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Precise Protein Photolithography (P(3)): High Performance Biopatterning Using Silk Fibroin Light Chain as the Resist

Precise patterning of biomaterials has widespread applications, including drug release, degradable implants, tissue engineering, and regenerative medicine. Patterning of protein‐based microstructures using UV‐photolithography has been demonstrated using protein as the resist material. The Achilles h...

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Autores principales: Liu, Wanpeng, Zhou, Zhitao, Zhang, Shaoqing, Shi, Zhifeng, Tabarini, Justin, Lee, Woonsoo, Zhang, Yeshun, Gilbert Corder, S. N., Li, Xinxin, Dong, Fei, Cheng, Liang, Liu, Mengkun, Kaplan, David L., Omenetto, Fiorenzo G., Zhang, Guozheng, Mao, Ying, Tao, Tiger H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5604371/
https://www.ncbi.nlm.nih.gov/pubmed/28932678
http://dx.doi.org/10.1002/advs.201700191
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author Liu, Wanpeng
Zhou, Zhitao
Zhang, Shaoqing
Shi, Zhifeng
Tabarini, Justin
Lee, Woonsoo
Zhang, Yeshun
Gilbert Corder, S. N.
Li, Xinxin
Dong, Fei
Cheng, Liang
Liu, Mengkun
Kaplan, David L.
Omenetto, Fiorenzo G.
Zhang, Guozheng
Mao, Ying
Tao, Tiger H.
author_facet Liu, Wanpeng
Zhou, Zhitao
Zhang, Shaoqing
Shi, Zhifeng
Tabarini, Justin
Lee, Woonsoo
Zhang, Yeshun
Gilbert Corder, S. N.
Li, Xinxin
Dong, Fei
Cheng, Liang
Liu, Mengkun
Kaplan, David L.
Omenetto, Fiorenzo G.
Zhang, Guozheng
Mao, Ying
Tao, Tiger H.
author_sort Liu, Wanpeng
collection PubMed
description Precise patterning of biomaterials has widespread applications, including drug release, degradable implants, tissue engineering, and regenerative medicine. Patterning of protein‐based microstructures using UV‐photolithography has been demonstrated using protein as the resist material. The Achilles heel of existing protein‐based biophotoresists is the inevitable wide molecular weight distribution during the protein extraction/regeneration process, hindering their practical uses in the semiconductor industry where reliability and repeatability are paramount. A wafer‐scale high resolution patterning of bio‐microstructures using well‐defined silk fibroin light chain as the resist material is presented showing unprecedent performances. The lithographic and etching performance of silk fibroin light chain resists are evaluated systematically and the underlying mechanisms are thoroughly discussed. The micropatterned silk structures are tested as cellular substrates for the successful spatial guidance of fetal neural stems cells seeded on the patterned substrates. The enhanced patterning resolution, the improved etch resistance, and the inherent biocompatibility of such protein‐based photoresist provide new opportunities in fabricating large scale biocompatible functional microstructures.
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spelling pubmed-56043712017-09-20 Precise Protein Photolithography (P(3)): High Performance Biopatterning Using Silk Fibroin Light Chain as the Resist Liu, Wanpeng Zhou, Zhitao Zhang, Shaoqing Shi, Zhifeng Tabarini, Justin Lee, Woonsoo Zhang, Yeshun Gilbert Corder, S. N. Li, Xinxin Dong, Fei Cheng, Liang Liu, Mengkun Kaplan, David L. Omenetto, Fiorenzo G. Zhang, Guozheng Mao, Ying Tao, Tiger H. Adv Sci (Weinh) Full Papers Precise patterning of biomaterials has widespread applications, including drug release, degradable implants, tissue engineering, and regenerative medicine. Patterning of protein‐based microstructures using UV‐photolithography has been demonstrated using protein as the resist material. The Achilles heel of existing protein‐based biophotoresists is the inevitable wide molecular weight distribution during the protein extraction/regeneration process, hindering their practical uses in the semiconductor industry where reliability and repeatability are paramount. A wafer‐scale high resolution patterning of bio‐microstructures using well‐defined silk fibroin light chain as the resist material is presented showing unprecedent performances. The lithographic and etching performance of silk fibroin light chain resists are evaluated systematically and the underlying mechanisms are thoroughly discussed. The micropatterned silk structures are tested as cellular substrates for the successful spatial guidance of fetal neural stems cells seeded on the patterned substrates. The enhanced patterning resolution, the improved etch resistance, and the inherent biocompatibility of such protein‐based photoresist provide new opportunities in fabricating large scale biocompatible functional microstructures. John Wiley and Sons Inc. 2017-07-06 /pmc/articles/PMC5604371/ /pubmed/28932678 http://dx.doi.org/10.1002/advs.201700191 Text en © 2017 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Liu, Wanpeng
Zhou, Zhitao
Zhang, Shaoqing
Shi, Zhifeng
Tabarini, Justin
Lee, Woonsoo
Zhang, Yeshun
Gilbert Corder, S. N.
Li, Xinxin
Dong, Fei
Cheng, Liang
Liu, Mengkun
Kaplan, David L.
Omenetto, Fiorenzo G.
Zhang, Guozheng
Mao, Ying
Tao, Tiger H.
Precise Protein Photolithography (P(3)): High Performance Biopatterning Using Silk Fibroin Light Chain as the Resist
title Precise Protein Photolithography (P(3)): High Performance Biopatterning Using Silk Fibroin Light Chain as the Resist
title_full Precise Protein Photolithography (P(3)): High Performance Biopatterning Using Silk Fibroin Light Chain as the Resist
title_fullStr Precise Protein Photolithography (P(3)): High Performance Biopatterning Using Silk Fibroin Light Chain as the Resist
title_full_unstemmed Precise Protein Photolithography (P(3)): High Performance Biopatterning Using Silk Fibroin Light Chain as the Resist
title_short Precise Protein Photolithography (P(3)): High Performance Biopatterning Using Silk Fibroin Light Chain as the Resist
title_sort precise protein photolithography (p(3)): high performance biopatterning using silk fibroin light chain as the resist
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5604371/
https://www.ncbi.nlm.nih.gov/pubmed/28932678
http://dx.doi.org/10.1002/advs.201700191
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