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Switchable surfaces biomolecules, interaction with

On the other hand, cells and proteins exhibit space- and time-dependent dynamic changes in their conformations and functionalities in the human body. Since the 1990s, dynamic switchable surfaces have been comprehensively studied in order to control the biomolecular dynamics by modification with smart polymers [6], which show changes in their conformations and properties in response to external stimuli. Among them, thermo-responsive poly(AT-isopropylacrylamide) (PNlPA/ m) is one of the most successful models to control the interaction between biomolecules and the grafted substrates by temperature... [Pg.279]

The book provides an overview of recent advances in responsive surfaces and materials designed for biomedical applications. Both bulk responsive materials and surface modification techniques are included. The interactions of biomolecules and cells with responsive interfaces are specifically reviewed, with discussion of emerging applications that could change our lives. The book is divided into two parts with four interdisciplinary topics. The first part reviews switchable and responsive material technologies for biomedical applications (Chapters 1-6). The two topics of Part One are responsive materials and responsive surface modification respectively. Part Two (Chapters 7-11) explores two topics include the interaction of switchable surfaces with proteins and cells, as well as multidispUnary research toward different biomedical applications. [Pg.315]


See other pages where Switchable surfaces biomolecules, interaction with is mentioned: [Pg.115]    [Pg.282]    [Pg.285]    [Pg.192]    [Pg.192]    [Pg.289]    [Pg.3636]   
See also in sourсe #XX -- [ Pg.282 ]




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