The Chemistry of Inorganic Biomaterials

The Chemistry of Inorganic Biomaterials
Author: Christopher Spicer
Publsiher: Royal Society of Chemistry
Total Pages: 323
Release: 2021-08-09
Genre: Technology & Engineering
ISBN: 9781788019835

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Biomaterials offer the potential to restore and supplement the function of tissues and organs following injury or disease. The use of inorganic materials in the clinic to date has been widespread, in the form of metallic joint replacements and ceramic dental and bone implants. Exciting new medical applications continue to emerge, enabled by innovative materials for neural interfaces and as anti-fouling agents. The Chemistry of Inorganic Biomaterials overviews the underlying chemistry behind the most common and cutting-edge inorganic materials in current use, or approaching use, in vivo. Framed from the context of the overarching material class/application, it provides a balanced and critical overview of the field by bringing together experts in both the fundamental inorganic and material chemistry, as well as key clinical considerations for biomedical applications. Written in an accessible style, this book will be of interest to advanced undergraduates, postgraduates and researchers in biomaterials, inorganic materials and materials chemistry.

Inorganic Biomaterials

Inorganic Biomaterials
Author: Xiang C Zhang
Publsiher: Smithers Rapra
Total Pages: 256
Release: 2014-06-26
Genre: Medical
ISBN: 9781909030411

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This book provides a practical guide to the use and applications of inorganic biomaterials. It begins by introducing the concept of inorganic biomaterials, which includes bioceramics and bioglass. This concept is further extended to hybrid biomaterials consisting of inorganic and organic materials to mimic natural biomaterials. The book goes on to provide the reader with information on biocompatibility, bioactivity and bioresorbability. The concept of the latter is important because of the increasing role resorbable biomaterials are playing in implant applications. The book also introduces a new concept on mechanical compatibility - 'mechacompatibility'. Almost all implant biomaterials employed to date, such as metal and ceramic implants, do not meet this biological requirement as they have far higher modulus than any biomaterials in the body. The practical techniques that are used in the characterization of biomaterials, including chemical, physical, biological, microscopy and mechanical characterization are described. Some specialised techniques are also introduced such as Synchrotron Micro-Computed Tomography (u-CT) and Magnetic Resonance Imaging (MRI). The reader is given important information on new biomaterials development for orthopaedic and other areas, including controlled release technology, hydroxyapatite and hybrid bioresorbable materials. Finally the book provides a guide to regulatory considerations, an area which is often overlooked, but is an important part of R&D and manufacturing of medical materials and devices.

Biomedical Applications of Inorganic Materials

Biomedical Applications of Inorganic Materials
Author: Dr Gareth R Williams
Publsiher: Royal Society of Chemistry
Total Pages: 392
Release: 2021-12-20
Genre: Science
ISBN: 9781788016063

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This book provides a contemporary research-led overview of the applications of inorganic materials in biomedicine. It begins with a short introduction summarising key concepts in inorganic materials (layered materials, framework materials etc.), and explaining the need for new materials in medicine. It then discusses the key areas in which inorganic materials have been applied, considering: drug delivery; imaging; diagnostics and theranostics; hard matter restoration; and vaccines. Each chapter gives an overview of the major extant challenges in the research area, before presenting a systematic review of how inorganic materials have been applied to gain traction in the field. A clear focus is maintained on the fate of the applied materials in vivo, clinical considerations, and the path to translation from lab to clinic. With contributions from leading researchers, Biomedical Applications of Inorganic Materials will provide a comprehensive introduction for advanced undergraduates, postgraduates and researchers wishing to learn about the topic.

Bioinspired Inorganic Materials

Bioinspired Inorganic Materials
Author: Simon Hall
Publsiher: Royal Society of Chemistry
Total Pages: 296
Release: 2019-08-28
Genre: Science
ISBN: 9781788011464

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Shwocasing recent developments in inorganic biomaterials in an area of societal interest and importance, this text covers such areas as functional surfaces, energy storage and metamaterials, with an emphasis on how inorganic biomaterials are being used for cutting-edge applications.

The Chemistry of Inorganic Biomaterials

The Chemistry of Inorganic Biomaterials
Author: Christopher Spicer
Publsiher: Royal Society of Chemistry
Total Pages: 323
Release: 2021-08-18
Genre: Science
ISBN: 9781788017534

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This book overviews the underlying chemistry behind the most common and cutting-edge inorganic materials in current use, or approaching use, in vivo.

Inorganic Chemistry in Biology

Inorganic Chemistry in Biology
Author: Patricia C. Wilkins,Ralph G. Wilkins
Publsiher: Unknown
Total Pages: 0
Release: 2023
Genre: Bioinorganic chemistry
ISBN: 0191993441

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Approximately a quarter of this book is devoted to the way metal ions interact with biomolecules and the remainder discusses the biologically important elements and their occurrence and function in biomaterials.

Bio inorganic Hybrid Nanomaterials

Bio inorganic Hybrid Nanomaterials
Author: Eduardo Ruiz-Hitzky,Katsuhiko Ariga,Yuri M. Lvov
Publsiher: John Wiley & Sons
Total Pages: 521
Release: 2008-06-25
Genre: Science
ISBN: 9783527621453

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This ready reference is the first to collate the interdisciplinary knowledge from materials science, bioengineering and nanotechnology to give an in-depth overview of the topic. As such, it provides broad coverage of combinations between inorganic materials and such key biological structures as proteins, enzymes, DNA, or biopolymers. With its treatment of various application directions, including bioelectronic interfacing, tissue repair, porous membranes, sensors, nanocontainers, and DNA engineering, this is essential reading for materials engineers, medical researchers, catalytic chemists, biologists, and those working in the biotechnological and semiconductor industries.

Novel Structured Metallic and Inorganic Materials

Novel Structured Metallic and Inorganic Materials
Author: Yuichi Setsuhara,Toshio Kamiya,Shin-ichi Yamaura
Publsiher: Springer
Total Pages: 620
Release: 2019-07-01
Genre: Technology & Engineering
ISBN: 9789811376115

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This book describes a series of research topics investigated during the 6 years from 2010 through 2015 in the project "Advanced Materials Development and Integration of Novel Structured Metallic and Inorganic Materials". Every section of the book is aimed at understanding the most advanced research by describing details starting with the fundamentals as often as possible. Because both fundamental and cutting-edge topics are contained in this book, it provides a great deal of useful information for chemists as well as for materials scientists and engineers who wish to consider future prospects and innovations. The contents of Novel Structured Metallic and Inorganic Materials are unique in materials science and technology. The project was carried out through the cooperation of research groups in the following six institutes in Japan: the Institute for Materials Research (IMR), Tohoku University; the Materials and Structures Laboratory (MSL), Tokyo Institute of Technology; the Joining and Welding Research Institute (JWRI), Osaka University; the Eco-Topia Science Institute (EST), Nagoya University; the Institute of Biomaterials and Bioengineering (IBB), Tokyo Medical and Dental University; and the Institute for Nanoscience and Nanotechnology (INN), Waseda University. Major objectives of the project included creation of advanced metallic and inorganic materials with a novel structure, as well as development of materials-joining technologies for development of cutting-edge applications as environmental and energy materials, biomedical materials, and electronic materials for contributing to the creation of a safer and more secure society.