Strong histamine torsion Raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases

Summary: Allergic diseases are closely related to degranulation and release of histamine and difficult to diagnose because non-allergic diseases also exhibit the same clinical symptoms as allergy. Here, we report direct, rapid, and ultrasensitive detection of histamine using low-frequency molecular...

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Autores principales: Haogang Zhu, Shuo Liu, Zijing Guo, Kun Yan, Jiancang Shen, Zhiyong Zhang, Jian Chen, Yachong Guo, Lizhe Liu, Xinglong Wu
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Lenguaje:EN
Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/29f824d88144490d8d0b4840b69febd7
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spelling oai:doaj.org-article:29f824d88144490d8d0b4840b69febd72021-11-20T05:10:59ZStrong histamine torsion Raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases2589-004210.1016/j.isci.2021.103384https://doaj.org/article/29f824d88144490d8d0b4840b69febd72021-11-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2589004221013559https://doaj.org/toc/2589-0042Summary: Allergic diseases are closely related to degranulation and release of histamine and difficult to diagnose because non-allergic diseases also exhibit the same clinical symptoms as allergy. Here, we report direct, rapid, and ultrasensitive detection of histamine using low-frequency molecular torsion Raman spectroscopy. We show that the low-frequency (<200 cm−1) Raman spectral intensities are stronger by one order of magnitude than those of the high-frequency Raman ones. Density functional theory calculation and nuclear magnetic resonance spectroscopy identify the strong spectral feature to be from torsions of carbon-carbon single bonds, which produce large variations of the polarizability densities in the imidazole ring and ethyl amino side chain. Using an omniphobic substrate and surface plasmonic effect of Au@SiO2 nanoparticles, the detection limit (signal-noise ratio >3) of histamine reaches 10−8 g/L in water and 10−6 g/L in serum. This scheme thus opens new lines of inquiry regarding the clinical diagnosis of allergic diseases.Haogang ZhuShuo LiuZijing GuoKun YanJiancang ShenZhiyong ZhangJian ChenYachong GuoLizhe LiuXinglong WuElsevierarticleBiochemistryEngineeringSurface sensingScienceQENiScience, Vol 24, Iss 11, Pp 103384- (2021)
institution DOAJ
collection DOAJ
language EN
topic Biochemistry
Engineering
Surface sensing
Science
Q
spellingShingle Biochemistry
Engineering
Surface sensing
Science
Q
Haogang Zhu
Shuo Liu
Zijing Guo
Kun Yan
Jiancang Shen
Zhiyong Zhang
Jian Chen
Yachong Guo
Lizhe Liu
Xinglong Wu
Strong histamine torsion Raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases
description Summary: Allergic diseases are closely related to degranulation and release of histamine and difficult to diagnose because non-allergic diseases also exhibit the same clinical symptoms as allergy. Here, we report direct, rapid, and ultrasensitive detection of histamine using low-frequency molecular torsion Raman spectroscopy. We show that the low-frequency (<200 cm−1) Raman spectral intensities are stronger by one order of magnitude than those of the high-frequency Raman ones. Density functional theory calculation and nuclear magnetic resonance spectroscopy identify the strong spectral feature to be from torsions of carbon-carbon single bonds, which produce large variations of the polarizability densities in the imidazole ring and ethyl amino side chain. Using an omniphobic substrate and surface plasmonic effect of Au@SiO2 nanoparticles, the detection limit (signal-noise ratio >3) of histamine reaches 10−8 g/L in water and 10−6 g/L in serum. This scheme thus opens new lines of inquiry regarding the clinical diagnosis of allergic diseases.
format article
author Haogang Zhu
Shuo Liu
Zijing Guo
Kun Yan
Jiancang Shen
Zhiyong Zhang
Jian Chen
Yachong Guo
Lizhe Liu
Xinglong Wu
author_facet Haogang Zhu
Shuo Liu
Zijing Guo
Kun Yan
Jiancang Shen
Zhiyong Zhang
Jian Chen
Yachong Guo
Lizhe Liu
Xinglong Wu
author_sort Haogang Zhu
title Strong histamine torsion Raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases
title_short Strong histamine torsion Raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases
title_full Strong histamine torsion Raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases
title_fullStr Strong histamine torsion Raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases
title_full_unstemmed Strong histamine torsion Raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases
title_sort strong histamine torsion raman spectrum enables direct, rapid, and ultrasensitive detection of allergic diseases
publisher Elsevier
publishDate 2021
url https://doaj.org/article/29f824d88144490d8d0b4840b69febd7
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