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Springer³öÆ·£ºSmart Biomaterials£¨ÖÇÄÜÉúÎï²ÄÁÏ £© ¸ßÇåpdf
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ÊéÃû£ºSmart Biomaterials
×÷Õß: Mitsuhiro Ebara, Yohei Kotsuchibashi, Ravin Narain, Naokazu Idota, Young-Jin Kim, John M. Hoffman, Koichiro Uto, Takao Aoyagi
ISBN: 978-4-431-54399-2 (Print) 978-4-431-54400-5 (Online)
°æÈ¨£º@Springer 2014
Á´½Ó£ºhttp://link.springer.com/book/10.1007/978-4-431-54400-5

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1. Introductory Guide to Smart Biomaterials
2. Smart Hydrogels
3. Smart Nanoassemblies and Nanoparticles
4. Smart Surfaces
5. Smart Nanofibers
6. Smart Bioconjugates
7. Shape-Memory Materials

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      In this book, how to design smart materials and how to apply them to biomedical fields are described by experts in these fields. In Chap. 1, the significance of monomer design in preparing uniform functions is explained on the basis of simple polymer fundamentals. Chapter 2 provides descriptions on the preparation and application of stimuli-responsive smart hydrogels, aiming at biomedical applications. Materials showing dynamic movement in response to internal or external stimuli are used as actuators, and their combination with nanotechnology can realize new diagnostic devices. In Chap. 3, nanoassemblies and nanoparticles are described. They are key  materials in developing drug-targeting systems. Some passive drug-targeting systems based on enhanced permeation and retention effects are actually in clinical use. Smart nanoassemblies are promising for more efficient drug targeting. Chapter 4 deals with smart surfaces. It is one of the outstanding examples of a flat solid or particle surface modified to control the interaction of biomolecules for chromatographic separation. In Chap. 5, nanofibers with smart properties are described. Their biomedical applications are currently few, but they will surely be expanded through combination with other materials, such as nanoparticles, or surface modification. Chapter 6 presents smart bioconjugates. Precise polymerization techniques contribute to the preparation of the precursor, and the resulting bioconjugates are very useful in diagnosis. Some of them will be applied to the prevention of severe infections in developing countries. Finally, in Chap. 7, shape-memory materials are described. There is much research on the dynamic movement of polymeric shape-memory materials. This chapter also deals with surface shape-memory materials that will be of concern in mechanobiology.¡­¡­
ÓÐÐËȤ¿ÉÒÔ¿´¿´£ºSmart Hydrogel Functional Materials
http://muchong.com/bbs/viewthread.php?tid=9518798&pid=1#pid1

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