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Environmentally responsive biomaterials properties

In another remarkable example, Chilkoti et al. have developed nano-structured surfaces by combining ELPs and dip-pen nanolithography that show reversible changes in their physicochemical properties in response to changes in their environmental conditions, hi particular, these systems are able to capture and release proteins on nanopatterned surfaces by using the self-assembling characteristics of ELPs in an effort to develop advanced biomaterials, regenerable biosensors, and microfluidic bioanalytical devices [127-130]. [Pg.148]

TE and cell therapy approaches aim to take advantage of the repopulating potential and plasticity of multipotent stem cells to regenerate lost or diseased tissue. TE offers a potential solution to the limits related to poor cell survival by providing extra support to protect transplanted cells and thus improving survival and engraftment. Biomaterial physical properties can be readily manipulated in response to changes of environmental factors and cellular activities. [Pg.474]


See other pages where Environmentally responsive biomaterials properties is mentioned: [Pg.356]    [Pg.368]    [Pg.355]    [Pg.357]    [Pg.386]    [Pg.608]    [Pg.142]    [Pg.156]    [Pg.17]    [Pg.434]    [Pg.155]    [Pg.162]    [Pg.284]    [Pg.335]    [Pg.2]    [Pg.106]    [Pg.403]    [Pg.96]    [Pg.306]    [Pg.291]    [Pg.196]   
See also in sourсe #XX -- [ Pg.5 , Pg.7 , Pg.264 , Pg.276 ]




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