Smart Nanoparticles for Biomedicine (Micro and Nano Technologies)
暫譯: 生物醫學用智慧奈米粒子(微米與奈米技術)
- 出版商: Elsevier Science
- 出版日期: 2018-05-15
- 售價: $7,180
- 貴賓價: 9.5 折 $6,821
- 語言: 英文
- 頁數: 268
- 裝訂: Paperback
- ISBN: 0128141565
- ISBN-13: 9780128141564
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商品描述
Smart Nanoparticles for Biomedicine explores smart nanoparticles that change their structural or functional properties in response to specific external stimuli (electric or magnetic fields, electromagnetic radiation, ultrasound, etc.). Particular attention is given to multifunctional nanostructured materials that are pharmacologically active and that can be actuated by virtue of their magnetic, dielectric, optically-active, redox-active, or piezoelectric properties. This important reference resource will be of great value to readers who want to learn more on how smart nanoparticles can be used to create more effective treatment solutions.
Nanotechnology has enabled unprecedented control of the interactions between materials and biological entities, from the microscale, to the molecular level. Nanosurfaces and nanostructures have been used to mimic or interact with biological microenvironments, to support specific biological functions, such as cell adhesion, mobility and differentiation, and in tissue healing. Recently, a new paradigm has been proposed for nanomedicine to exploit the intrinsic properties of nanomaterials as active devices rather than as passive structural units or carriers for medications.
- Discusses the synthesis, characterization and applications of a new generation of smart nanoparticles for nanomedicine applications
- Explores the problems relating to the biocompatibility of a range of nanoparticles, outlining potential solutions
- Describes techniques for manipulating specific classes of nanoparticles for a variety of treatment types
商品描述(中文翻譯)
《智慧奈米粒子在生物醫學中的應用》探討了智慧奈米粒子如何根據特定的外部刺激(如電場或磁場、電磁輻射、超聲波等)改變其結構或功能特性。特別關注的是多功能奈米結構材料,這些材料具有藥理活性,並且可以利用其磁性、介電性、光學活性、氧化還原活性或壓電特性進行驅動。這本重要的參考資源將對希望了解智慧奈米粒子如何用於創造更有效治療方案的讀者大有裨益。
奈米技術使得對材料與生物實體之間的互動進行前所未有的控制,從微觀尺度到分子層面。奈米表面和奈米結構已被用來模擬或與生物微環境互動,以支持特定的生物功能,如細胞黏附、運動和分化,以及在組織癒合中的應用。最近,提出了一種新的範式,旨在利用奈米材料的內在特性作為主動裝置,而非被動的結構單元或藥物載體。
- 討論新一代智慧奈米粒子的合成、特徵化及其在奈米醫學應用中的應用
- 探索與各種奈米粒子的生物相容性相關的問題,並概述潛在的解決方案
- 描述操控特定類別奈米粒子的技術,以應對各種治療類型