Abstract:
:Recombinantly produced spider silk proteins have high potential for bioengineering and various biomedical applications because of their biocompatibility, biodegradability, and low immunogenicity. Here, the recently described small spider silk protein eMaSp1s is assembled into hydrogels, which can be 3D printed into scaffolds. Further, blending with a recombinantly produced MaSp2 derivative eADF4(C16) alters the mechanical properties of the resulting hydrogels. Different spider silk hydrogels also show a distinct recovery after a high shear stress deformation, exhibiting the tunability of their features for selected applications.
journal_name
Macromol Bioscijournal_title
Macromolecular bioscienceauthors
Thamm C,DeSimone E,Scheibel Tdoi
10.1002/mabi.201700141subject
Has Abstractpub_date
2017-11-01 00:00:00issue
11eissn
1616-5187issn
1616-5195journal_volume
17pub_type
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