DocumentCode :
267872
Title :
Direct laser writing of 3D protein structures with nanoscale feature sizes
Author :
Serien, Daniela ; Takeuchi, Shoji
Author_Institution :
CIRMM-IIS, Univ. of Tokyo, Tokyo, Japan
fYear :
2014
fDate :
26-30 Jan. 2014
Firstpage :
471
Lastpage :
473
Abstract :
We report preliminary results of three-dimensional (3D) protein structures with nanoscale feature sizes fabricated by two-photon direct laser writing (DLW). For this fabrication technology, we combine the established DLW technology with previously reported 3D protein structure fabrication by photosensitized crosslinking. We demonstrate the fabrication of 2D and 3D protein structures with nm-sized features. We report dependency of line height and independency of line width on writing parameters within the investigated range. Further, we demonstrate the biocompatibility of protein structures with nanoscale features to NIH/3T3 fibroblasts. This fabrication method enables the creation of biocompatible protein scaffolds down to the nm-range for cell studies and medical application.
Keywords :
biochemistry; biomedical materials; cellular biophysics; laser materials processing; molecular biophysics; molecular configurations; nanofabrication; nanomedicine; nanostructured materials; photochemistry; proteins; tissue engineering; 2D protein structure fabrication; 3D protein structure fabrication; DLW technology; NIH/3T3 fibroblast; biocompatible protein scaffolds; cell studies; fabrication technology; line height; line width independency; medical application; nanoscale feature sizes; nanoscale features; photosensitized crosslinking; protein structure biocompatibility; three-dimensional protein structures; two-photon direct laser writing; writing parameter; Fabrication; Laser excitation; Power lasers; Proteins; Three-dimensional displays; Writing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro Electro Mechanical Systems (MEMS), 2014 IEEE 27th International Conference on
Conference_Location :
San Francisco, CA
Type :
conf
DOI :
10.1109/MEMSYS.2014.6765679
Filename :
6765679
Link To Document :
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