Bioinspired Reductionistic Peptide Engineering for Exceptional Mechanical Properties


Autoria(s): Avinash, MB; Raut, Devaraj; Mishra, Manish Kumar; Ramamurty, Upadrasta; Govindaraju, T
Data(s)

2015

Resumo

A simple solution-processing and self-assembly approach that exploits the synergistic interactions between multiple hydrogen bonded networks and aromatic interactions was utilized to synthesize molecular crystals of cyclic dipeptides (CDPs), whose molecular weights (similar to 0.2 kDa) are nearly three orders of magnitude smaller than that of natural structural proteins (50-300 kDa). Mechanical properties of these materials, measured using the nanoindentation technique, indicate that the stiffness and strength are comparable and sometimes better than those of natural fibres. The measured mechanical responses were rationalized by recourse to the crystallographic structural analysis and intermolecular interactions in the self-assembled single crystals. With this work we highlight the significance of developing small molecule based bioinspired design strategies to emulate biomechanical properties. A particular advantage of the successfully demonstrated reductionistic strategy of the present work is its amenability for realistic industrial scale manufacturing of designer biomaterials with desired mechanical properties.

Formato

application/pdf

Identificador

http://eprints.iisc.ernet.in/52803/1/Sce_Rep_5_16070_2015.pdf

Avinash, MB and Raut, Devaraj and Mishra, Manish Kumar and Ramamurty, Upadrasta and Govindaraju, T (2015) Bioinspired Reductionistic Peptide Engineering for Exceptional Mechanical Properties. In: SCIENTIFIC REPORTS, 5 .

Publicador

NATURE PUBLISHING GROUP

Relação

http://dx.doi.org/10.1038/srep16070

http://eprints.iisc.ernet.in/52803/

Palavras-Chave #Solid State & Structural Chemistry Unit #Materials Engineering (formerly Metallurgy)
Tipo

Journal Article

PeerReviewed