <p>Section B Enhanced functions of nanofibers by sequence  design and modification </p> <p> 6 Protein synthesis and characterization  <br>Shobhit Kadakeri, Michael R. Arul, Rosalie Bordett,  Nithyadevi Duraisamy, Hemantkumar Naik, Swetha Rudraiah </p> <p> 7 Design of functional peptide nanofibers based on amyloid motifs <br>Wenfeng Wei, Zhiqiang Su </p> <p> 8 Design of amphiphilic peptide nanofibers <br>Mustafa O. Guler </p> <p> 9 Nanofiber matrices of protein mimetic bioactive peptides  for biomedical applications <br>Allen Zennifer, Muthu Parkkavi Sekar, Anuradha Subramanian, Swaminathan Sethuraman </p> <p><br> 10 Synergetic integration of computer-aided design,  experimental synthesis, and self-assembly for the rational  design of peptide/protein nanofibrils <br>Ke Zheng, Jing Ren, Yawen Liu, Shengjie Ling </p> <p><br> 11 Composite nanofiber matrices for biomedical applications  <br>Ramya Dhandapani, Amrutha Manigandan, Swaminathan Sethuraman, Anuradha Subramanian</p> <p><br> 12 Nanofiber-based hydrogels and aerogels  <br>Li Sun, Aiguo Wu  </p> <p>Section C Related applications of artificial protein  and peptide nanofibers </p> <p>13 Protein and peptide nanostructures for drug and gene delivery  <br>Uma Maheswari Krishnan </p> <p>14 Protein and peptide nanofiber matrices for the regenerative  medicine <br>Seyed Mohammad Mir, Aneela Anwar, Ibrahim Dulijan,  Alok Kumar, Xiaojun Yu </p> <p>15 Fibrous scaffolds for bone tissue engineering  <br>Jennifer Moy, Apurva Limaye, Treena Livingston Arinzeh </p> <p>16 Assembled peptides for biomimetic catalysis <br>Mengfan Wang, Wei Qi </p> <p>17 New protein-based smart materials  <br>Lei Wang, Xin Huang </p> <p>18 Nanofibers for soft-tissue engineering  <br>Sama Abdulmalik, Sara Katebifar, Jonathan Nip, Laurie Yousman,  Paulina Szarejko, Jiana Baker, Swetha Rudraiah,  Sangamesh G. Kumbar</p>

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