Proceedings of the National Academy of Sciences · 2015 · 138 citations · 27 references
Light-induced material phase transitions enable the formation of shapes and patterns from the nano- to the macroscale. From lithographic techniques that enable high-density silicon circuit integration, to laser cutting and welding, light-matter interactions are pervasive in everyday materials fabrication and transformation. These noncontact patterning techniques are ideally suited to reshape soft materials of biological relevance. We present here the use of relatively low-energy (< 2 nJ) ultrafast laser pulses to generate 2D and 3D multiscale patterns in soft silk protein hydrogels without exogenous or chemical cross-linkers. We find that high-resolution features can be generated within bulk hydrogels through nearly 1 cm of material, which is 1.5 orders of magnitude deeper than other biocompatible materials. Examples illustrating the materials, results, and the performance of the machined geometries in vitro and in vivo are presented to demonstrate the versatility of the approach.
27
3D bioprinting of tissues and organs
Sean V. Murphy, Anthony Atala · Nature Biotechnology · 2014 · 6.6K citations
Materials fabrication from Bombyx mori silk fibroin
Danielle N. Rockwood, Rucsanda C. Preda, Tuna Yücel et al. · Nature Protocols · 2011 · 2.9K citations · Full text
Photodegradable Hydrogels for Dynamic Tuning of Physical and Chemical Properties
April M. Kloxin, Andrea M. Kasko, Chelsea N. Salinas et al. · Science · 2009 · 1.7K citations · Full text
Cell differentiation by mechanical stress
Gregory H. Altman, Rebecca L. Horan, Iván Martín et al. · The FASEB Journal · 2001 · 665 citations · Full text