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Programmable self-assembly of M13 bacteriophage for micro-color pattern with a tunable colorization

Over the last decade, the M13 bacteriophage has been used widely in various applications, such as sensors, bio-templating, and solar cells. The M13 colorimetric sensor was developed to detect toxic gases to protect the environment, human health, and national security. Recent developments in phage-ba...

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Autores principales: Nguyen, Thanh Mien, Kim, Won-Geun, Ahn, Hyun-Ju, Kim, Minjun, Kim, Young Do, Devaraj, Vasanthan, Kim, Ye-Ji, Lee, Yujin, Lee, Jong-Min, Choi, Eun Jung, Oh, Jin-Woo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042013/
https://www.ncbi.nlm.nih.gov/pubmed/35495545
http://dx.doi.org/10.1039/d1ra04302a
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author Nguyen, Thanh Mien
Kim, Won-Geun
Ahn, Hyun-Ju
Kim, Minjun
Kim, Young Do
Devaraj, Vasanthan
Kim, Ye-Ji
Lee, Yujin
Lee, Jong-Min
Choi, Eun Jung
Oh, Jin-Woo
author_facet Nguyen, Thanh Mien
Kim, Won-Geun
Ahn, Hyun-Ju
Kim, Minjun
Kim, Young Do
Devaraj, Vasanthan
Kim, Ye-Ji
Lee, Yujin
Lee, Jong-Min
Choi, Eun Jung
Oh, Jin-Woo
author_sort Nguyen, Thanh Mien
collection PubMed
description Over the last decade, the M13 bacteriophage has been used widely in various applications, such as sensors, bio-templating, and solar cells. The M13 colorimetric sensor was developed to detect toxic gases to protect the environment, human health, and national security. Recent developments in phage-based colorimetric sensor technologies have focused on improving the sensing characteristics, such as the sensitivity and selectivity on a large scale. On the other hand, few studies have examined precisely controllable micro-patterning techniques in phage-based self-assembly. This paper developed a color patterning technique through self-assembly of the M13 bacteriophages. The phage was self-assembled into a nanostructure through precise temperature control at the meniscus interface. Furthermore, barcode color patterns could be fabricated using self-assembled M13 bacteriophage on micrometer scale areas by manipulating the grooves on the SiO(2) surface. The color patterns exhibited color tunability based on the phage nano-bundles reactivity. Overall, the proposed color patterning technique is expected to be useful for preparing new color sensors and security patterns.
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spelling pubmed-90420132022-04-28 Programmable self-assembly of M13 bacteriophage for micro-color pattern with a tunable colorization Nguyen, Thanh Mien Kim, Won-Geun Ahn, Hyun-Ju Kim, Minjun Kim, Young Do Devaraj, Vasanthan Kim, Ye-Ji Lee, Yujin Lee, Jong-Min Choi, Eun Jung Oh, Jin-Woo RSC Adv Chemistry Over the last decade, the M13 bacteriophage has been used widely in various applications, such as sensors, bio-templating, and solar cells. The M13 colorimetric sensor was developed to detect toxic gases to protect the environment, human health, and national security. Recent developments in phage-based colorimetric sensor technologies have focused on improving the sensing characteristics, such as the sensitivity and selectivity on a large scale. On the other hand, few studies have examined precisely controllable micro-patterning techniques in phage-based self-assembly. This paper developed a color patterning technique through self-assembly of the M13 bacteriophages. The phage was self-assembled into a nanostructure through precise temperature control at the meniscus interface. Furthermore, barcode color patterns could be fabricated using self-assembled M13 bacteriophage on micrometer scale areas by manipulating the grooves on the SiO(2) surface. The color patterns exhibited color tunability based on the phage nano-bundles reactivity. Overall, the proposed color patterning technique is expected to be useful for preparing new color sensors and security patterns. The Royal Society of Chemistry 2021-09-30 /pmc/articles/PMC9042013/ /pubmed/35495545 http://dx.doi.org/10.1039/d1ra04302a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Nguyen, Thanh Mien
Kim, Won-Geun
Ahn, Hyun-Ju
Kim, Minjun
Kim, Young Do
Devaraj, Vasanthan
Kim, Ye-Ji
Lee, Yujin
Lee, Jong-Min
Choi, Eun Jung
Oh, Jin-Woo
Programmable self-assembly of M13 bacteriophage for micro-color pattern with a tunable colorization
title Programmable self-assembly of M13 bacteriophage for micro-color pattern with a tunable colorization
title_full Programmable self-assembly of M13 bacteriophage for micro-color pattern with a tunable colorization
title_fullStr Programmable self-assembly of M13 bacteriophage for micro-color pattern with a tunable colorization
title_full_unstemmed Programmable self-assembly of M13 bacteriophage for micro-color pattern with a tunable colorization
title_short Programmable self-assembly of M13 bacteriophage for micro-color pattern with a tunable colorization
title_sort programmable self-assembly of m13 bacteriophage for micro-color pattern with a tunable colorization
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042013/
https://www.ncbi.nlm.nih.gov/pubmed/35495545
http://dx.doi.org/10.1039/d1ra04302a
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