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Robust Carbonated Structural Color Barcodes with Ultralow Ontology Fluorescence as Biomimic Culture Platform

Photonic crystal (PC) barcodes are a new type of spectrum-encoding microcarriers used in multiplex high-throughput bioassays, such as broad analysis of biomarkers for clinical diagnosis, gene expression, and cell culture. Unfortunately, most of these existing PC barcodes suffered from undesired feat...

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Autores principales: Liu, Panmiao, Mu, Zhongde, Ji, Muhuo, Liu, Xiaojiang, Gu, Hanwen, Peng, Yi, Yang, Jianjun, Xie, Zhuoying, Zheng, Fuyin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8118130/
https://www.ncbi.nlm.nih.gov/pubmed/34036265
http://dx.doi.org/10.34133/2021/9851609
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author Liu, Panmiao
Mu, Zhongde
Ji, Muhuo
Liu, Xiaojiang
Gu, Hanwen
Peng, Yi
Yang, Jianjun
Xie, Zhuoying
Zheng, Fuyin
author_facet Liu, Panmiao
Mu, Zhongde
Ji, Muhuo
Liu, Xiaojiang
Gu, Hanwen
Peng, Yi
Yang, Jianjun
Xie, Zhuoying
Zheng, Fuyin
author_sort Liu, Panmiao
collection PubMed
description Photonic crystal (PC) barcodes are a new type of spectrum-encoding microcarriers used in multiplex high-throughput bioassays, such as broad analysis of biomarkers for clinical diagnosis, gene expression, and cell culture. Unfortunately, most of these existing PC barcodes suffered from undesired features, including difficult spectrum-signal acquisition, weak mechanical strength, and high ontology fluorescence, which limited their development to real applications. To address these limitations, we report a new type of structural color-encoded PC barcodes. The barcodes are fabricated by the assembly of monodisperse polydopamine- (PDA-) coated silica (PDA@SiO(2)) nanoparticles using a droplet-based microfluidic technique and followed by pyrolysis of PDA@SiO(2) (C@SiO(2)) barcodes. Because of the templated carbonization of adhesive PDA, the prepared C@SiO(2) PC beads were endowed with simultaneous easy-to-identify structural color, high mechanical strength, and ultralow ontology fluorescence. We demonstrated that the structural colored C@SiO(2) barcodes not only maintained a high structural stability and good biocompatibility during the coculturing with fibroblasts and tumor cells capture but also achieved an enhanced fluorescent-reading signal-to-noise ratio in the fluorescence-reading detection. These features make the C@SiO(2) PC barcodes versatile for expansive application in fluorescence-reading-based multibioassays.
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spelling pubmed-81181302021-05-24 Robust Carbonated Structural Color Barcodes with Ultralow Ontology Fluorescence as Biomimic Culture Platform Liu, Panmiao Mu, Zhongde Ji, Muhuo Liu, Xiaojiang Gu, Hanwen Peng, Yi Yang, Jianjun Xie, Zhuoying Zheng, Fuyin Research (Wash D C) Research Article Photonic crystal (PC) barcodes are a new type of spectrum-encoding microcarriers used in multiplex high-throughput bioassays, such as broad analysis of biomarkers for clinical diagnosis, gene expression, and cell culture. Unfortunately, most of these existing PC barcodes suffered from undesired features, including difficult spectrum-signal acquisition, weak mechanical strength, and high ontology fluorescence, which limited their development to real applications. To address these limitations, we report a new type of structural color-encoded PC barcodes. The barcodes are fabricated by the assembly of monodisperse polydopamine- (PDA-) coated silica (PDA@SiO(2)) nanoparticles using a droplet-based microfluidic technique and followed by pyrolysis of PDA@SiO(2) (C@SiO(2)) barcodes. Because of the templated carbonization of adhesive PDA, the prepared C@SiO(2) PC beads were endowed with simultaneous easy-to-identify structural color, high mechanical strength, and ultralow ontology fluorescence. We demonstrated that the structural colored C@SiO(2) barcodes not only maintained a high structural stability and good biocompatibility during the coculturing with fibroblasts and tumor cells capture but also achieved an enhanced fluorescent-reading signal-to-noise ratio in the fluorescence-reading detection. These features make the C@SiO(2) PC barcodes versatile for expansive application in fluorescence-reading-based multibioassays. AAAS 2021-05-04 /pmc/articles/PMC8118130/ /pubmed/34036265 http://dx.doi.org/10.34133/2021/9851609 Text en Copyright © 2021 Panmiao Liu et al. https://creativecommons.org/licenses/by/4.0/Exclusive Licensee Science and Technology Review Publishing House. Distributed under a Creative Commons Attribution License (CC BY 4.0).
spellingShingle Research Article
Liu, Panmiao
Mu, Zhongde
Ji, Muhuo
Liu, Xiaojiang
Gu, Hanwen
Peng, Yi
Yang, Jianjun
Xie, Zhuoying
Zheng, Fuyin
Robust Carbonated Structural Color Barcodes with Ultralow Ontology Fluorescence as Biomimic Culture Platform
title Robust Carbonated Structural Color Barcodes with Ultralow Ontology Fluorescence as Biomimic Culture Platform
title_full Robust Carbonated Structural Color Barcodes with Ultralow Ontology Fluorescence as Biomimic Culture Platform
title_fullStr Robust Carbonated Structural Color Barcodes with Ultralow Ontology Fluorescence as Biomimic Culture Platform
title_full_unstemmed Robust Carbonated Structural Color Barcodes with Ultralow Ontology Fluorescence as Biomimic Culture Platform
title_short Robust Carbonated Structural Color Barcodes with Ultralow Ontology Fluorescence as Biomimic Culture Platform
title_sort robust carbonated structural color barcodes with ultralow ontology fluorescence as biomimic culture platform
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8118130/
https://www.ncbi.nlm.nih.gov/pubmed/34036265
http://dx.doi.org/10.34133/2021/9851609
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