株式会社極東書店トップ商品一覧Bio-inspired Functional Materials for Sustainable Biomedical Applications.

商品詳細

Bio-inspired Functional Materials for Sustainable Biomedical Applications.

Bio-inspired Functional Materials for Sustainable Biomedical Applications.

・ISBN 978-1-041-08705-2 hard GB£ 171.99

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お気に入り
電子版あり 大学・学術機関向け電子ブック(eBook)ISBN 9781003648123
著者・編者Srivastava, Vipul / Kulkarni, Shrikaant / Haghi, A.K. (eds.),
シリーズ (Sustainable Science, Engineering, and the Built Environment)
出版社 (CRC Press, UK)
出版年月2026
ページ数430 pp.
言語ENG
ニュース番号<A05-34878>

解説

This book provides a comprehensive exploration of next-generation bio-inspired functional materials and their transformative role in advancing sustainable biomedical applications. Beginning with an introduction to the fundamentals of bio-inspired materials, it highlights their critical contribution to achieving the United Nations Sustainable Development Goals. The chapters cover innovative domains such as biodegradable and self-healing materials, nanotechnology-driven biomaterials, protein- and pectin-based biopolymers, and targeted drug delivery systems. Special emphasis is placed on tissue engineering, bioresorbable sensors, and sustainable 3D bioprinting technologies, offering insights into emerging biomedical solutions.

Main features of this book are:

  • Encompasses fundamental concepts and emerging innovations in bio-inspired and sustainable materials for biomedical use.
  • Highlights biodegradable, self-healing, bioresorbable, and green materials addressing environmental and clinical challenges.
  • Discusses pioneering fields such as precision drug delivery, smart scaffolds for tissue regeneration, bioresorbable sensors, photothermal therapy, sustainable 3D bioprinting, and soft robotics.
  • Demonstrates the role of bio-inspired materials in achieving global sustainability and healthcare goals.
  • Offers insights into challenges, opportunities, and research gaps for next-generation innovations.

The book is targeted to researchers, clinicians, materials scientists, biomedical engineers, postgraduate students, policymakers, and industry innovators seeking sustainable, bio-inspired solutions for healthcare, translational research, and next-generation biomedical technologies worldwide interdisciplinary academic communities.