Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science
Efforts to engineer new materials inspired by biological structures are hampered by the lack of genomic data from many model organisms studied in biomimetic research. Here we show that biomimetic engineering can be accelerated by integrating high-throughput RNA-seq with proteomics and advanced mater...
Saved in:
Main Authors: | , , , , , , , , , , , , , |
---|---|
Other Authors: | |
Format: | Article |
Language: | English |
Published: |
2016
|
Subjects: | |
Online Access: | https://hdl.handle.net/10356/81786 http://hdl.handle.net/10220/40969 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Institution: | Nanyang Technological University |
Language: | English |
id |
sg-ntu-dr.10356-81786 |
---|---|
record_format |
dspace |
spelling |
sg-ntu-dr.10356-817862020-06-01T10:01:31Z Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science Guerette, Paul A Hoon, Shawn Seow, Yiqi Raida, Manfred Masic, Admir Wong, Fong T Ho, Vincent H B Kong, Kiat Whye Demirel, Melik C Pena-Francesch, Abdon Amini, Shahrouz Tay, Gavin Z Ding, Dawei Miserez, Ali School of Materials Science & Engineering School of Biological Sciences Biomaterials Biomimetics Efforts to engineer new materials inspired by biological structures are hampered by the lack of genomic data from many model organisms studied in biomimetic research. Here we show that biomimetic engineering can be accelerated by integrating high-throughput RNA-seq with proteomics and advanced materials characterization. This approach can be applied to a broad range of systems, as we illustrate by investigating diverse high-performance biological materials involved in embryo protection, adhesion and predation. In one example, we rapidly engineer recombinant squid sucker ring teeth proteins into a range of structural and functional materials, including nanopatterned surfaces and photo-cross-linked films that exceed the mechanical properties of most natural and synthetic polymers. Integrating RNA-seq with proteomics and materials science facilitates the molecular characterization of natural materials and the effective translation of their molecular designs into a wide range of bio-inspired materials. NRF (Natl Research Foundation, S’pore) ASTAR (Agency for Sci., Tech. and Research, S’pore) MOE (Min. of Education, S’pore) 2016-07-19T07:36:19Z 2019-12-06T14:40:32Z 2016-07-19T07:36:19Z 2019-12-06T14:40:32Z 2013 Journal Article Guerette, P. A., Hoon, S., Seow, Y., Raida, M., Masic, A., Wong, F. T., et al. (2013). Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science. Nature Biotechnology, 31(10), 908-915. 1087-0156 https://hdl.handle.net/10356/81786 http://hdl.handle.net/10220/40969 10.1038/nbt.2671 en Nature Biotechnology © 2013 Nature America. |
institution |
Nanyang Technological University |
building |
NTU Library |
country |
Singapore |
collection |
DR-NTU |
language |
English |
topic |
Biomaterials Biomimetics |
spellingShingle |
Biomaterials Biomimetics Guerette, Paul A Hoon, Shawn Seow, Yiqi Raida, Manfred Masic, Admir Wong, Fong T Ho, Vincent H B Kong, Kiat Whye Demirel, Melik C Pena-Francesch, Abdon Amini, Shahrouz Tay, Gavin Z Ding, Dawei Miserez, Ali Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science |
description |
Efforts to engineer new materials inspired by biological structures are hampered by the lack of genomic data from many model organisms studied in biomimetic research. Here we show that biomimetic engineering can be accelerated by integrating high-throughput RNA-seq with proteomics and advanced materials characterization. This approach can be applied to a broad range of systems, as we illustrate by investigating diverse high-performance biological materials involved in embryo protection, adhesion and predation. In one example, we rapidly engineer recombinant squid sucker ring teeth proteins into a range of structural and functional materials, including nanopatterned surfaces and photo-cross-linked films that exceed the mechanical properties of most natural and synthetic polymers. Integrating RNA-seq with proteomics and materials science facilitates the molecular characterization of natural materials and the effective translation of their molecular designs into a wide range of bio-inspired materials. |
author2 |
School of Materials Science & Engineering |
author_facet |
School of Materials Science & Engineering Guerette, Paul A Hoon, Shawn Seow, Yiqi Raida, Manfred Masic, Admir Wong, Fong T Ho, Vincent H B Kong, Kiat Whye Demirel, Melik C Pena-Francesch, Abdon Amini, Shahrouz Tay, Gavin Z Ding, Dawei Miserez, Ali |
format |
Article |
author |
Guerette, Paul A Hoon, Shawn Seow, Yiqi Raida, Manfred Masic, Admir Wong, Fong T Ho, Vincent H B Kong, Kiat Whye Demirel, Melik C Pena-Francesch, Abdon Amini, Shahrouz Tay, Gavin Z Ding, Dawei Miserez, Ali |
author_sort |
Guerette, Paul A |
title |
Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science |
title_short |
Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science |
title_full |
Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science |
title_fullStr |
Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science |
title_full_unstemmed |
Accelerating the design of biomimetic materials by integrating RNA-seq with proteomics and materials science |
title_sort |
accelerating the design of biomimetic materials by integrating rna-seq with proteomics and materials science |
publishDate |
2016 |
url |
https://hdl.handle.net/10356/81786 http://hdl.handle.net/10220/40969 |
_version_ |
1681059772556640256 |