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Functional Nanomaterials for Regenerative Tissue Medicines [Hardback]

Edited by (School of Chemistry, India)
  • Formāts: Hardback, 406 pages, height x width: 234x156 mm, weight: 453 g, 23 Tables, black and white; 61 Line drawings, black and white; 10 Halftones, black and white; 71 Illustrations, black and white
  • Sērija : Emerging Materials and Technologies
  • Izdošanas datums: 22-Dec-2021
  • Izdevniecība: CRC Press
  • ISBN-10: 0367690292
  • ISBN-13: 9780367690298
  • Hardback
  • Cena: 217,27 €
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  • Formāts: Hardback, 406 pages, height x width: 234x156 mm, weight: 453 g, 23 Tables, black and white; 61 Line drawings, black and white; 10 Halftones, black and white; 71 Illustrations, black and white
  • Sērija : Emerging Materials and Technologies
  • Izdošanas datums: 22-Dec-2021
  • Izdevniecība: CRC Press
  • ISBN-10: 0367690292
  • ISBN-13: 9780367690298
This book covers nanomaterials in tissue engineering for regenerative therapies of heart, skin, eye, skeletal muscle, and the nervous system. The book emphasizes fundamental design concepts and emerging forms of nanomaterials in soft- and hard-tissue engineering.

FEATURES











Fills a gap in the literature related to the application of nanomaterials in hard- and soft-tissue regeneration, repair, and restructure





Discusses a variety of applications, including cardiac, kidney, liver, bone, wound healing, artificial organs, and dental





Presents advantages and limitations of various nanomaterials alongside future challenges

Functional Nanomaterials for Regenerative Tissue Medicines is essential for academics and industry professionals working in tissue engineering, biomedicine, biopharmaceuticals, and nanotechnology. It is primarily intended for materials researchers (to develop the platforms related to tissue regeneration) as well as clinicians (to learn and apply nanomaterials in their practice) and industrial scientists (to develop commercial blood substitute products).
Preface vii
Editor ix
Contributors xi
Chapter 1 Nanomaterials into Biological System Interactions: State of the Art
1(24)
Gouthami Thumma
Mohammed Imran
Srivani Gowru
Reshma
Vasudha Bakshi
Gangarapu Kiran
Chapter 2 Nanoengineered Biomaterials for Tissue Regeneration: Properties Overview
25(46)
Kalpana Madgula
Venkata Sreenivas Puli
Chapter 3 Patterning Nanomaterials for the Delivery of Growth Factors for Tissue Repair/Regeneration
71(36)
Sivaraj Mehnath
Murugaraj Jeyaraj
Chapter 4 Natural and Synthetic Tissue Regenerative Materials
107(20)
Roohi Kesharwani
Dilip Kumar Patel
Surendra Tripathy
Pankaj Kumar Yadav
Vikas Kumar
Chapter 5 Peptide-Based Functional Nanomaterials for Soft-Tissue Repair
127(18)
Surendra Tripathy
Dilip Kumar Patel
Roohi Kesharwani
Vikas Kumar
Chapter 6 Scaffold Nanomaterial for Cardiac Tissue Regeneration
145(14)
Narendra Maddu
Chapter 7 Nanomaterial for Kidney Disease Management
159(22)
Trupti Ghatage
Srashti Goyal
Deepika Dasari
Jayant Jain
Arti Dhar
Audesh Bhat
Chapter 8 Materials for Liver Regeneration, Liver-Cell Targeting, and Normal Liver Tissue Care
181(14)
Ashirbad Nanda
Chinmaya Chidananda Behera
Dilip Kumar Patel
Vikas Kumar
Bhisma N. Ratha
Simanchal Panda
Chapter 9 Hydroxyapatite-Based Nanomaterials for Bone Tissue Regeneration
195(44)
Sivaraj Mehnath
Murugaraj Jeyaraj
Chapter 10 Polymeric Biomaterials for Bone Tissue Repair and Regeneration
239(24)
Sesha Subramanian Murugan
Sukumaran Anil
Jayachandran Venkatesan
Gi Hun Seong
Chapter 11 Nanotherapeutics for Enhancing Burn Wound Healing
263(48)
Zahid Hussain
Hnin Ei Thu
Shahzeb Khan
Mohammad Sohail
Ohnmar Htwe
Nor Amlizan Ramli
Rai Muhammad Sarfraz
Chapter 12 Nanomedicinal Materials for Diabetic Wound Healing and Tissue Regeneration
311(26)
Kalpana Madgula
Venkata Sreenivas Puli
Chapter 13 Novel Biologicals and Technological Platforms for Dental Clinical Use
337(18)
Vasudha Bakshi
Mounika Nerella
Narender Boggula
Chapter 14 Surgical Nanomaterials for Spinal Deformities: Design of Materials and Their Investigations
355(22)
Dilip Kumar Patel
Roohi Kesharwani
Surendra Tripathy
S.N. Singh
Vikas Kumar
Chapter 15 Future Directions of Nanomaterials in Artificial Organ Transplantation
377(26)
Hemant Borase
Satish Patil
Gopal Jee Gopal
Bhairavi Rathod
Index 403
Mariappan Rajan is an Assistant Professor in the Department of Natural Products Chemistry, School of Chemistry, Madurai Kamaraj University, India. He is an experienced researcher and is mainly interested in developing biodegradable polymeric nanocarrier systems, nanohydrogels, nanoparticles, nanocomposite scaffolds, bioceramic materials, and mineral substituted scaffolds for drug delivery, tissue engineering, spinal cord regeneration, and wound dressing applications. Rajan has published more than 100 peer-reviewed publications, twelve book chapters, and four edited books. He has multiple editorial duties in many reputed international journals.